Category: Renewable Energy

  • MIL-OSI Global: Traumatic brain injuries have toxic effects that last weeks after initial impact − an antioxidant material reduces this damage in mice

    Source: The Conversation – USA – By Aaron Priester, Postdoctoral Fellow in Materials Science and Engineering, Missouri University of Science and Technology

    Brain damage can release harmful chemicals such as free radicals that cause further damage. fatido/E+ via Getty Images

    Traumatic brain injury is a leading cause of death and disability in the world. Blunt force trauma to the brain, often from a bad fall or traffic accident, accounts for the deaths of over 61,000 Americans each year. Over 80,000 will develop some long-term disability.

    While much of the physical brain damage occurs instantly – called the primary stage of injury – additional brain damage can result from the destructive chemical processes that arise in the body minutes to days to weeks following initial impact. Unlike the primary stage of injury, this secondary stage could potentially be prevented by targeting the molecules driving damage.

    I am a materials science engineer, and my colleagues and I are working to design treatments to neutralize the harm of secondary traumatic brain injury and reduce neurodegeneration. We designed a new material that could target and neutralize brain-damaging molecules in mice, improving their cognitive recovery and offering a potential new treatment for people.

    Biochemical fallout

    The primary stage of traumatic brain injury can severely damage and even destroy the blood-brain barrier – an interface protecting the brain by limiting what can enter it.

    Disruption of this barrier triggers damaged neurons or the immune system to release certain chemicals that result in destructive biochemical processes. One process called excitotoxicity occurs when too many calcium ions are allowed into neurons, activating enzymes that fragment DNA and damage cells, causing death. Another process, neuroinflammation, results from the activation of cells called microglia that can trigger inflammation in damaged areas of the brain.

    Traumatic brain injury can result in long-term damage.
    stockdevil/iStock via Getty Images Plus

    These secondary phase processes also produce harmful molecules called reactive oxygen species. These molecules, which include free radicals, chemically modify and deform essential proteins in cells, rendering them useless. They can also break DNA strands, leading to potentially damaging genetic mutations.

    If left unchecked, harm from this oxidative stress can have devastating consequences for long-term health and neurocognitive recovery. Researchers have linked the biochemical changes and byproducts resulting from this cascade of damaging molecules to the development of long-term neurological disorders such as Alzheimer’s, Parkinson’s and ALS, among others.

    However, compounds called antioxidants can target this oxidative stress and improve long-term neurocognitive recovery by chemically interacting with reactive oxygen species in a way that can neutralize their damaging properties.

    Finding the ideal antioxidant

    My team and I studied whether an antioxidant called a thiol group could help treat traumatic brain injury.

    Thiol groups are chemical compounds that contain a sulfur atom bound to a hydrogen atom. Sulfur atoms are much larger than hydrogen atoms, which means the sulfur atom in a thiol has a strong pull on a hydrogen atom’s lone electron. This weakens the bond between the hydrogen and its electron, allowing the hydrogen to easily give up its electron to other atoms.

    As a result, thiols readily interact with many different reactive oxygen species, including the ones that damage DNA. We chose thiols not only for their antioxiant properties, but also for their ability to bind to and neutralize other brain-damaging molecules called lipid peroxidation products. These neurotoxic compounds are formed as byproducts when reactive oxygen species damage fats in the body.

    To get these thiols into the body, we incorporated them into materials called polymers. These are long chains of organic molecules made of individual units called monomers. To get the monomers to link together, a lone electron – or free radical – initiates a bond with a monomer, triggering a chain reaction. Think of this process like knocking down a series of dominoes: The push of your hand (the free radical in this instance) hits a domino (the monomer) and subsequently knocks down the rest of the dominoes to form a line (the polymer).

    Polymers are long chains of the same molecule, over and over again.

    Because thiols can inhibit this process of polymerization, we had to make a monomer with a so-called protecting group that can be chemically removed after polymerization to become our thiols. Since a-lipoic acid, a common supplement found in pharmacies, contains such a protecting thiol group, we used it to make our monomer.

    We then made a chain of these monomers with RAFT, a controlled process by which polymers can be designed to leave the body through the urine. To do this, a water-soluble co-monomer can be added into the chain, allowing the polymer to dissolve in the bloodstream.

    Finally, we treated the polymers to remove the protecting group, producing thiol polymers ready for further testing.

    Testing on TBI

    Next, we tested how well our thiol polymers neutralized reactive oxygen species.

    First, we used a technique called UV-visible spectrophotometry, which shines a laser into a cell sample containing both our polymer and brain-damaging molecules. If there are reactive oxygen species present in the sample, the light will be minimally absorbed. But if our polymer neutralizes these compounds, then the light will be heavily absorbed. Through these studies, we found that our thiol polymer neutralized reactive oxygen species such as hydrogen peroxide by as much as 50%, and other neurotoxic molecules such as acrolein by as much as 100%, thus protecting neurons from damage.

    We conducted additional tests by exposing fluorescent proteins to free radicals, finding that proteins that weren’t treated with our thiol polymers were destroyed. Proteins that were treated continued to be fluorescent, indicating that our thiol polymer neutralized the free radical and protected the protein.

    Lastly, we injected the thiol polymers into mice with traumatic brain injury. Brain scans showed that our polymer not only successfully concentrated in the damaged area of the brain but also provided immediate protection from further injury. Our thiol polymer was able to reduce reactive oxygen species in injured mice to just 3% over the normal levels found in uninjured mice. Untreated mice with traumatic brain injury had a 45% increase compared with uninjured mice.

    Future work on thiol polymers

    Our findings suggest that these thiol polymers may serve as a potential treatment for the secondary stage of traumatic brain injury. Further testing can help determine whether this material could potentially reduce the risk of long-term disability.

    We are currently developing a cheap process to incorporate thiols with tiny nanoparticles. This may help increase the number of thiols in the material while also improving its ability to circulate in the bloodstream for longer protection.

    Many additional studies in animals are needed to confirm the effectiveness of our material in treating traumatic brain injury. If our results continue to be positive, we aim to test the effectiveness of our material in people through clinical trials. We hope these treatments could improve the long-term outcomes for victims of car crashes, falls or even sport-related injuries to the brain.

    Aaron Priester received funding from the NIH.

    ref. Traumatic brain injuries have toxic effects that last weeks after initial impact − an antioxidant material reduces this damage in mice – https://theconversation.com/traumatic-brain-injuries-have-toxic-effects-that-last-weeks-after-initial-impact-an-antioxidant-material-reduces-this-damage-in-mice-247655

    MIL OSI – Global Reports

  • MIL-OSI United Kingdom: University takes leading role in boosting UK hydrogen distribution network A project that will help establish a sustainable distribution network of hydrogen in Scotland and across the UK has got underway at the University of Aberdeen.

    Source: University of Aberdeen

    New Materials and Methods for Hydrogen Transportation and Storage: Repurposing the Economic Future of the North Sea (MHYSTIC) will see existing energy asset and skills used to develop a suite of innovations that will boost the UK’s hydrogen distribution network.A project that will help establish a sustainable distribution network of hydrogen in Scotland and across the UK has got underway at the University of Aberdeen.
    Led by a team of researchers at the University of Aberdeen with expertise in chemical, mechanical and materials engineering along with economic analysis for field applications in geological settings, the MHYSTIC project is one of 10 selected by the UK-HyRES Flexible Fund to advance hydrogen and alternative liquid fuels technologies.
    The projects represent a broad spectrum of groundbreaking research, each aligned with the mission to accelerate the UK’s hydrogen transition and drive impactful scientific innovation. Collectively, nearly £3 million in funding has been awarded, enabling pioneering studies across multiple institutions and disciplines.
    New Materials and Methods for Hydrogen Transportation and Storage: Repurposing the Economic Future of the North Sea (MHYSTIC) will see existing energy asset and skills used to develop a suite of innovations that will boost the UK’s hydrogen distribution network.
    With support from international collaborators at the Lithuanian Energy Institute, industry partners including Aberdeen Renewable Energy Group, ABL Group, the European Marine Energy Centre, the Net Zero Technology Centre, John Lawrie Group, Statera Energy and  Dräger Ltd will also play a crucial role in developing and disseminating outputs from the project.

    The characterisation methods and models will reveal detailed mechanisms of H2 adsorption and material failure at a granular level, which will result in stepwise advances in knowledge with high academic impact and will help implement hydrogen economies in Scotland and the UK.” Project lead Dr Alfonso Martinez-Felipe

    “MHYSTIC is one of the only 10 projects funded in this first round of applications and will have research, commercial and societal impacts by transferring its innovations to productive actors involved in the project,” explained project lead Dr Alfonso Martinez-Felipe from the University’s School of Engineering.
    “The characterisation methods and models will reveal detailed mechanisms of H2 adsorption and material failure at a granular level, which will result in stepwise advances in knowledge with high academic impact and will help implement hydrogen economies in Scotland and the UK.”
    Dr Martinez-Felipe is joined by colleagues Dr Amin Sharifi, Dr M. Amir Siddiq, Dr Marcin Kapitaniak and Dr Mehmet Kartal, all from the School of Engineering; and Professor John Underhill, Director of the Interdisciplinary Center for Energy Transition at the University of Aberdeen.
    “Being the smallest molecule, hydrogen is prone to leakage. It also embrittles steel,” said Professor Underhill. “Consequently, it’s essential to find new materials for hydrogen’s safe and secure storage and transportation if it is to play a role in the energy transition, something this research will address.”
    UK-HyRES aims to define and tackle the research challenges blocking the wider use of low carbon fuels in the UK – funded by UK Research and Innovation (UKRI) through the Engineering and Physical Sciences Research Council (EPSRC). The project is expected to run for 2.5 years.

    MIL OSI United Kingdom

  • MIL-OSI Economics: [Toyota Times] Logistics, Plants, Cafeteria… More and More Uses for Hydrogen, and More Partners, too!

    Source: Toyota

    Headline: [Toyota Times] Logistics, Plants, Cafeteria… More and More Uses for Hydrogen, and More Partners, too!

    Heavy-duty FC trucks have begun operating in Toyota City. A hydrogen-powered cooking device has also made an appearance at the employee cafeteria. The ways of using hydrogen are spreading, offering drivers comfortable rides and delicious food for employees.

    MIL OSI Economics

  • MIL-OSI China: Foreign firms to ramp up investment

    Source: China State Council Information Office 3

    This photo taken with a mobile phone shows the skyline during the early morning in Beijing, capital of China, Oct. 19, 2024. [Photo/Xinhua]

    China’s sustained efforts to boost domestic demand and reinforce supply chain resilience, as well as drive businesses toward green and digital transformation, will pave the way for deeper global business collaboration in its market this year, said executives of multinational corporations on Monday.

    Despite the slowdown in global trade and investment growth in recent years, foreign companies remain steadfast in ramping up their investment in the Chinese market, they added.

    Lan Qingxin, a professor specializing in cross-border investment studies at the University of International Business and Economics in Beijing, said that as China embraces a new era of green and innovation-driven growth, global investors are increasingly focusing on digital solutions, supply chain optimization, high-end manufacturing, customized innovation and green businesses in the Chinese market.

    Noting the widespread adoption of the advanced large language model DeepSeek among domestic and overseas users, Chen Shihua, deputy secretary-general of the China Association of Automobile Manufacturers, said that China’s ability to attract foreign investment will be further enhanced this year.

    DeepSeek, a two-year-old startup based in Hangzhou, Zhejiang province, has created the open-source LLM of the same name at a cost much lower than its foreign peers.

    Even though geopolitical tensions are rising, global demand remains subdued and certain countries have tightened investment regulations, China saw the establishment of 59,080 new foreign-invested companies in 2024, marking a 9.9 percent year-on-year increase, data from the Ministry of Commerce shows.

    Cummins Inc, a United States-based engine manufacturer, plans to increase its market share this year in key application sectors within China, including power generation equipment for data centers and high-tech manufacturing.

    “Together with local partners, we will also accelerate the innovation pace on the internal combustion engine system, including high-efficiency diesel, natural gas and hydrogen internal combustion engines,” said Nathan Stoner, vice-president of Cummins.

    Eager to seize more market share in China, Thai beverage company TCP Group, will commence operations of a production base in the Guangxi Zhuang autonomous region later this year to supply its popular energy drink Red Bull.

    The production base, set up with a total investment of 1.3 billion yuan ($179.2 million), will strengthen the supply chain network, empower upstream and downstream partners, and create another important link connecting the markets between China and the Association of Southeast Asian Nations, said Saravoot Yoovidhya, CEO of TCP Group.

    “The rapid response capability and strong execution power of China’s supply chain enable us to quickly adapt to market changes and promptly adjust production and supply chain strategies to meet the diversified demands of markets worldwide,” he added.

    Yin Zheng, executive vice-president of Schneider Electric’s China and East Asia operations, said that as a major engine of global economic growth, China has a huge market, a strong industrial base and abundant innovation resources, while its cultivation of new quality productive forces provides an even stronger impetus for industrial transformation and upgrading.

    The French industrial conglomerate has continuously increased research and development investment in China and has established a series of world-class innovation institutes in China to support industrial upgrading and energy transformation.

    “We have been introducing innovative Chinese solutions and advanced products to the global market, expanding China’s impact and realizing the vision of ‘in China for the world’,” Yin said.

    According to a recent survey by the Japanese Chamber of Commerce and Industry in China, more than 58 percent of Japanese companies surveyed recognize China as a key market for their global operations, and they plan to maintain or expand their investment in the Chinese market this year.

    Several factors have influenced their investment decisions, including increasing demand and rising orders. The chamber said that Japanese businesses are also more confident about the Chinese market this year, driven by an improved business environment, a visa-free policy for Japanese citizens and government initiatives such as trade-in policies.

    MIL OSI China News

  • MIL-OSI Australia: $5.6 million to help develop Aboriginal organisations and businesses across NSW

    Source: New South Wales Premiere

    Published: 19 February 2025

    Released by: Minister for Aboriginal Affairs and Treaty, Minister for Regional NSW


    The Minns Government is providing Aboriginal businesses and organisations with business investment, skills development and training opportunities that will help them attract new customers, expand their operations and plan and prepare for the future.

    A total of 42 Aboriginal businesses and organisations will receive a share of $5.6 million to invest in business mentoring and coaching, upskilling and training, the development of strategic business plans and governance frameworks and purchasing assets to expand operations.

    The Aboriginal business sector in regional NSW is growing and access to training, development, and investment is vital for the success of both Aboriginal organisations and communities.

    Dharra Jerky and Secret Harvest in Dubbo, Booma Food Group in Cessnock, Binjang Tea in Wellington, Deniliquin’s Barka Treats, and Native Botanical Brewery and Dream Builders on Country in the Central Coast are among the businesses who will boost production and pursue larger market opportunities through this funding.

    The NSW Government is dedicated to closing the gap by removing barriers that hinder access to business training, mentoring and capital investment for Aboriginal people in regional NSW.

    These growth opportunities have been made possible by $1.29 million from the NSW Government’s Regional Aboriginal Partnerships Program Round 2 and $4.33 million from the Regional Development Trust’s Aboriginal Economic Development Package.

    According to a 2022 NSW Treasury report there are some 737 NSW Indigenous businesses registered with the Aboriginal procurement organisation, Supply Nation, the most of any state or territory.

    Median annual revenue for these businesses is $303,000, with each employing a median full-time equivalent staff of 3.8.

    Minister for Regional New South Wales Tara Moriarty said:

    “Aboriginal businesses and organisations in regional NSW have a unique connection to land, culture and community, with traditional knowledge and cultural practices integrated into their businesses.

    “Not only do Aboriginal businesses and organisations contribute to the regional local economies, but they also contribute to environmental sustainability and cultural development in regional communities.

    “Getting the best training and resources into these regions is the first step in bridging skills gaps, supporting sustainable growth and creating jobs.”

    Minister for Aboriginal Affairs and Treaty David Harris said:

    “The Minns Government is strongly committed to supporting Aboriginal-owned businesses and organisations to continue to grow and develop.

    “By giving regional Aboriginal communities the tools they need we can help boost local economies now and into the future, promoting long term success.”

    CEO of the NSW Indigenous Chamber of Commerce Deb Barwick said:

    “Access to tailored mentoring, training and business development opportunities will allow Aboriginal businesses to strengthen their operations and expand their reach.

    “Supporting the growth of Aboriginal businesses in regional NSW drives economic development and creates lasting, meaningful opportunities for local communities.

    “This funding ensures Aboriginal businesses are equipped with the tools to build their capacity, improve governance and unlock their full potential.”

    Aboriginal business Dharra Jerky founder Hayden Williams said:

    “I started making jerky as a hobby about six years ago and I have been proud to watch it begin to bloom into something much bigger.

    “This support is giving me a great opportunity to upgrade my equipment so I can take my small business to the next level.”

    Proponent Project name Location
    Yurruungga Aboriginal Corporation Governance Enhancement Initiative
    for Yurruungga Aboriginal Corporation
    Bellingen Shire Council
    Gathangga Wakulda Aboriginal Corporation Growing Atanga Wakulda Port Macquarie-hastings Council
    Djiyagan Dhanbaan Incorporation Nyiirun Djiyagan Wakulda, Women’s Festival Port Macquarie-hastings Council
    Walhallow Local Aboriginal Land Council Walhallow Aboriginal Cultural Tourism Business Capacity Building Liverpool Plains Shire Council
    Barka Treats Dog Food Production Enhancement Edward River Council
    Bunyah Local Aboriginal Land Council Bunyah LALC Guulabaa Cafe Enterprise Equipment Port Macquarie-hastings Council
    Binjang Tea Binjang Tea Capacity Building: Fostering Cultural Heritage and Sustainable Business Growth Dubbo Regional Council
    Native Botanical Brewery Native Botanical Brewery’s “Pops Country” Initiative: Cultivating Indigenous Heritage from Bush to Brewery Central Coast Council
    BS Ellis and ML Ellis Business diversification and capacity uplift Eurobodalla Shire Council
    Strong Movement The Athlete Performance and Conditioning Enhancement Program Tamworth Regional Council
    LORE AUSTRALIA PTY LTD Develop a business plan to grow and expand LORE Australia Bellingen Shire Council
    Bugalwan Indigenous Corporation Ma Banyahr Central Coast Council
    Strong Spirit Services Ltd Strong Spirit Cultural Pathways Program Port Macquarie-hastings Council
    Aboriginal Advancement Alliance Trading As Acadiam Buzz Bus Activating Communities Road Trip – engaging, aligning and pathways to local jobs Cessnock City Council
    Mingaan Wiradjuri Aboriginal Corporation Mingaan Wiradjuri Aboriginal Corporation Website upgrade with booking platform Lithgow City Council
    Bangguri Gadhu Cultural Tours Bermagui Survival Day Bega Valley Shire Council
    Bara Barang Corporation Ltd Dream Builders On Country : Raspberry Fields Business Planning Central Coast Council
    Dharra Jerky Expanding Indigenous-Owned Dharra Jerky: Strengthening Manufacturing, Retail, and Wholesale Operations for Regional Growth Dubbo Regional Council
    Red Chief Local Aboriginal Land Council Red Chief Aboriginal Cultural Tourism Business Planning Initiative Gunnedah Shire Council
    Integr8y Integr8y – Building Capacity for Aboriginal Business Growth through Tender and Grant Writing Expertise: A Strategic Approach to Securing Contracts and Economic Empowerment Tamworth Regional Council
    Brennan Cultural Enterprise Pty Ltd T/A Waagayamba Consultants Igniting Growth: Empowering Aboriginal Businesses with Virtual Support and Mentoring Clarence Valley Council
    Mara-Mara Community Incorporated Renovations To Mara-Mara Community Incorporated Tamworth Regional Council
    JA Berry & DJ Carney t/as Cafe2823 Cafe2823 Courtyard & Function Area Narromine Shire Council
    Euraba Paper Aboriginal Corporation Euraba Paper Company upgrade project Moree Plains Shire Council
    Tranby Aboriginal Co-operative Limited Community Capacity Development Project: Building Governance and Enterprise Development opportunities Mid North Coast and North Western LALC regions
    Secret Harvest Pty Ltd Skin Care Manufacturing Dubbo Regional Council
    Twofold Aboriginal Corporation Twofold Solar Energy System – Off Grid Solar System to supply campground and other buildings on site Bega Valley Shire Council
    Unkya Local Aboriginal Land Council Gumbaynggirr Keeping Place – Completion & Activation Project Nambucca Valley Council
    Jaanymili Bawrrungga Aboriginal Corporation Gumbaynggirr Native Seedling Enterprise: Cultivating Growth and Sustainability Nambucca Valley Council
    Native Botanical Brewery Native Botanical Brewery Expansion Wambelong Creek Coffee “Bush to Brewery” initiative Central Coast Council
    Awabakal Local Aboriginal Land Council Winjirra Events Lake Macquarie City Council
    Booma Food Group Pty Ltd Booma Food Biz Growth Cessnock City Council
    Waminda South Coast Women’s Health & Wellbeing Aboriginal Corporation Sustaining our Blak Cede Enterprise Shoalhaven City Council
    More Cultural Rehabs Less Jails Yindyamarra Landcare Dubbo Regional Council
    Gari Yala Pty Ltd T/As Chocolate On Purpose Ngunggilanha Native Garden & Chocolate Nexus: Reclaiming Culture, Activating Wisdom, Empowering Community Wingecarribee Shire Council
    Grafton Ngerrie Local Aboriginal Land Council Grafton Ngerrie Nursery Enterprise: Cultivating Economic Growth and Cultural Prosperity Clarence Valley Council
    Home Of Recovery Home of Recovery Up Lift Dubbo Regional Council
    Gadhungal Marring Native nursery, mentorship program and managment tools Shoalhaven City Council
    Aralumbin Pty Ltd Project “Bush to You” brings bush foods to every plate, bridging the gap and collectively educating Australia. Tweed Shire Council
    Yurruga Indigenous Corporation Yurruga Sustainable Solar Project Uplift and Expansion Dubbo Regional Council
    Bega Local Aboriginal Land Council Building resilience and sustainability and focusing on circularity through a cultural lens Bega Valley Shire Council
    Wiradjuri Condobolin Corporation Limited Galari Horticulture – Green house Lachlan Shire Council

    MIL OSI News

  • MIL-OSI USA: Annual Highlights of Results 2024: Key Takeaways, Introduction, and Bibliometric Analyses

    Source: NASA

    A total of 361 publications were collected in FY-24. These publications include peer-reviewed scientific studies or other literature such as books and patents published recently or years prior. More than 80% of the publications collected in FY-24 were from research sponsored by NASA and JAXA.
    In FY-24, the predominant area of study for publications was Earth and Space science. The results obtained were primarily generated via Derived Results, studies that retrieve open data from online sources to make new discoveries. These Derived publications indicate a 39% return on investment.
    A total of 4,438 publications have been gathered since the beginning of station, and about 16% of this literature has been published in top-tier journals.
    The year-over-year growth of top-tier publications has been greater than the growth of regular publications. In 13 years, there was a  22% growth of top-tier publications and a 0.47% growth of regular publications.
    Almost 80% of top-tier results have been published in the past seven years.
    Station research continues to surpass national and global standards of citation impact.
    This year, a simplified hierarchy map showing the nested categories of station disciplines, subdisciplines, and selected keywords is presented to represent the more than 15,000 topic key words generated by the studies.
    Station research has seen a remarkable growth of international collaboration since its first days of assembly in 1999. Currently, about 40% of the research produced by station is the result of a collaboration between two or more countries.
    To date, the United States has participated in 23% of international collaborations.
    Of the nearly 4,000 investigations operated on station since Expedition 0, approximately 59% are identified as completed. From this subset of completed investigations, studies directly conducted on station rather than Derived Results have produced the most scientific results. This pattern differs from analyses conducted with all publication data.

    The International Space Station is a state-of-the art laboratory in low Earth orbit. Since the year 2000, distinguished researchers from a myriad of disciplines around the world have been sending equipment and investigations to station to learn how space-related variables affect the human body, plant and microbial life, physical processes, equipment function, and more. Sophisticated remote sensing techniques and telescopes attached to station also observe the Earth and the universe to enhance our understanding of weather patterns, biomass changes, and cosmic events.
    Investigations can be operated remotely from Earth with ground control support, directly on station with the help of crew members, or autonomously (without human assistance). The most recent science conducted on station has engaged private astronauts to advance the research endeavors of the commercial sector. The improvement of these science operations (i.e., how data is collected and returned) has led to more reliable scientific results. Additionally, extensive domestic and international collaboration bridging academic institutions, corporations, and funding agencies has produced high quality and impactful research that inspires new generations of students, researchers, and organizations looking to solve problems or innovate in emerging fields.
    The studies highlighted in this report are only a small, representative sample of the research conducted on station in the past 12 months. Many more groundbreaking findings were reported in fiscal year 2024 (FY- 24), including:

    Plant adaptation through the adjustment of regulatory proteins, which can lead to sustainable food production on the Moon and Mars (BRIC-LED-001).
    A connection between downregulated mitochondrial gene pathways and neurotransmitter signaling dysfunction that could assist the development of new pharmaceutical or nutritional therapies to prevent strength loss in neuromuscular disorders. (Microbial Observatory-1).
    The precise measurement of hydrogen isotopes to provide a better assessment of dark matter (AMS-02).
    The adaptation of a permanent flow cytometer in space that enables the examination of blood counts, hormones, enzymes, nucleic acids, proteins, and biomarkers to assess crew health in real time (rHEALTH).
    The behavior of oil-in-water drops in microgravity (i.e., oil drops grow over time, but drop displacement decreases). Understanding the behavior of oils, dyes, and detergents can lead to a safer environment and sustainability of emulsion technologies in the food, pharmaceutical, paint, and lubrication industries (FSL Soft Matter Dynamics-PASTA).

    Fundamental and applied research conducted on station improves the state of scientific understanding. Whether it is through the examination of microgravity and radiation effects, or through the testing of countermeasures, new materials, and computing algorithms; the hard work of integrating flight operations with scientific objectives is carried out to protect our planet, improve our health, and learn more about our place in the universe.
    The following pages aim to demonstrate how station is revolutionizing science through cooperation, curiosity, and ingenuity. Projects that may have begun as simple ideas are now shaping the way we think about and operate in space to advance our goal of going to the Moon and beyond.

    Literature associated with space station research results (e.g., scientific journal articles, books, patents) is collected, curated, and linked to investigations. The content from these publications is classified based on how the results are obtained. The current classifications are:

    Flight Preparation Results – publications about the development work performed for an investigation or facility prior to operation on space station.
    Station Results – publications that provide information about the performance and results of an investigation or facility as a direct implementation on station or on a vehicle to space station.
    Derived Results – publications that use open data from an investigation that operated on station. Access to raw data for new researchers expands global knowledge and scientific benefits.
    Related – publications that indirectly lead to the development of an investigation or facility. To date, over 2,200 publications have been identified as Related. This count of Related publications is not included in the analyses presented in this report.

    Projects taking place on station (facilities or investigations) are assigned to one of six science disciplines:

    Biology and Biotechnology: Includes plant, animal, cellular biology, habitats, macromolecular crystal growth, and microbiology.
    Earth and Space Science: Includes astrophysics, remote sensing, near-Earth space environment, astrobiology, and heliophysics.
    Educational and Cultural Activities: Includes student-developed investigations and competitions.
    Human Research: Includes crew healthcare systems, all human-body systems, nutrition, sleep, and exercise.
    Physical Science: Includes combustion, materials, fluid, and fundamental physics.
    Technology Development and Demonstration: Includes air, water, surface, and radiation monitoring, robotics, small satellites and control technologies, and spacecraft materials.

    Facilities consist of the infrastructure and equipment on station that enable the research to be conducted (e.g., workstation “racks” containing power, data and thermal control, furnaces, crystallization units, animal and plant habitats). Investigations are research projects with one or multiple science objectives. Investigations may use a facility to execute the experiments. A publicly accessible database of space station investigations, facilities, and publications can be found in the Space Station Research Explorer (SSRE) website. Through bibliometric analyses, the examination of publications and citations in different categories, we learn about research productivity, quality, collaboration, and impact. These measurements allow our organization to identify trends in research growth to better plan and support new scientific endeavors. The analyses included in this report serve to answer questions related to fiscal year data and total publication data to promote research accountability and integrity and ensure benefits to humanity.
    Station research produced in FY-2024
    Between Oct. 1, 2023, and Sept. 30, 2024, we identified a total of 361 publications associated with station research. Of these 361 publications, 52 were published in Biology and Biotechnology, 176 in Earth and Space, 5 in Educational and Cultural Activities, 40 in Human Research, 56 in Physical Science, and 32 in Technology Development and Demonstration. This publication count broken out by research discipline and space agency is shown in Figure 1A. Of the 361 publications, 41 were classified as Flight Preparation Results, 178 as Station Results, and 140 as Derived Results. Because Derived Results are new scientific studies generated from shared data, derived science is an additional return on the investment entrusted to station. In FY-24, this return on investment was 39%; a 12% increase from FY-23. Figure 1B shows this publication data broken out by research discipline and publication type.

    Overall growth, quality, impact, and diversity of station research
    Growth: A total of 4,438 publications have been collected since station began operations with 176 publications (4%) from work related to facilities on station. In Figure 2A, we show the growth of both regular and top-tier science over the years. Top-tier publications are studies published in scientific journals ranked in the top 100 according to ClarivateTM (Web of ScienceTM)1, a global database that compiles readership and citation standards to calculate a journal’s Eigenfactor Score2 and ranking. Regular publications include literature published in sources that may be specific to microgravity research but are not ranked.
    Our data shows that over a 13-year period from 2011 to 2023, regular publications grew 0.47% per year and top-tier publications grew 22% per year. Some of the subdisciplines that have experienced most growth from station research are astrophysics (707 publications), Earth remote sensing (266 publications), fluid physics (245 publications), and microbiology (214 publications).
    Quality: About 16% of station results have been published in top-tier journals. However, in Figure 2B we zoom in to examine the growth of top-tier publications given their station science discipline, showing that almost 80% of top-tier research has been published in the past seven years. Currently, a total of 696 articles have been published in top-tier journals and about 53% of this total are Derived Results from Earth and Space science investigations.

    Impact: Previous analyses have demonstrated that the citation impact of station research has superseded national and global standards since 2011 (See Annual Highlights of Results FY-2023). This pattern continues today.
    Diversity: Station science covers six major science disciplines, 73 subdisciplines, and thousands of topic keywords within each subdiscipline. A precise visualization of such abundant diversity would be overwhelming and impenetrable. However, plotting a few topic keywords within each sub-discipline succinctly shows the breadth of science station has to offer (Figure 3). For a better appreciation of station’s diversity, see the interactive hierarchy diagram online. Note that some topics, such as radiation, are studied from multiple perspectives (e.g., radiation measurement through physical science, radiation effects through human research, and shielding through technology development). Topic keywords were obtained using ClarivateTM (Web of ScienceTM).1
    Station research collaboration
    Previous analyses have shown the growth of collaboration between countries throughout the years based on co-authorship (See Annual Highlights of Results FY-2023). In a new analysis conducted with country data obtained through Dimensions.ai3 (n = 3,309 publications), we calculated that about 40% of the publications produced from station research are collaborations between several countries, and about 60% are intercollegiate collaborations within individual countries. As seen in the space agency networks in Figure 4, the United States participates in approximately 23% of the collaborations with other countries, making it the most collaborative country.

    From research ideas to research findings
    Nearly 4,000 investigations have operated since Expedition 0; with a subset of 2,352 investigations (approximately 59%) marked as complete. These completed investigations have concluded their science objectives and reported findings. In Figure 5, we show the citation output from publications exclusively tied to completed investigations. In this Sankey diagram, Times Cited corresponds to the count of publications with at least one citation in each publication type (Station Results, Flight Preparation Results, and Derived Results). This citation count adequately parallels the total number of citations per publication and allows the visualization of a comprehensible chart. This analysis demonstrates that most completed investigations have reported results directly from studies conducted on station, followed by studies conducted in preparation to go to space, and finally by studies derived from open science available online. Likewise, results obtained straight from station receive more citations (e.g, over 46,000) than Flight Preparation (3,636 citations) or Derived results (936 citations). This pattern differs from analyses including all publication data in Figures 1 and 2.
    Linking Space Station Benefits
    Space station research results lead to benefits for human exploration of space, benefits to humanity, and the advancement of scientific discovery. This year’s Annual Highlights of Results from the International Space Station includes descriptions of just a few of the results that were published from across the space station partnership during the past year.

    EXPLORATION: Space station investigation results have yielded updated insights into how to live and work more effectively in space by addressing such topics as understanding radiation effects on crew health, combating bone and muscle loss, improving designs of systems that handle fluids in microgravity, and determining how to maintain environmental control efficiently.
    DISCOVERY: Results from the space station provide new contributions to the body of scientific knowledge in the physical sciences, life sciences, and Earth and space sciences to advance scientific discoveries in multi-disciplinary ways.
    BENEFITS FOR HUMANITY: Space station science results have Earth-based applications, including understanding our climate, contributing to the treatment of disease, improving existing materials, and inspiring the future generation of scientists, clinicians, technologists, engineers, mathematicians, artists, and explorers.

    References
    1Journal ranking and Figure 5 data were derived from ClarivateTM (Web of ScienceTM). © Clarivate 2024. All rights reserved.
    2West JD, Bergstrom TC, Bergstrom CT. The Eigenfactor MetricsTM: A Network approach to assessing scholarly journals. College and Research Libraries. 2010;71(3). DOI: 10.5860/0710236.
    3Digital Science. (2018-) Dimensions [Software] available from https://app.dimensions.ai. Accessed on October 10, 2024, under license agreement.

    MIL OSI USA News

  • MIL-OSI United Kingdom: Securing a future for Grangemouth

    Source: Scottish Government

    Additional £25 million to establish a Grangemouth Just Transition Fund.

    First Minister John Swinney has announced an additional £25 million to establish a fund to help secure the future of Grangemouth.

    During a statement to Parliament he also called on the UK Government to address the immediacy and urgency of the situation facing Grangemouth by at least matching the Scottish Government’s investment.

    The First Minister said:

    “The aim of this fund is to expedite any of the potential solutions that will be set out in the Project Willow report, as well as other proposals that will give Grangemouth a secure and sustainable future.

    “We have made the strategic decision to support this key activity through an additional draw down of ScotWind revenue totalling £25 million, to add to the £7.8 million in our budget for 2025-26. Altogether, the Scottish Government – with a finite budget – has committed or already invested £87 million in Grangemouth.

    “We need the UK Government to do at least the same and deliver a fair amount to avoid significant economic disruption in central Scotland, and to protect and promote Scotland’s – and Grangemouth’s – future interests.”

    The First Minister confirmed to Parliament that an amendment will be lodged to the Scottish Government’s 2025-26 Budget Bill to allocate an additional £25 million to establish a Grangemouth Just Transition Fund.

    Funds will be available immediately in the new financial year to support businesses and stakeholders to bring forward investible propositions over the next 12 months, and if necessary, beyond.

    He added:

    “We believe that refining at Grangemouth should continue, that this closure is premature and that it is detrimental to Scotland’s transition to net zero.

    “We recognise the significance of the fact that we are now facing a programme of redundancies at Grangemouth and the impact this will have on the lives of those employed at the site. Every person, every family and every business impacted by the closing of the Grangemouth refinery, matters. Our immediate focus, rightly, is on providing those who are losing their jobs with targeted skills support.

    “Everyone working at Grangemouth’s refinery is a valued employee with skills that are key to Scotland’s net zero future. We want them to stay in Scotland and continue to make their lives here. We will do all we can to ensure they have a future in the Scottish economy as we make the transition to net zero.

    “That is why we are also working to secure Grangemouth’s role in that future and create an investible industrial strategy for the site.”

    The First Minister also called on the UK Government to continue to work together with the Scottish Government to drive forward the next phase of Project Willow; to expedite a decision on Acorn and the Scottish Cluster of carbon capture projects; and to make urgent progress on allocating funding for the second round of hydrogen production projects. 

    Background

    Securing a future for Grangemouth – First Minister’s statement – 18 February 2025

    In September 2024 the Scottish and UK Governments published a joint plan to secure the industrial future of Grangemouth. 

    In November the Scottish Government also sought views on a draft Just Transition Plan for the wider Grangemouth industrial cluster.

    Project Willow is assessing credible options to begin building a new long-term industry at the refinery site. A range of proposals have been shortlisted by the UK and Scottish governments, as part of a joint-funded £1.5 million feasibility study. 

    MIL OSI United Kingdom

  • MIL-OSI Global: Supersonic passenger aircraft may be returning – here’s what it means for the climate

    Source: The Conversation – UK – By Kshitij Sabnis, Lecturer in Aerospace Engineering, Queen Mary University of London

    The US aerospace company Boom Supersonic recently announced it has successfully tested its latest aircraft, the XB-1. The company is developing a larger plane and aims to begin passenger flights at supersonic (faster than sound) speed within the next five years, and claims it already has orders from a handful of airlines.

    However, with ever-increasing scrutiny on the environmental consequences of flying, it is important to consider how supersonic aviation may affect the industry’s ability to meet its ambitious net zero by 2050 target.

    The latest test flight represents an important stage in the development of supersonic aircraft that minimise their characteristic “sonic boom” – the considerable noise generated as the shock waves travelling along with a supersonic aircraft pass over people on the ground.

    Boom Supersonic has carefully designing the aircraft shape to reduce this noise pollution. It did this by exploiting a phenomenon known as “Mach cutoff”, where air temperatures in the atmosphere cause shock waves to reflect upwards rather than towards the ground.

    Supersonic aircraft won’t receive certification to fly over land if they are too noisy, and overland flights are essential for their commercial viability. Indeed, failing to receive such certification limited Concorde’s routes to London-New York and Paris-New York, ultimately contributing to its demise. These recent noise improvements pave the way for Boom Supersonic to progress its larger 80-seat supersonic airliner, Overture. If all goes to plan, Overture will cruise at 1.7 times the speed of sound and could fly from London to New York in just 3.5 hours.

    Other organisations working on supersonic flight are making similar progress. US firm Spike Aerospace is developing a smaller business jet, for instance, while Nasa and defence and aerospace firm Lockheed Martin plan to begin test flying their supersonic X-59 later this year. There is every indication that planes like these are on their way back, more than two decades after Concorde last took to the skies.

    Concorde’s maiden flight back in 1969. It flew commercially between 1976 and 2003.
    Andre Cros / wiki, CC BY-SA

    Shock waves increase aerodynamic drag

    The key to understanding the environmental effects of supersonic aircraft is that, whenever its speed exceeds the speed of sound, shock waves form around the aircraft. These shock waves significantly increase the aerodynamic drag, and so more fuel needs to be burned to compensate for the drag force. Indeed, it is estimated that up to ten times more fuel needs to be burned by a supersonic aircraft compared to the equivalent subsonic airplane for every passenger mile.

    At supersonic speeds, sound itself is a drag.
    Chabacano / wiki, CC BY-SA

    The cost of this extra fuel is why typical aircraft speeds have remained pretty constant at around 85% of the speed of sound for several decades. It also leads to greater greenhouse gas emissions – as much as five to seven times more than subsonic aircraft.

    In fact, the situation may be even more stark. Supersonic aircraft tend to fly at high altitudes (Concorde flew at 60,000ft (18km) rather than the 40,000ft (12km) typical for most passenger jets) to take advantage of lower turbulence levels. This means their emissions tend to remain in the atmosphere for longer.

    Supersonic and sustainable?

    There are considerable efforts to align supersonic aircraft development with the aviation industry’s environmental ambitions. For instance, the new engines designed by Boom Supersonic are powered entirely by “sustainable aviation fuels” (Saf) which are direct replacements for traditional jet fuels that are made from renewable raw materials, often used cooking oil or crop residues. Due to its exclusive use of Saf, the Overture is advertised as having a zero-carbon footprint.

    A concept image of the Overture, the plane Boom Supersonic ultimately wants to build.
    Boom Supersonic, CC BY-SA

    In reality, the situation is more complex. Saf is often produced from edible crops and has been linked to deforestation – the total land required to power all of commercial aviation in this way is impractically immense.

    To address this longer-term problem, it is necessary to look towards alternative fuel sources. While hydrogen or electric power is being developed for regular aircraft, for now they aren’t developed enough to ensure a plane reaches supersonic speeds. Instead, one possibility is e-kerosene, a synthetic fuel generated from hydrogen and carbon dioxide using renewable electricity.

    Despite all these technological advances, a supersonic aircraft still cannot beat physics. Shock waves, and their associated drag, will still exist. So, a single supersonic aircraft will still produce considerably more carbon emissions than its subsonic counterpart.

    Beyond carbon emissions, contrails also have an effect. These are thin clouds of water vapour produced by aircraft exhausts, which can trap heat in the atmosphere the same way as greenhouse gases. These contrails are thought to have twice the impact of carbon emissions, or perhaps even more, so it is essential to take their effects into account. For now, we simply don’t know enough about contrails, especially at much higher altitudes, to definitively say how supersonic aircraft will affect the environment.

    Given the costs involved, supersonic aircraft will account for only a very small percentage of aircraft worldwide. The overall impact on the environment, in comparison to the tens of thousands of subsonic aircraft currently in operation, will be moderate.

    There is perhaps one environmental upside. The research and development activity making supersonic aviation more environmentally friendly (such as developments in fuel and propulsion technology) will likely yield technologies that transfer to subsonic aircraft too. This should help to address the much broader problem of environmental damage caused by the aviation industry as a whole.


    Don’t have time to read about climate change as much as you’d like?

    Get a weekly roundup in your inbox instead. Every Wednesday, The Conversation’s environment editor writes Imagine, a short email that goes a little deeper into just one climate issue. Join the 40,000+ readers who’ve subscribed so far.


    Kshitij Sabnis does not work for, consult, own shares in or receive funding from any company or organisation that would benefit from this article, and has disclosed no relevant affiliations beyond their academic appointment.

    ref. Supersonic passenger aircraft may be returning – here’s what it means for the climate – https://theconversation.com/supersonic-passenger-aircraft-may-be-returning-heres-what-it-means-for-the-climate-250116

    MIL OSI – Global Reports

  • MIL-OSI Global: Supersonic passenger aircraft may be returning – here’s what that would mean for the climate

    Source: The Conversation – UK – By Kshitij Sabnis, Lecturer in Aerospace Engineering, Queen Mary University of London

    The US aerospace company Boom Supersonic recently announced it has successfully tested its latest aircraft, the XB-1. The company is developing a larger plane and aims to begin passenger flights at supersonic (faster than sound) speed within the next five years, and claims it already has orders from a handful of airlines.

    However, with ever-increasing scrutiny on the environmental consequences of flying, it is important to consider how supersonic aviation may affect the industry’s ability to meet its ambitious net zero by 2050 target.

    The latest test flight represents an important stage in the development of supersonic aircraft that minimise their characteristic “sonic boom” – the considerable noise generated as the shock waves travelling along with a supersonic aircraft pass over people on the ground.

    Boom Supersonic has carefully designing the aircraft shape to reduce this noise pollution. It did this by exploiting a phenomenon known as “Mach cutoff”, where air temperatures in the atmosphere cause shock waves to reflect upwards rather than towards the ground.

    Supersonic aircraft won’t receive certification to fly over land if they are too noisy, and overland flights are essential for their commercial viability. Indeed, failing to receive such certification limited Concorde’s routes to London-New York and Paris-New York, ultimately contributing to its demise. These recent noise improvements pave the way for Boom Supersonic to progress its larger 80-seat supersonic airliner, Overture. If all goes to plan, Overture will cruise at 1.7 times the speed of sound and could fly from London to New York in just 3.5 hours.

    Other organisations working on supersonic flight are making similar progress. US firm Spike Aerospace is developing a smaller business jet, for instance, while Nasa and defence and aerospace firm Lockheed Martin plan to begin test flying their supersonic X-59 later this year. There is every indication that planes like these are on their way back, more than two decades after Concorde last took to the skies.

    Concorde’s maiden flight back in 1969. It flew commercially between 1976 and 2003.
    Andre Cros / wiki, CC BY-SA

    Shock waves increase aerodynamic drag

    The key to understanding the environmental effects of supersonic aircraft is that, whenever its speed exceeds the speed of sound, shock waves form around the aircraft. These shock waves significantly increase the aerodynamic drag, and so more fuel needs to be burned to compensate for the drag force. Indeed, it is estimated that up to ten times more fuel needs to be burned by a supersonic aircraft compared to the equivalent subsonic airplane for every passenger mile.

    At supersonic speeds, sound itself is a drag.
    Chabacano / wiki, CC BY-SA

    The cost of this extra fuel is why typical aircraft speeds have remained pretty constant at around 85% of the speed of sound for several decades. It also leads to greater greenhouse gas emissions – as much as five to seven times more than subsonic aircraft.

    In fact, the situation may be even more stark. Supersonic aircraft tend to fly at high altitudes (Concorde flew at 60,000ft (18km) rather than the 40,000ft (12km) typical for most passenger jets) to take advantage of lower turbulence levels. This means their emissions tend to remain in the atmosphere for longer.

    Supersonic and sustainable?

    There are considerable efforts to align supersonic aircraft development with the aviation industry’s environmental ambitions. For instance, the new engines designed by Boom Supersonic are powered entirely by “sustainable aviation fuels” (Saf) which are direct replacements for traditional jet fuels that are made from renewable raw materials, often used cooking oil or crop residues. Due to its exclusive use of Saf, the Overture is advertised as having a zero-carbon footprint.

    A concept image of the Overture, the plane Boom Supersonic ultimately wants to build.
    Boom Supersonic, CC BY-SA

    In reality, the situation is more complex. Saf is often produced from edible crops and has been linked to deforestation – the total land required to power all of commercial aviation in this way is impractically immense.

    To address this longer-term problem, it is necessary to look towards alternative fuel sources. While hydrogen or electric power is being developed for regular aircraft, for now they aren’t developed enough to ensure a plane reaches supersonic speeds. Instead, one possibility is e-kerosene, a synthetic fuel generated from hydrogen and carbon dioxide using renewable electricity.

    Despite all these technological advances, a supersonic aircraft still cannot beat physics. Shock waves, and their associated drag, will still exist. So, a single supersonic aircraft will still produce considerably more carbon emissions than its subsonic counterpart.

    Beyond carbon emissions, contrails also have an effect. These are thin clouds of water vapour produced by aircraft exhausts, which can trap heat in the atmosphere the same way as greenhouse gases. These contrails are thought to have twice the impact of carbon emissions, or perhaps even more, so it is essential to take their effects into account. For now, we simply don’t know enough about contrails, especially at much higher altitudes, to definitively say how supersonic aircraft will affect the environment.

    Given the costs involved, supersonic aircraft will account for only a very small percentage of aircraft worldwide. The overall impact on the environment, in comparison to the tens of thousands of subsonic aircraft currently in operation, will be moderate.

    There is perhaps one environmental upside. The research and development activity making supersonic aviation more environmentally friendly (such as developments in fuel and propulsion technology) will likely yield technologies that transfer to subsonic aircraft too. This should help to address the much broader problem of environmental damage caused by the aviation industry as a whole.


    Don’t have time to read about climate change as much as you’d like?

    Get a weekly roundup in your inbox instead. Every Wednesday, The Conversation’s environment editor writes Imagine, a short email that goes a little deeper into just one climate issue. Join the 40,000+ readers who’ve subscribed so far.


    Kshitij Sabnis does not work for, consult, own shares in or receive funding from any company or organisation that would benefit from this article, and has disclosed no relevant affiliations beyond their academic appointment.

    ref. Supersonic passenger aircraft may be returning – here’s what that would mean for the climate – https://theconversation.com/supersonic-passenger-aircraft-may-be-returning-heres-what-that-would-mean-for-the-climate-250116

    MIL OSI – Global Reports

  • MIL-OSI: Crown LNG Signs Gas Sales MOU with India Gas Exchange

    Source: GlobeNewswire (MIL-OSI)

    LONDON, Feb. 18, 2025 (GLOBE NEWSWIRE) — Crown LNG Holdings Limited (Nasdaq: CGBS) (“Crown” or “Crown LNG”), a leading provider of LNG liquefaction and regasification terminal technologies for harsh weather locations, announced today the execution of a Memorandum of Understanding (MOU) with the India Gas Exchange Ltd. (“IGX”), India’s first automated national level trading platform. The MOU outlines how Crown and IGX plan to cooperate on liquefied natural gas (“LNG”) sales to pipeline customers downstream from Crown’s planned LNG import terminal in Kakinada, India.

    The signing ceremony on the sidelines of India Energy Week 2025 in New Delhi included Swapan Kataria, CEO of Crown LNG, and Rajesh Kumar Mediratta, Managing Director & CEO of IGX, and was witnessed by The Honorable Member of Parliament from Kakinada Shri Tangella Uday Srinivas, an advocate for building infrastructure to empower millions of households and to improve the development of new industries in Andhra Pradesh, including data centers requiring uninterrupted 24/7 power supply.

    The non-binding MOU provides a framework for LNG cargoes traveling through Crown’s regasification terminal to be listed, marketed, and sold on the IGX. Under the agreement, IGX will drive market awareness through workshops and industry engagement initiatives, encouraging wider participation in gas trading. Crown LNG will collaborate closely with IGX on LNG cargo arrivals and sales, ensuring a stable and efficient supply chain. Together, they aim to unlock new opportunities in India’s energy sector and reinforce the role of natural gas as a key driver of sustainable economic growth. Both organizations will explore further areas of cooperation to accelerate India’s 15% gas-based economy target by 2030, as envisioned by Prime Minister Narendra Modi.

    “This collaboration will offer Crown a unique position to sell gas to a large base of producers, traders, and offtakers throughout India,” said Swapan Kataria, Crown LNG CEO. “We believe this agreement is the first of several that will address the lack of supply for the eastern coast of the fourth largest LNG importer in the world. Together with IGX and our growing network of trusted local partners, we are excited to strengthen India’s energy security and to help make natural gas more accessible to industries and micro-enterprises across India.”

    The Kakinada terminal has received an approved total import capacity of 7.2 MMTPA. Crown expects to achieve final investment decision for the project in 2026 and to deliver first gas in 2029.

    About Crown LNG Holdings Limited
    Crown LNG is a leading provider of offshore LNG liquefaction and regasification terminal infrastructure solutions for harsh weather locations, which represent a significant addressable market for bottom-fixed, gravity based (“GBS”) liquefaction and floating storage regasification units, as well as associated green and blue hydrogen, ammonia and power projects. Through this approach, Crown aims to provide lower carbon sources of energy securely to under-served markets across the globe. Visit www.crownlng.com/investors for more information.

    Forward-Looking Information and Statements

    Certain statements in this announcement are not historical facts but are forward-looking statements. Forward-looking statements generally are accompanied by words such as “believe,” “may,” “could,” “will,” “estimate,” “continue,” “anticipate,” “intend,” “expect,” “plan,” “should,” “would,” “plan,” “future,” “outlook,” “potential,” “project” and similar expressions that predict or indicate future events or trends or that are not statements of historical matters, but the absence of these words does not mean that a statement is not forward-looking. These forward-looking statements include, but are not limited to, statements regarding estimates and forecasts of other performance metrics and projections of market opportunity. They involve known and unknown risks and uncertainties and are based on various assumptions, whether or not identified in this press release and on current expectations of Crown’s management and are not predictions of actual performance. These forward-looking statements are provided for illustrative purposes only and are not intended to serve as and must not be relied on by any investor as, a guarantee, an assurance, a prediction or a definitive statement of fact or probability. Actual events and circumstances are difficult or impossible to predict and will differ from assumptions. Many actual events and circumstances are beyond the control of Crown. Some important factors that could cause actual results to differ materially from those in any forward-looking statements could include changes in domestic and foreign business, market, financial, political and legal conditions. The Company undertakes no obligation to update or revise publicly any forward-looking statements to reflect subsequent occurring events or circumstances, or changes in its expectations, except as may be required by law. Although the Company believes that the expectations expressed in these forward-looking statements are reasonable, it cannot assure you that such expectations will turn out to be correct, and the Company cautions investors that actual results may differ materially from the anticipated results and encourages investors to review other factors that may affect its future results in the Company’s registration statement and other filings with the SEC.

    Crown LNG Contacts

    Investors
    Caldwell Bailey
    ICR, Inc.
    CrownLNGIR@icrinc.com

    Media
    Zach Gorin
    ICR, Inc.
    CrownLNGPR@icrinc.com

    The MIL Network

  • MIL-OSI United Nations: WP.6 Fourth Forum

    Source: United Nations Economic Commission for Europe

    The Working Party on Regulatory Cooperation and Standardization Policies (WP.6) promotes regulatory cooperation, standardization policies and activities which contribute towards reducing technical barriers to trade, while lowering efficiently managing risk, promoting sustainable development in its all dimensions including gender equality, climate and environmental protection and adaptation to new technologies.

    WP.6 has several subgroups and initiatives that meet at least annually. The official annual meetings of these groups have all been brought together during the same week to form a WP.6 Forum and will be marked by conferences of each group on the theme of digital, green transformation.

    7 April 2025 (afternoon)

    On-line only

    The ad hoc team of specialists on Standardization And Regulatory Techniques (START Team) was established in 1999 to support initiatives following the guidance of Recommendation L on the International Model for Transnational Regulatory Cooperation Based on Good Regulatory Practice. Several initiatives have been launched and developed common regulatory arrangements for products such as earth moving machinery, equipment for explosive environments, telecom and cybersecurity.

    A common regulatory arrangement is currently underway on pipeline security for hydrogen and another has been recently accomplished on products with embedded artificial intelligence.

    During this meeting, the group will take stock of the accomplishments over the past quarter century and prepare its final report in view of the group’s closure.

    8 April 2025 (morning)

    Geneva, H-building 207-209 of the Palais des Nations, hybrid meeting

    The Team of Specialists on Gender-Responsive Standards was established in 2022, following the initiative of the same name which had begun in 2016. This Team aims at providing a practical way forward for standards bodies wishing to take a step towards gender equality through the standards they develop and their standards development process. WP.6 also seeks to provide a forum for interested parties to come together to collaboratively develop expertise and guidance which can be shared.

    This hybrid meeting for the 3rd annual meeting aims to showcase best practices in gender-responsive standards and the development of relevant gender action plans.

    A gender perspective on standards for artificial intelligence

    8 April 2025 (afternoon)

    Geneva, H-building 207-209 of the Palais des Nations and virtual connection possible

    As artificial intelligence is expanding rapidly, there is an urgent need to ensure that the most vulnerable are not neglected or rendered further invisible. The databases which inform many artificial intelligence algorithms have unconscious biases which can be harmful to women. The discussions and presentations will articulate guidance which is necessary in this field.

    9 April 2025 (morning)

    Geneva, Palais des Nations H-building 207-209, hybrid meeting

    The Advisory Group on Market Surveillance (MARS) was established in 2003 to promote global trade and economic cooperation. The Group brings together all players involved (public authorities, manufacturers, retailers, importers, consumers, etc.) to increase transparency and attract attention to the role and responsibilities of public authorities in the chain of control. It has developed comprehensive guidance and serves as a forum of best practice and development of recommendation guidelines.

    This hybrid meeting for the 23rd annual meeting aims to showcase best practices in market surveillance approaches.

    Challenges and opportunities of regulating products with embedded artificial intelligence

    9 April 2024 (afternoon)

    Geneva, H-building 207-209 of the Palais des Nations and virtual connection possible

    The evolution in technology may change the way that market surveillance and associated regulatory procedures are conducted. This conference will look at current trends and the challenges and opportunities of regulating products with embedded artificial intelligence. Specific focus will centre on the common regulatory arrangement on products with embedded artificial intelligence.

    10 April 2025 (morning)

    Geneva, Palais des Nations H-building 207-209, hybrid meeting

    The Group of Experts on Risk Management in Regulatory Systems (GRM) was established in 2010 and meets regularly to advance projects and knowledge sharing on risk management in regulatory frameworks and international trade. The Group of Experts aims at an improved management of hazards that have the potential to affect the quality of products and services, and/or cause harm or damage to people, the environment, property and immaterial assets. To this end, it systematizes and applies best practice on risk management in regulatory activities and international trade.

    This hybrid meeting for the 15th annual meeting will zoom in on integrated risk management strategies and how this could be optimized when associated, for example, by a national single window.

    Improving quality infrastructure processes with applied use of artificial intelligence

    10 April 2025 (afternoon)

    Geneva, H-building 207-209 of the Palais des Nations and virtual connection possible

    This conference will consider how artificial intelligence could potentially help improve or eventually revolutionize processes in quality infrastructure (metrology, standardization, market surveillance, conformity assessment, accreditation, risk management).

    11 April 2025 (morning)

    Geneva, Palais des nations H-building 207-209, hybrid meeting

    The START-Ed Initiative was established by the decision of the Working Party in November 2012. The START-Ed Initiative has the following two major tasks: (1) Promotion of standards-awareness in the educational establishments including elaboration of module programme on standardization, (2) Assisting in sharing best practices in teaching standards to different audiences.

    MIL OSI United Nations News

  • MIL-OSI Asia-Pac: Text of Vice-President’s Address at Indian Institutes of Science Education and Research (IISER), Mohali (Excerpts)

    Source: Government of India

    Posted On: 17 FEB 2025 6:48PM by PIB Delhi

    Good afternoon all of you. If there has been some disruption in your normal activity, because as Vice-President of the country, I take it as my prime obligation to connect with young minds and important institutions. It is from that perspective I solicited this invitation.

    I am grateful that it was accepted. Professor Anil Kumar Tripathi, Director IISER, a man who brings on the table huge experience, commitment, and in his brief address he has revealed the object, the performance and the potential. Professor Renu Vig, Vice-Chancellor, Punjab University, has two distinctions.

    One, she is the first ever woman Vice-Chancellor of the Punjab University, a very prestigious university. I am sure we can applaud her, and, she is the 14th Vice-Chancellor, appointed by a Chancellor, who happens to be the 14th Vice-President of the country, that’s myself. Both of us missed number 13 very narrowly. Professor R.P. Tiwari, Vice-Chancellor, Central University of Punjab. Have you noticed something unique here? There are three Vices. So, Professor Anil Kumar Tripathi can be happy and delighted. Unless he says that prefix of Vice does not mean vice as it is defined in the dictionary, I would not reflect upon myself. But I can assure you, Vice-Chancellor Renu Vig and Vice-Chancellor R.P. Tiwari have no Vices.

    This is a unique Institution and 7 being in number. Having been Governor in the State of West Bengal for three years, I am aware of these Institutions and the seminal role they play in the evolution of the heart. Every institution is defined by the faculty, and I greet members of the faculty who are very distinguished and are futuristic in their outlook, whatever little I have gathered. We as a nation can take pride that we have an unparalleled legacy unknown to other nations. That long, and if we traverse our civilisational journey of 5000 years, we will find Bharat had been glory of the world,epicenter of knowledge and culture. People from all over the world flocked in pursuit of knowledge. That is your motto. What a motto you have picked up. Nalanda, Taxila, people came from all over the world in search of knowledge, shared knowledge and wisdom.

    We at the moment are at a very critical juncture, and I say so with some amount of nostalgia. I got into the seat of governance 35 years ago when I was elected to Parliament (Lok Sabha) and had the good fortune to be a Minister. I know the situation there. The mood of the nation. Our worrisome foreign exchange disturbed Jammu and Kashmir. I saw it all around, and our government didn’t last long, not because of me. And what I see now, 180 degree difference. The nation has an environment of hope and possibility. Our global image is very high.

    Leadership of the Prime Minister is globally acknowledged. And we have traversed against heavy winds. Difficult terrain. From fragile five economies to the world’s largest five economies at the moment. Ahead of those who ruled us for centuries, the Great Britain. It is a matter of time. That we will be marching ahead of Japan and Germany also to be the third largest in about a year or so. Such a jump. When I was elected first in parliament I had no courage to dream. Then that was the time, young boys and girls, where a Member of Parliament felt really an authority because he or she could give 50 gas connections or 50 telephone connections in a year. Imagine where we have come. In the shortest possible time, 550 million people of the country benefited from banking inclusions. They never had that account.

    Over 100 million households have toilets. Cooking gas in every house, electricity in every house, internet in every remote corner, health centres and education centres around, road connectivity, everything is happening. World class infrastructure we are seeing of global benchmark, and therefore, as I said this morning also, no nation in the world has grown as fast in the last 10 years as Bharat. This has created a challenge. A challenge of aspirational youth. They want more. They are entitled to more because they have tasted development. They see it on the ground. They know that per capita internet consumption of India is more than that of US and China taken together, that speaks of our access to technology and adaptability of technology.

    When it comes to direct transfers, a service delivery driven by technology, our direct digital transactions are four times the combined transactions of USA, UK, France and Germany. We are a nation where global entities, International Monetary Fund, World Bank are appreciating us. I recall my days in 1990 as a minister.

    Our gold had to be shipped in an aeroplane to be placed to two banks in Switzerland because our foreign exchange was around 1 billion US dollars. Now it is 700 times. And not a cause of concern, and therefore, the challenge is how do we meet aspirations of our young minds and my message to young minds. Seriously, look around, the opportunity basket which for you is getting larger and larger by the day. Come out of these silos and groove that are defined jobs only with the government or working in a corporate.

    Startups, unicorns are doing wonders. Let me tell you, IITs and IIMs have given these unicorns. But about 50% are from other institutes. I know the potential this country has because I have been to ISRO. Seen for myself. I have seen emerging space economy, there I came to learn for the first time when our rocket had to be put in space. It was not from Indian soil, and now we put rockets of other countries, USA also, developed countries also, Singapore also, from our and make money. Good value for money. Chandrayaan, Gaganyaan – They are defining us.

    I had the good occasion to have discussion with S. Somnathan, ISRO chairman, he was till recently, now V. Narayanan. Their fire, their zeal, their commitment, very different. In Bangalore, Govindan Rangarajan, Indian Institute of Science, and Dr. Clyde Shelby. I had the occasion to see personally what kind of innovations are being done for larger public welfare by scientific and industrial research. I say so because a country’s reputation, image, power is to be defined by research.

    Research is the bedrock of economic supremacy and global distinction. There was a time when we did not bestow attention on research and we thought somebody will give it to us with a price. And that someone will decide how much to give, on what terms to give but now, we have changed that. Nations that lead in research have global respect in economy, in strategy. And countries depend on them. Just imagine how far we have gone when it comes to meteorological predictions. We are one of the best in the world. As Governor-General of West Bengal, and the state is prone to cyclones, super cyclones, there was no mortality on high seas. The prediction was very accurate. Scientific prowess defines strategic prowess. Conventional wars are gone.

    And we have an ancient legacy of having been researchers, discoverers, giving to the world right from zero in arithmetic or mathematics. Aryabhatta, Brahmagupta laid foundations of global mathematics. Our scientific pantheon, Raman known by Raman effect, Bose, Sarabhai, Chandrasekhar, Shah, Bhatnagar, and our former president, they define India’s research mind, orientation. They exemplify commitment to research. And look at those days, we were in colonial shackles. Raman effect discovered against colonial scepticism.

    It stands as a testament to our Indian scientific beliefs. Cutting edge research is demand of the times. And the research has to correlate to fulfil the needs of the society. A research that is to be put on the shelf, a research that is for the self, a research that embellishes the profile, a research that contributes only to credentials is not the research. A research that only scratches the surface is not the research. The research has to be authentic.

    The research must create a wave. It must have positive, cascading impact on the lives of the people. Industries, business, trade and commerce are driven by research. At the moment, boys and girls, we are living in times we never imagined. You are facing those times as much as I am doing. We call them Artificial Intelligence, Internet of Things, Blockchain, Machine Learning and the kind. Blockchain for some may be Blockchain. Machine Learning may be Machine Learning only. But look at the power these technologies have.

    And these technologies are known as disruptive technologies. But these technologies come with enormous challenges that can uproot us. But they come also with a basket of opportunities. And we must focus on unleashing opportunity out of these disruptive technologies. Our research has to come up to that mark. It is our good fortune that the government is alive to the situation.

    And we as a nation, home to one sixth of humanity, are at the moment focussing on these technologies. Our quantum computing. There is a reflection by the director. About 6 lakh or 8 lakh jobs will be created out of investment of 6 lakh crores. Quantum computing, there is allocation of 6,000 crores and 18,000 crores for green hydrogen mission. These are the opportunities for you people. Space economy, blue economy. These are the opportunities for you.

    And therefore research has to facilitate life of the ordinary person. To improve our industry, our administration. A nation of 1.4 billion and a rich human resource unrivalled in the world. If it is catalysed and activated by temperament of research, the results will be exponential, geometric and revolutionary. Because now Bharat is no longer a nation with a potential. Our rise is unstoppable for last few years.

    It is incremental. And therefore, there has to be a greater commitment that research in the country is in the big league, in the Platinum category. And for that, the faculty has to brainstorm. We cannot have satisfying moments. As reflected by a Greek philosopher much before Socrates’ era, Heraclitus, Boys and Girls, now we are having change every moment. Paradigm shift.

    We are virtually at an industrial revolution. Unknown to the humanity before. And if nations have to go ahead of others, we have to focus on research. There was a time in Silicon Valley otherwise we could hardly see an Indian. And there is now hardly a global corporate that doesn’t have an Indian man or woman at the peak. Our demographic dividend now requires universalist engineering, mathematics. And that is why, after more than three decades, a game-changing education policy was introduced. And that was to give you enough room so that you can go after your aptitude and distance from the package of just degrees.

    I will take the occasion to appeal to corporates that they must come forward to drive the engines of research. Liberally contribute because ultimately they are the beneficiaries. Alongside the government they should be making liberal contributions beyond their CSR funds. If you look at the global corporates, how much they invest you will be surprised. We take pride in the last five years. We have increased our research fiscal commitment in the corporates to 50% above.

    From 0.89% of their revenue to 1.32% of their revenue. I find it deficient. Investment has to be many times more. We take pride also because earlier things were not moving. Now things are moving. When things are moving, we notice a change. Patents have nearly more than doubled in the last ten years. But our patents must be in consonance with our demographic participation in the world. One-sixth we must have. Because we are one-sixth of humanity. And this one-sixth of humanity qualitatively is very different than one-sixth. And therefore, taking note of technology access and adaptability, we need to be in optimal performance mindset.

    Imagine a country where 100 million farmers, three times a year, get direct banking transfers. Young boys and girls were not aware, there was a time when corruption was the password for opportunity, recruitment or business licence. Power corridors were leveraged by lies and agents. All this neutralised. And neutralised also through technological applications. Because middlemen have been shown the door. So when I look at your institute, Director, science, education and research, the triangle, this defines your role. Pursuit of knowledge. It starts with education. Because education as a transformative vehicle is very powerful. It brings about equality. Any one of you can have unicorn and be in the big league of industry. You don’t have to look to the situation. That yes, my father was in the industry, that’s true. We need to fight by technology. That’s the sin we are facing. So education. In education, science is important.

    Because science unfolds your mind to generate creativity, innovation. And then the next step is research. A combination of these will unlock the enormous potential of Indian mind. Will make available avenues and vistas to our population. Every nation hopes to be self-reliant. But we as a nation are very large. Complex on occasions. When the nation is growing so fast, some of us, the number is very small. The traction is large. Put personal interest, commercial interest, political interest, above national interest. This can’t be allowed. This is unfair to boys and girls.

    This is unfair to everyone, because if in our democracy there is someone as a class more serious, significant stakeholder in democracy and growth, than any one of us sitting here, is the youth of the country. Because as we march for Viksit Bharat after 2047, you are the driving force behind engines of growth. And therefore we have to give new dimension now. Make in India, start up India. And look at technology. It has to get into healthcare.

    Technology has to get into education. Technology can catalyse that quality health and quality education is available to one and all. And if that happens, Bharat will be what it has been for centuries.Our lean period started in 12th century. Then marauders came, invaders came, recklessly destroyed our culture. They sacrileged our religious places to an extent that they put their own at the same place. Then came the Britishers who did not give us the education to rule ourselves. They gave us education and taught us history as suited to them. Now things have changed. We are much ahead of UK in economy. We have a bunch of institutions now all over the country. IITs, IIMs, Institutions like yours, and therefore we must have this ecosystem with ears and eyes on the ground. The litmus test is changing the life of the ordinary man. We all stand committed to that because that is our preamble.

    We the people of India want these things. I conclude for time constraint. What Vivekananda said, “Arise, awake, stop not till the goal is achieved”. A motto which you must have. From my side I can give it to you. Have no tension, Have no stress, Never fear failure. Failure is natural. Sometimes you will be surprised, Oh he has succeeded, he should not have succeeded, take it in stride. System is transparent, there will be aberrations. Sometimes you will find, Oh! my own success is unjustified. These are situations natural to us, and then Dr. Kalam whose heart was always in education. I recollect when he met his maker. He was with the students in the North East, and what he said I quote,

    “Dreams transform into thoughts, and thoughts result in action” and therefore my ultimate plea with you, If an idea occurs to you don’t allow your mind to be a parking ground for that idea because you fear you may fail. Get rid of it. Failure is a myth because there is no one who has not failed but they never took failure as failure. Chandrayaan 2 was failure for some who are critics, who are recipe for negativity. Chandrayaan II did not fail, It went that far, and Chandrayaan III did the rest. Let your innovations catalyse India’s scientific renaissance, and advance human progress because we are a country that believes in ‘Vasudhaiva Kutumbakam’ – One Earth, One Family, One Future, that was our motto to the entire world.

    Once again, I am grateful to the Director for making available this opportunity to me at a very short notice. I understand that there has been some inconvenience, I would urge that you overlook it.
    Thank you so much.

    *****

    JK/RC/SM

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    MIL OSI Asia Pacific News

  • MIL-OSI Asia-Pac: India Energy Week 2025

    Source: Government of India

    India Energy Week 2025

    Driving Global Energy Innovation and Collaboration for a Sustainable Future

    Posted On: 17 FEB 2025 6:47PM by PIB Delhi

    India is driving not only its growth but also the growth of the world, with the energy sector playing a significant role.

    -Prime Minister Shri Narendra Modi

    A Global Energy Confluence

    India Energy Week (IEW) 2025, held from February 11 to 14, 2025, at the Yashobhoomi Convention Centre, New Delhi, is a premier global event in the energy sector. The event held under the patronage of the Ministry of Petroleum and Natural Gas and organized by the Federation of Indian Petroleum Industry (FIPI) has grown into the world’s second-largest energy conference.

    A Hub of Innovation and Transformation

    The India Energy Week exhibition has grown exponentially to become the world’s new meeting place for energy professionals, with millions of dollars of business conducted onsite, positioning it at the very heart of international business.

    A key facilitator of dialogue between international and regional producers, the event provides international exhibitors with the opportunity to network with key buyers from over 120 countries across the full energy value chain. Exhibitors will have the opportunity to showcase cutting-edge technologies that drive sustainable energy solutions, forge strategic partnerships, and explore opportunities to shape the future of energy.

    Defining Achievements of IEW 2025

     Key Focus Areas of IEW 2025

    • Energy Transition & Green Future: Major focus on biofuels, flex-fuel vehicles, ethanol blending, and green hydrogen. India is steadily progressing toward its goal of producing 5 million metric tons (MMT) of green hydrogen annually by 2030.
    • Exploration & Production (E&P) Reforms: Launch of Open Acreage Licensing Program (OALP) Round X, covering 200,000 sq. km, along with regulatory changes to boost investment in oil and gas exploration.
    • India-US Energy Cooperation: Strengthening LNG supply partnerships and increasing natural gas consumption in India’s energy mix from 6% to 15%.
    • Global Energy Investments: Expanding investments in oil and gas assets across Brazil, Venezuela, Russia, and Mozambique while benefiting from emerging oil sources.
    • Startup & Innovation Recognition: The Avinya’25 – Energy Startup Challenge, led by the Ministry of Petroleum and Natural Gas, awarded innovative startups for breakthroughs in CO₂ capture, ESG solutions, and renewable energy. The Vasudha – Oil and Gas Startup Challenge recognized overseas startups revolutionizing the upstream oil and gas sector with AI-driven solutions.

    Navigating the Nine Thematic Zones

    IEW 2025 introduced nine thematic zones, each focusing on different aspects of the energy sector:

    1. Hydrogen Zone – Hosted by Oil India Limited, showcasing cutting-edge innovations in hydrogen fuel generation.
    2. Biofuels Zone – Highlighting India’s advancements in Biodiesel, Bioethanol, Compressed Biogas, and Sustainable Aviation Fuel.
    3. Renewable Energy Zone – Featuring innovations in solar, wind, and other renewable energy technologies.
    4. LNG EcoSystem – Hosted by Petronet LNG, focusing on India’s downstream LNG supply chain and eco-friendly fuel solutions.
    5. Make in India Zone – Hosted by Engineers India Limited, highlighting indigenous energy manufacturing capabilities.
    6. City Gas Distribution Zone – Hosted by GAIL, emphasizing India’s rapid progress towards a gas-based economy.
    7. Petrochem Zone – Hosted by ONGC, showcasing advancements in petrochemical technologies and sustainable solutions.
    8. Innovation Zone – Featuring emerging startups and breakthrough technologies in energy.
    9. Digitalisation Zone – Showcasing AI, IoT, and automation in optimizing energy production and distribution.

    India: The Rising Energy Powerhouse

    India, the world’s third-largest energy consumer, is poised for the highest energy demand growth. Under PM Narendra Modi’s leadership, the nation is advancing towards a greener future with significant investments in secure, sustainable, and affordable energy. India Energy Week 2025 will serve as a key platform for global collaboration, driving discussions on energy security, innovation, and sustainability.

     

    A dynamic energy landscape

    India’s Path to Sustainability

    As a rapidly advancing economic powerhouse, India faces the twin challenge of surging energy demand while mitigating its carbon footprint. In response, Hon’ble Prime Minister Shri Narendra Modi launched the concept of “Panchamrit” at COP 26, representing a blend of five essential elements. “Panchamrit” underscores India’s commitment to addressing climate change and fostering sustainable growth on a global scale.

    Panchamrit: India’s Five Point Pledge Towards Climate Change

    1. India will take its non-fossil energy capacity to 500 GW by 2030
    2. By 2030, India will reduce the carbon intensity of its economy by less than 45%
    3. India will meet 50% of its energy requirements from renewable energy by 2030
    4. By the year 2070, India will achieve target of net-zero
    5. India will reduce the total projected carbon emissions by one billion tonnes till 2030

    Conclusion

    India Energy Week 2025 serves as a pivotal platform for global energy stakeholders to exchange ideas, foster partnerships, and witness India’s leadership in energy transition. As Shri Pankaj Jain, Secretary, Ministry of Petroleum and Natural Gas, highlighted, IEW 2025 will act as a catalyst for groundbreaking projects in green hydrogen, solar advancements, and exploration technologies, reinforcing India’s commitment to sustainability and innovation. With a focus on transformative collaboration and investment, the event will shape the global energy agenda, positioning India at the forefront of energy security, technological progress, and a sustainable future.

    References

    Download in PDF

    ***

    Santosh Kumar/ Sarla Meena/ Anchal Patiyal

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    MIL OSI Asia Pacific News

  • MIL-OSI Global: A new theory explains how water first arrived on Earth

    Source: The Conversation – France – By Quentin Kral, Astrophysicien à l’observatoire de Paris-PSL, CNRS, Sorbonne Université, Université Paris Cité

    How did Earth become a blue planet? NASA, CC BY

    When Earth first formed, it was too hot to retain ice. This means all the water on our planet must have originated from extraterrestrial sources. Studies of ancient terrestrial rocks suggest liquid water existed on Earth as early as 100 million years after the Sun’s formation–practically “immediately” on an astrophysical timescale. This water, now over 4.5 billion years old, has been perpetually renewed through Earth’s water cycle. My research team has recently proposed a new theory to explain how water first arrived on Earth.

    A mystery billions of years in the making

    Astrophysicists have been grappling with the question of how water arrived on our young planet for decades. One of the earliest hypotheses suggested that Earth’s water was a direct byproduct of the planet’s formation, released via magma during volcanic eruptions, in which most of the emitted gas is water vapor.

    However, this hypothesis evolved in the 1990s following analysis of Earth’s water composition and the discovery of the potential role of icy comets, pointing to an extraterrestrial origin. Comets, which are mixtures of ice and rock formed in the distant reaches of the solar system, are sometimes ejected toward the Sun. When warmed by the Sun, they develop striking tails of dust and gas that are visible from Earth. Asteroids, located in the asteroid belt between Mars and Jupiter, were also proposed as potential progenitors of Earth’s water.

    The study of cometary and asteroid rocks via meteorites–small fragments of these bodies that have fallen to Earth–has provided key insights. By analyzing the D/H ratio–the proportion of heavy hydrogen (deuterium) to standard hydrogen–scientists found that Earth’s water more closely matches that of “carbonaceous” asteroids, which bear traces of past water. This shifted the focus of research toward these asteroids.

    The asteroid belt lies between Mars and Jupiter, while the Kuiper Belt extends beyond Neptune.
    Pline/Wikipedia, CC BY

    Recent studies have centered on identifying the celestial mechanisms that could have delivered these water-rich asteroids to the dry surface of early Earth. Numerous theories have emerged to explain the “perturbation” of planetesimals–large, icy bodies in the asteroid and Kuiper belts. These scenarios propose gravitational interactions that dislodged these objects, sending them hurtling toward Earth. Such events would have required a complex “gravitational billiards” process, suggesting a tumultuous history of the solar system.

    While it is evident that planetary formation involved significant upheavals and impacts, it is possible that Earth’s water delivery occurred in a more natural and less dramatic manner.

    A simpler hypothesis

    I started with the assumption that asteroids emerge icy from their formation cocoon, also known as the protoplanetary disk. This cocoon is a massive, hydrogen-rich disk filled with dust, where planets and initial belts form. It envelops the entire nascent planetary system. Once this protective cocoon dissipates–after a few million years–the asteroids warm up, causing their ice to melt or, more precisely, to sublimate. In space, where pressure is nearly zero, the water remains in vapor form after this process.

    A disk of water vapour is then superimposed on the asteroid belt orbiting the Sun. As the ice sublimates, the disk fills with vapor, which spreads inward toward the Sun due to complex dynamic processes. Along the way, this vapor disk encounters the inner planets, immersing them in a kind of “bath”. In a way, the disk “waters” the terrestrial planets: Mars, Earth, Venus and Mercury. Most of this water capture occurred 20 to 30 million years after the Sun’s formation, during a period when the Sun’s luminosity increased dramatically over a brief period of time, increasing the degassing rate of asteroids.

    Step-by-step illustration of a new model for water distribution on the inner planets of the solar system, including Earth. Five million years after the Sun’s birth, asteroids in the main belt release water vapor due to solar energy. This vapor gradually spreads into the inner solar system, eventually enveloping the planets, which capture part of it to form oceans between 10 and 100 million years later.
    Sylvain Cnudde/Observatoire de Paris — PSL/LESIA, Fourni par l’auteur

    Once water is captured by a planet’s gravitational pull, many processes can occur. On Earth, however, a protective mechanism ensures the total mass of water has remained relatively constant from the end of the capture period until today. If water rises too high into the atmosphere, it condenses into clouds, which eventually return to the surface as rain–a process known as the water cycle.

    The quantities of water on Earth, both past and present, are well documented. Our model, which begins with the degassing of ice from the original asteroid belt, successfully accounts for the amount of water needed to form oceans, rivers and lakes, and even the water buried deep within Earth’s mantle. Precise measurements of the D/H ratio of water in the oceans also align with our model. Moreover, the model explains the quantities of water present in the past on other planets–and even on the Moon.

    You might wonder how I arrived at this new theory. It stems from recent observations, particularly those made with ALMA, a radio telescope array of over 60 antennae located in Chile, on a plateau five kilometres above sea level. Observations of extrasolar systems with belts similar to the Kuiper Belt reveal that planetesimals in these belts sublimate carbon monoxide (CO). For belts closer to their star, such as the asteroid belt, CO is too volatile to be present, and water is more likely to be released.

    Building the model

    It was from these findings that the initial idea for the theory began to take shape. Moreover, recent data from the Hayabusa 2 and OSIRIS-REx missions, which explored asteroids similar to those that might have contributed to the formation of the initial water vapor disk, provided key confirmation. These missions, along with long-standing observations from ground-based telescopes, revealed substantial amounts of hydrated minerals on these asteroids–minerals that can only form through contact with water. This supports the premise that these asteroids were initially icy, even though most have since lost their ice (except for larger bodies like Ceres).

    With the foundation of the model in place, the next step was to develop a numerical simulation to track the degassing of ice, the dispersion of water vapor, and its eventual capture by planets. During these simulations, it quickly became clear that the model could account for Earth’s water supply. Additional research on past water quantities for Mars and other terrestrial planets confirmed the model’s applicability to them as well. It all fit, and the results were ready for publication!

    As researchers, it’s not enough to design a model that works and seems to explain everything. The theory must be tested on a larger scale. While it’s now impossible to detect the initial water vapor disk that “watered” the terrestrial planets, we can look to extrasolar systems with young asteroid belts to see if such water vapor disks exist. According to our calculations, these disks, though faint, should be detectable with ALMA. Our team has just secured time on ALMA to investigate specific systems for evidence of them.

    We may be at the dawn of a new era in understanding the origins of Earth’s water.

    Quentin Kral ne travaille pas, ne conseille pas, ne possède pas de parts, ne reçoit pas de fonds d’une organisation qui pourrait tirer profit de cet article, et n’a déclaré aucune autre affiliation que son organisme de recherche.

    ref. A new theory explains how water first arrived on Earth – https://theconversation.com/a-new-theory-explains-how-water-first-arrived-on-earth-246516

    MIL OSI – Global Reports

  • MIL-OSI Africa: Why is there so much gold in west Africa?

    Source: The Conversation – Africa – By Raymond Kazapoe, Senior lecturer, University for Development Studies

    Militaries that have taken power in Africa’s Sahel region – notably Mali, Burkina Faso and Niger – have put pressure on western mining firms for a fairer distribution of revenue from the lucrative mining sector.

    Gold is one of the resources at the heart of these tensions. West Africa has been a renowned gold mining hub for centuries, dating back to the ancient Ghana empire, which earned its reputation as the “Land of Gold” because of its abundant reserves and thriving trade networks. The region remains a global leader in gold production. As of 2024, west Africa contributed approximately 10.8% of the world’s total gold output.

    But why is there so much gold in this region? The Conversation Africa asked geologist Raymond Kazapoe to explain.

    How is gold formed?

    The simple answer here is that we are not certain. However, scientists have some ideas.

    Gold, like all elements, formed through high energy reactions that occurred in various cosmic and space environments some 13 billion years ago, when the universe started to form.

    However, gold deposits – or the concentration of gold in large volumes within rock formations – are believed to occur through various processes, explained by two theories.

    The first theory – described by geologist Richard J. Goldfarbargues that large amounts of gold were deposited in certain areas when continents were expanding and changing shape, around 3 billion years ago. This happened when smaller landmasses, or islands, collided and stuck to larger continents, a process called accretionary tectonics. During these collisions, mineral-rich fluids moved through the Earth’s crust, depositing gold in certain areas.

    A quartz vein rock specimen with visible gold. Mangiwau/Getty Images

    A newer, complementary theory by planetary scientist Andrew Tomkins explains the formation of some much younger gold deposits during the Phanerozoic period (approximately 650 million years ago). It suggests that as the Earth’s oceans became richer in oxygen during the Phanerozoic period, gold got trapped within another mineral known as pyrite (often called fool’s gold) as microscopic particles. Later, geological processes – like continental growth (accretion) and heat or pressure changes (metamorphism) released this gold – forming deposits that could be mined.

    Where in west Africa is gold found and what are its sources?

    Most gold production and reserves in west Africa are found within the west African craton. This is one of the world’s oldest geological formations, consisting of ancient, continental crust that has remained largely unchanged for billions of years.

    West African Craton. Wikipedia

    The craton underlies much of west Africa, spanning parts of Mali, Ghana, Burkina Faso, Côte d’Ivoire, Guinea, Senegal and Mauritania. In fact, most west African countries that have significant gold deposits have close to 50% of their landmass on the craton. Notably, between 35% and 45% of Ghana, Mali and Côte d’Ivoire’s territory sits on it – which is why these areas receive so much attention from gold prospectors.

    Gold deposits were formed within west Africa’s craton rocks during a major tectonic event, known as the Eburnean Orogeny, 2.2 billion to 2.08 billion years ago. This event was accompanied by the temperature, pressure and tectonic conditions which promote gold mineralisation events. Most of the gold resources in the west African craton are found within ancient geological formations formed by volcanic and tectonic processes about 2.3 billion to 2.05 billion years ago. These are known as the Rhyacian Birimian granitoid-greenstone belts.

    These gold-bearing belts in Ghana and Mali are by far the most endowed when compared with other countries in the region. Ghana and Mali currently, cumulatively account for over 57% of the combined past production and resources of the entire west Africa sub-region.

    Gold bearing geological structures in Ghana. Gerhard Michael Free/Shutterstock

    Ghana is thought to be home to 1,000 metric tonnes of gold. The country produces 90 metric tonnes each year – or 7% of global production. Gold production in Mali reached around 67.7 tonnes in 2023. Mali has an estimated 800 tons of gold deposits.

    By comparison, the world’s two largest gold producers are China (which mined approximately 370 metric tonnes of gold in 2023) and Australia (which had an output of around 310 metric tonnes in 2023).

    What are some of the modern exploration tools used to find gold?

    Gold was traditionally found by panning in riverbeds, where miners swirled sediment in water to separate the heavy gold particles, or by digging shallow pits to extract gold-rich ores. Over time, methods have evolved to include geochemical exploration techniques, advanced geophysical surveys, and chemical extraction techniques, like cyanide leaching.

    Geological mapping techniques are always evolving, and at the moment, there is a lot of interest in combining remote sensing data with cutting-edge data analytics methods, like machine learning. By combining these two methods, geologists can get around some of the problems caused by traditional methods, like the reliance on subjective judgement to create reliable maps and the need to spend money prospecting in areas with low chances of success.

    In recent years, deep learning computer techniques have made significant progress. They examine various geological data-sets to reduce uncertainty and increase the chances of finding gold mineralisation through advanced artificial intelligence techniques. These methods have proved highly beneficial in identifying specific features and discovering new mineral deposits when applied to remote sensing data.

    Another method, which I’ve researched and which could serve as a complementary gold exploration tool, is the use of stable isotopes. Stable isotopes are elements – like carbon, hydrogen and oxygen – that do not decay over time. Some are responsible for helping to carry gold, in fluids, through rocks to form the deposits. As the gold-bearing fluids interact with the rocks, they transfer the stable isotopes to the rocks, thereby imbuing them with their unique signature. The thinking here is to identify the signature and then use it as a proxy for finding gold, since gold itself is hard to identify directly.

    Advancements in analytical techniques have reduced the cost, volume, and time involved. This makes it a viable alternative to geochemical approaches – the most widely used and relatively efficient method.

    – Why is there so much gold in west Africa?
    – https://theconversation.com/why-is-there-so-much-gold-in-west-africa-248599

    MIL OSI Africa

  • MIL-OSI Global: Why is there so much gold in west Africa?

    Source: The Conversation – Africa – By Raymond Kazapoe, Senior lecturer, University for Development Studies

    Militaries that have taken power in Africa’s Sahel region – notably Mali, Burkina Faso and Niger – have put pressure on western mining firms for a fairer distribution of revenue from the lucrative mining sector.

    Gold is one of the resources at the heart of these tensions. West Africa has been a renowned gold mining hub for centuries, dating back to the ancient Ghana empire, which earned its reputation as the “Land of Gold” because of its abundant reserves and thriving trade networks. The region remains a global leader in gold production. As of 2024, west Africa contributed approximately 10.8% of the world’s total gold output.

    But why is there so much gold in this region? The Conversation Africa asked geologist Raymond Kazapoe to explain.

    How is gold formed?

    The simple answer here is that we are not certain. However, scientists have some ideas.

    Gold, like all elements, formed through high energy reactions that occurred in various cosmic and space environments some 13 billion years ago, when the universe started to form.

    However, gold deposits – or the concentration of gold in large volumes within rock formations – are believed to occur through various processes, explained by two theories.

    The first theory – described by geologist Richard J. Goldfarbargues that large amounts of gold were deposited in certain areas when continents were expanding and changing shape, around 3 billion years ago. This happened when smaller landmasses, or islands, collided and stuck to larger continents, a process called accretionary tectonics. During these collisions, mineral-rich fluids moved through the Earth’s crust, depositing gold in certain areas.

    A newer, complementary theory by planetary scientist Andrew Tomkins explains the formation of some much younger gold deposits during the Phanerozoic period (approximately 650 million years ago). It suggests that as the Earth’s oceans became richer in oxygen during the Phanerozoic period, gold got trapped within another mineral known as pyrite (often called fool’s gold) as microscopic particles. Later, geological processes – like continental growth (accretion) and heat or pressure changes (metamorphism) released this gold – forming deposits that could be mined.

    Where in west Africa is gold found and what are its sources?

    Most gold production and reserves in west Africa are found within the west African craton. This is one of the world’s oldest geological formations, consisting of ancient, continental crust that has remained largely unchanged for billions of years.

    The craton underlies much of west Africa, spanning parts of Mali, Ghana, Burkina Faso, Côte d’Ivoire, Guinea, Senegal and Mauritania. In fact, most west African countries that have significant gold deposits have close to 50% of their landmass on the craton. Notably, between 35% and 45% of Ghana, Mali and Côte d’Ivoire’s territory sits on it – which is why these areas receive so much attention from gold prospectors.

    Gold deposits were formed within west Africa’s craton rocks during a major tectonic event, known as the Eburnean Orogeny, 2.2 billion to 2.08 billion years ago. This event was accompanied by the temperature, pressure and tectonic conditions which promote gold mineralisation events. Most of the gold resources in the west African craton are found within ancient geological formations formed by volcanic and tectonic processes about 2.3 billion to 2.05 billion years ago. These are known as the Rhyacian Birimian granitoid-greenstone belts.

    These gold-bearing belts in Ghana and Mali are by far the most endowed when compared with other countries in the region. Ghana and Mali currently, cumulatively account for over 57% of the combined past production and resources of the entire west Africa sub-region.

    Ghana is thought to be home to 1,000 metric tonnes of gold. The country produces 90 metric tonnes each year – or 7% of global production. Gold production in Mali reached around 67.7 tonnes in 2023. Mali has an estimated 800 tons of gold deposits.

    By comparison, the world’s two largest gold producers are China (which mined approximately 370 metric tonnes of gold in 2023) and Australia (which had an output of around 310 metric tonnes in 2023).

    What are some of the modern exploration tools used to find gold?

    Gold was traditionally found by panning in riverbeds, where miners swirled sediment in water to separate the heavy gold particles, or by digging shallow pits to extract gold-rich ores. Over time, methods have evolved to include geochemical exploration techniques, advanced geophysical surveys, and chemical extraction techniques, like cyanide leaching.

    Geological mapping techniques are always evolving, and at the moment, there is a lot of interest in combining remote sensing data with cutting-edge data analytics methods, like machine learning. By combining these two methods, geologists can get around some of the problems caused by traditional methods, like the reliance on subjective judgement to create reliable maps and the need to spend money prospecting in areas with low chances of success.

    In recent years, deep learning computer techniques have made significant progress. They examine various geological data-sets to reduce uncertainty and increase the chances of finding gold mineralisation through advanced artificial intelligence techniques. These methods have proved highly beneficial in identifying specific features and discovering new mineral deposits when applied to remote sensing data.

    Another method, which I’ve researched and which could serve as a complementary gold exploration tool, is the use of stable isotopes. Stable isotopes are elements – like carbon, hydrogen and oxygen – that do not decay over time. Some are responsible for helping to carry gold, in fluids, through rocks to form the deposits. As the gold-bearing fluids interact with the rocks, they transfer the stable isotopes to the rocks, thereby imbuing them with their unique signature. The thinking here is to identify the signature and then use it as a proxy for finding gold, since gold itself is hard to identify directly.

    Advancements in analytical techniques have reduced the cost, volume, and time involved. This makes it a viable alternative to geochemical approaches – the most widely used and relatively efficient method.

    Raymond Kazapoe receives funding from the African Union and Pan African University to carry out some of the research referenced in this article

    ref. Why is there so much gold in west Africa? – https://theconversation.com/why-is-there-so-much-gold-in-west-africa-248599

    MIL OSI – Global Reports

  • MIL-OSI Global: Heat pumps have a cosiness problem

    Source: The Conversation – UK – By Aimee Ambrose, Professor of Energy Policy, Member of Fuel Poverty Evidence and Trustee of the Fuel Poverty Research Network, Sheffield Hallam University

    How we keep warm at home accounts for 17% of the UK’s greenhouse gas emissions. The UK cannot reach net zero emissions, and end its contribution to climate change, without ending its reliance on natural gas as the dominant source of heating.

    As elsewhere in Europe, heat pumps (which use electricity to draw heat out of the air or ground and circulate it indoors) are regarded as the best way to reduce carbon emissions. But are people ready to ditch their gas boilers?

    My colleagues and I spent three years researching what people need, want and expect from their heating systems by asking 300 people in eight settlements across the UK, Finland, Sweden and Romania about their experiences of trying to keep warm at home. These memories ranged from as early as 1945 to the present day.

    Among the four countries we studied, the uptake of heat pumps is most sluggish in the UK and Romania. In Sweden, heat pumps are an established technology, used to heat homes outside of dense urban areas that tend to be served by heat networks, where a boiler is shared by multiple dwellings and heat pumped to each home through pipes.

    Successive oil crises accelerated the roll-out of electric heating in Sweden during the 1970s. Our participants credited widespread trust in the Swedish government at the time for the successful adoption of heat pumps.

    Relatively low trust in the government makes it more difficult to increase heat pump uptake in the UK, a problem shared by Romania, where, low trust in the government follows decades of communist rule during which energy could be cut off to maintain supply to industries.

    When coal was king and stoves were guilt-free

    We found that there were strong attachments to high-carbon fuels in many of the communities we studied – even where people were committed to a future with low-carbon energy.

    In former coalfields, such as Rotherham in south Yorkshire and Jiu Valley in south-west Romania, people spoke wistfully of the coal industry which provided jobs, housing and plentiful fuel for heating and cooking, except during industrial disputes. The coal fire was where most of our participants let their minds linger.

    The subsequent move to natural gas heating for most UK households, which started in the 1960s, failed to evoke the same enthusiasm. People did acknowledge the benefits of being able to heat the whole home evenly with gas central heating and remembered feeling glad to no longer have to clean out the grate, but this was a less remarkable era in home heating. Participants talked about it in less detail, for less time and with less enthusiasm.

    Many of our Finnish participants, despite having heat pumps or connection to a district heating network, wanted to continue burning wood at home. This treasured practice brought a sense of wellbeing. The intense pleasure of the fireside created a sense of homeliness and enabled cultural traditions such as cooking on a wood fire, plus the multi-sensory experience of a wood-fired sauna.

    Some participants worried about being considered an “environmental criminal” for driving a diesel car, but regarded burning wood as more socially acceptable. Outside of cities, plots of woodland are inherited in some families. Gathering firewood was a ritual many enjoyed and didn’t want to give up.

    Nice, but not sustainable.
    Skylines/Shutterstock

    More affluent participants in the UK also valued their wood burning stoves – a growing trend essentially borrowed from Scandinavian neighbours. Those we interviewed in Sweden also prized their wood burners but usually only in the homes or cabins where they holidayed.

    Thermal delight

    In 1979, US architect Lisa Heschong’s concept of “thermal delight” held that building designers were forgetting the importance of enabling pleasure through heat. Our research participants had not forgotten, however, and confirmed that we seek the most joyous route to warming our bodies.

    While the necessary speed of the net zero transition entails a clean sweep that substitutes fossil-fuelled heating for low-carbon, electric alternatives, our research shows that this may be unappealing to many households.

    The people we met wanted heating options to reflect different needs and preferences. Our participants valued central heating for bringing their houses to a consistent temperature, but this did not preclude a desire for the radiant heat of the log burner on some days. They also wanted the option of plugging in a portable, electric heater when they only needed to heat one room.

    They enjoyed the contrast between the intense warmth of the fireside and a cool bedroom and many regarded an even heat throughout the home as “uninviting” – something that met their needs but not their desires. The experience of different eras of home heating had taught them the value of flexibility and variety, which makes a “clean sweep” to electric heating unattractive.

    These findings do not mean that heat pumps are doomed. Indeed, heat pumps have a lot to offer in terms of reducing heating emissions. What we found does indicate a need for multiple ways to heat the home within scenarios for reaching net zero emissions.

    The transition from coal to gas heating is within living memory in the UK.
    AstroStar/Shutterstock

    Partly, this calls for innovation in home heating technology. There is really no place for burning solid fuels in a net zero future, but a concerted effort between heating researchers, designers and technologists could create a beautiful heat source that acts as a focal point, and offers something akin to the multi-sensory joy of the fireside.

    The findings also indicate the need to change how heating transitions are talked about by the government and energy companies. Away from an implacable duty to switch heating sources and the need for efficiency, and towards the joy and abundance of a heat source that (in the case of heat pumps) offers four times the heat output for the same energy input as a gas boiler.

    The best way to sell the low-carbon heating transition is locally, where the kinds of attachments and allegiances to heat that we have uncovered are best appreciated and understood. Local authorities are typically best placed to do that.


    Don’t have time to read about climate change as much as you’d like?

    Get a weekly roundup in your inbox instead. Every Wednesday, The Conversation’s environment editor writes Imagine, a short email that goes a little deeper into just one climate issue. Join the 40,000+ readers who’ve subscribed so far.


    Aimee Ambrose receives funding from The Collaboration for the Humanities and Social Sciences in Europe (CHANSE) and The Arts and Humanities Research Council (AHRC).

    ref. Heat pumps have a cosiness problem – https://theconversation.com/heat-pumps-have-a-cosiness-problem-249529

    MIL OSI – Global Reports

  • MIL-OSI Global: Namibia’s Shark Island: Europe’s push for green hydrogen risks compromising sites of colonial genocide

    Source: The Conversation – Canada – By Rosanna Carver, Postdoctoral Research Fellow, University of Victoria

    An aerial view of Shark Island and the town of Lüderitz in Namibia. (Black Court Studios)

    In September 2025, Namibia will host the Global African Hydrogen Summit. The Namibian government has ambitions to turn the country into a leading producer of green hydrogen for export to markets in Europe and elsewhere. However, the lands and waters now regarded as being essential to Europe’s energy transition are tied to traumatic memories of colonial violence; especially the ocean, which is the final resting place for thousands of Namibians.

    As countries around the world transition to renewable energy, an inconspicuous peninsula in Namibia known as Shark Island is positioned to play a key role in the production of so-called “green” hydrogen, which is a proposed alternative to fossil fuels.

    However, the peninsula and its waters are at risk of being compromised by proposed port expansions to support the transportation of green hydrogen. Shark Island, near the town of Lüderitz, is now a campsite for tourists.

    But Shark Island is also called Death Island, and it was a concentration camp and a site of genocide during German colonial rule from 1884 to 1915. The concentration camp has since been destroyed, leaving little evidence of the violence that occurred there. However, recent international investigations highlight what many Namibians have known and worked on for generations.

    Germany’s colonization and genocide

    In 1884, German colonizer Adolf Lüderitz annexed Namibia, intending to finance colonial rule through minerals. Between 1904 and 1908, German colonial forces killed approximately 100,000 people (80 per cent of the Herero and half of the Nama population). The genocide also affected the ǂNukhoen and the ǂAonin communities.

    During the genocide, those who were not immediately killed were sent to concentration camps, where they were forced to perform manual labour, such as working on railways and harbours. This occurred across Namibia, including on the coast: in Swakopmund and Lüderitz alone, more than 1,550 Nama died.

    The research agency Forensic Architecture has digitally reconstructed the camps and identified evidence of burial places. On Shark Island, they demonstrate that the port expansion “poses further imminent risk to the site.”

    Attention has been given to the land-based component of green hydrogen projects including the multinational joint venture, Hyphen Energy. But the ocean, which Namibia’s development projects also interact with, is often overlooked as a space of memory, justice and relations. This is in part due to colonial and apartheid histories that erased or excluded people from the coasts and oceans.

    During colonial rule, German colonizers incarcerated Namibians offshore aboard ships. They also threw the bodies of those who had died in the concentration camp into the ocean. The local saying “the sea will take you” highlights how the ocean is involuntarily tied to memories of death and trauma.

    Namibians have not forgotten the violence that occurred on the land and at sea. Local groups are restoring grave sites and establishing memorials. The discussion of recognition, justice and equitable rights and access to the coast and ocean are important for Namibia’s communities and the decedents of those killed during the genocide.

    Waves of energy colonialism

    Green hydrogen has a central role in global decarbonization ambitions. Namibia is considered an “export production site” for Europe’s future hydrogen economy. This is due to its solar and wind potential, and access to the ocean.

    Hydrogen can only be produced in Namibia if the infrastructure exists to enable it. For example, hydrogen requires the industrial and transportation infrastructure to get it to international markets. To meet these demands, the Namibian Ports Authroity is proposing port expansions in the city of Walvis Bay and Lüderitz, where expansion could have implications for Shark Island and its waters.

    Campaigners in Namibia are demanding the government and industry halt the expansion plans on Shark Island, and meaningfully engage with reconciliation. Among them is the Windhoek-based Black Court Studio, where Natache Iilonga, co-author of this article, is the creative director.

    These proposed developments signal the continued European dominance in Namibia’s blue and green economy projects. They enable energy colonialism, where the push for green energy continues colonial injustices. European countries and industry perpetuate ecological, social and cultural harm to satisfy their own climate change agendas.

    Projects and partnerships between Namibia and European countries like Germany are emblematic of (neo)colonial power relations. While these projects propose to foster co-operation, they also continue to dispossess communities from their lands and waters, and erase environmental and cultural relations.

    Through “development assistance,” the German government and non-governmental organizations continue to influence economic projects in Namibia, while avoiding discussion of meaningful reparations for colonial crimes.




    Read more:
    Germany’s genocide in Namibia: deal between the two governments falls short of delivering justice


    The land and ocean are not merely passive witnesses to colonial violence. Black Court Studio incorporates the ocean as a dynamic participant in the conversation about these violent histories, and justice and healing. Through community exercises and counter-mapping, the studio explores people’s socio-cultural relations with the ocean.

    Together, the studio’s interventions are beginning to resituate previously erased and forgotten connections with Shark Island. This work also highlights cultural and spiritual relations with the ocean that persist despite this dispossession.

    Namibia’s ocean and coasts are not empty spaces to be exploited for the benefit of Europe’s energy future. A deeper understanding of histories, and present day connections, provide lessons for meaningful reconciliation.

    Natache Iilonga is a practicing architect with Iilonga Architects Inc and the co-founder of Black Court Studios Namibia.

    Rosanna Carver does not work for, consult, own shares in or receive funding from any company or organisation that would benefit from this article, and has disclosed no relevant affiliations beyond their academic appointment.

    ref. Namibia’s Shark Island: Europe’s push for green hydrogen risks compromising sites of colonial genocide – https://theconversation.com/namibias-shark-island-europes-push-for-green-hydrogen-risks-compromising-sites-of-colonial-genocide-239549

    MIL OSI – Global Reports

  • MIL-OSI Asia-Pac: Text of the Vice President’s Address At The 10th Convocation Of Shri Mata Vaishno Devi University, Jammu (Excerpts)

    Source: Government of India (2)

    Posted On: 15 FEB 2025 4:05PM by PIB Delhi

    Jai Mata Di.

    From every consideration, a convocation address is difficult because the expectations are high. There is obvious belief that the person imparting the convocation address will say something novel. My task has been rendered very difficult. It is daunting and formidable because the Honourable Chief Minister Omar Abdullah has with enormous talent focused on relevance of convocation. One of the best addresses on the point I have come across and let me tell you he comes in the same league as that of chancellor of Jawaharlal Nehru University, a former diplomat, former foreign Secretary, Kanwal Sibal.

    I am sure you would bestow full attention on what the Honourable Chief Minister has imparted to you, but I have been completely pre-empted by the Lieutenant Governor, who has traversed much beyond what I had in mind, his address is inspirational, motivational and gives you a direction. His focus has been on what we need to reflect, he has as a matter of fact made a clarion call that you before us today and your class, the class of young minds, boys and girls, you are the most vital stakeholders of democracy, and you are lucky. If I may quote Rabindranath Tagore. Rabindranath Tagore has visualised and envisioned, what Bharat should do. “Where the mind is without fear and the head is held high.” we missed this ecosystem for a very long time. But now, boys and girls, you are living in times where you can have mind without fear because our economy is blossoming. Bharat is witnessing economic upsurge unknown before, and we are without fear because the
    nation’s rise is being accoladed by global institutions as a favourite destination of investment and opportunity.

    Never before in the history of this country since independence, the voice of Indian Prime Minister was so resonant with global leaders. With his election for the third time after 60 years, as Prime Minister has put him in the big league of global leaders and now India’s prime minister is not noticed, he his epicentre of notice and that is the achievement which you have. Boys and girls, another big change, which we did not have during our times and the change is you have an ecosystem because of affirmative governance initiative, forward-looking policies, and a new education policy that allows you to fully exploit your talent and potential and realise your dreams and ambitions. And therefore, those who after getting the degrees I congratulate them, frog leaping into the larger domain, have enormous vistas before them to make themselves in satisfaction mode. Make the teachers and parents proud and contribute for the nation.

    And therefore, I have no hesitation in saying, I would not like to reiterate what has been said with great emphasis by the Honourable Lieutenant Governor and the Chief Minister. But for me, it’s a nostalgic moment, there are three visits to Jammu and Kashmir that I recollect. One was in early 80s. I visited places Gulmarg, Sonamarg, all places that could possibly be there along with my wife and our daughter. The second was a very painful experience. I was elected to Parliament in 1989. I was a Union Minister when I came to Srinagar as a member of the council of ministers. Boys and girls, you may not recollect because you have to look back into history. We did not see even dozens of people on the streets of Srinagar and the national scene was one of gloom.
    भारत जिसको सोने की चिड़िया कहते थे उसका सोना विदेशों में जहाज के द्वारा गिरवी रखा गया Switzerland के बैंक में। and why, because our foreign exchange was in doldrums. Around US$1 billion and look at where we are at the moment. It was a glorifying moment for me in Rajya Sabha when it was declared that in Jammu and Kashmir, more than two crore tourists had visited. The aspirations of generations found wings when the constitutional walls of separation crumbled in 2019 with the historic abrogation of Article 370. Article 370 was a temporary article in the Constitution. And to young minds, let me invite your attention to two aspects. Dr. B. R. Ambedkar, the architect of the Indian Constitution drafted all articles of the Constitution except Article 370.

    I would urge you to go into historical perspective to know the background why he declined. Another towering giant of Indian political firmament, Sardar Patel took upon himself the task of integrating princely states except the state of the Jammu and Kashmir. But now in 2019 a big change has taken place. In the sacred land of Mata Vaishno Devi, a new pilgrimage began. The journey from isolation to integration, the winds of change have brought peace and progress. For the first time, the region experienced true national integration.

    There was a demand by a great son of the soil. एक देश में एक निशान, एक प्रधान, एक विधान। That is accomplished. And what will happen? I am sure about it. Disturbance has yielded to order where we witness disorder as the normal order, we now have the real order. Jammu and Kashmir, witnessed the highest voter turnout in 35 years during the 2024 Lok Sabha polls and just take note of it. With a 30-point increase in Kashmir Valley participation, democracy has found its real voice, its real resonance. I reiterate it. In 2023, over 2 crore tourists visited Jammu and Kashmir. The result was boosting local economy. The heaven on earth is now full of hope and prosperity. It is a global attraction. Every investment proposal in New Kashmir isn’t just about capital, it’s about truth being restored, faith being rewarded.

    The change is not imperceptible; it is perceptible. Perception has changed, ground reality is changing, hopes of the people are soaring. Private investment proposals I am happy to share with you worth Rs 60000 crores were received in two years. They signal economic interest in the state of Jammu and Kashmir, in this area. Foreign direct investment entered Jammu and Kashmir for the first time after 2019 with multiple International companies showing interest. The area is no longer a story of conflict, but it is confluence of confidence and capital. The opportunity basket in Jammu and Kashmir is expanding and continues to bloom. There is no need now to leave the region. The call is be the architects of this new dawn. Education undoubtedly is the most impactful transformative mechanism. It brings about equality that is need of the society. It caps inequities. education defines democracy. And imagine educational institutions show significant growth. This being one, but IIT, IIM, AIIMS establishing campuses in the region. Post 2019 is a great signal.

    The change, boys and girls, with urge to have passion for a particular stream in academics at prestigious institutions, institutions of eminence in their area. The region’s first Multiplex opened in Srinagar in 2022 marking the return of cinema after three decades. When we look around infrastructural growth, the development in this area is standing out. Around thousand recognised start-ups and more significantly as I find in the audience also, amongst the youth, a gender balancing. One third of the start-ups are led by women. Jammu and Kashmir’s transformation is a part of a larger national revolution with everyone contributing to a new developed India. This is not just a change. It is a renaissance.

    I fully agree with the Lieutenant Governor when he reflected the history of industrial revolutions. We are at the cusp of no less than an industrial revolution on account of onslaught of disruptive technologies. There is paradigm shift every moment. we have to content with disruptive technologies, artificial intelligence, internet of things, machine learning, Blockchain, and the kind. And I’m happy to share with the young minds that the focus which India has bestowed by way of quantum computing, green hydrogen mission, 6G, the commercial exploitation of 6G in the second phase will start in 2025 to 2030. It is for the first time the country has seen development in sea, on sea surface, under the ground, on the ground, in the sky, in the space and that offers new opportunities to young minds. Space economy, blue economy, are the things that attract your attention. Your opportunity basket, you have to focus on it. The traditional groove, the silos of  government jobs, you must get detached because hand-holding policies of the government allows you to take a big leap.

    Let me tell you, this day is Dikshaant, it is not Sikshaant. Learning never stops. You cannot stop learning, it has to be with you lifelong. Let me make a reference to what a Pre-Socratic philosopher said, Heraclitus. The only constant in life is the change. He buttressed it by an illustration that the same person cannot enter the same river twice because neither the person is the same nor the river is the same.

    In addition to what the Honourable Chief Minister has imparted to you, I will just add fear of fear invites failure. Fear of fear is myth. Never hesitate to experiment if an idea occurs in your mind. This mind irrespective of technology of any nature, there is no substitute of this. Don’t allow it to be a parking space of an idea, experiment, as rightly pointed out by the Honourable Chief Minister. There is nothing like failure, a setback is a step towards success. Chandrayaan 3, which created history by landing India’s spacecraft on the South pole of moon, in ShivShakti point with Tiranga, owes its success to Chandrayaan 2. I wholly disagree with people who thought Chandrayaan was not a success, it was. But we believe in a mindset that success has to be hundred percent. No. If you look into historical innovations great creations, you can see. And therefore, I wish to convey to my young friends you are seeing a Bharat which is not a nation of potential, it is a nation fully exploiting its potential. A developed nation status is not our dream. It’s our goal, a definitive goal.

    I joined the LG when the Lieutenant Governor made a clarion call to you. ये यज्ञ है, इस यज्ञ में आप अपनी आहुति दीजिए । सामर्थ्य के अनुसार दीजिए क्योंकि youth से ज़्यादा प्रजातंत्र में और कोई stakeholder नहीं है ।You have to drive the engine of progress. Nothing stops you because we are proud Indians. हम भारतीय हैं, भारतीयता हमारी पहचान है, राष्ट्रवाद हमारा धर्म है। हमारा परम कर्तव्य है कि हर हालत में हम राष्ट्रहित को सर्वोपरि रखें। कोई भी ऐसा हित नहीं है, राजनीतिक और व्यक्तिगत, जो राष्ट्रहित से बड़ा है।अब समस्या आती है और कई नवयुवक मुझे कहते हैं कई नवयुवती कहती हैं हम क्या करें । I will call upon you on this particular day to focus on five points in particular. Each one of you boys and girls, you can do it, and you must do it. पाँच प्रान । ये पंच प्रण बहुत महत्वपूर्ण है। इनके अंदर है पारिवारिक मूल्य। परिवार के साथ जुड़ कर रहिए, माता पिता का सम्मान कीजिए, पड़ोसी का आदर कीजिए, समाज का अभिन्न अंग बनिए, पर्यावरण की चेतना करनी चाहिए। अपने पास धरती माँ के अलावा रहने की दूसरी जगह नहीं है। जब प्रधान मंत्री ने देश को आह्वान किया कि माँ के नाम एक पेड़ लगाओ, वो एक भावना को उजागृत करना था कि पाँच हजार की संस्कृति के अंदर जो ज्ञान है पर्यावरण के लिए उसका हमे बोध होना चाहिए। अब ये जन आंदोलन बन गया है इसका ध्यान दीजिए । India is nerve center of culture in the world, no country can take pride the way we can take because we have 5,000 years of civilisational ethos. हमारी सांस्कृतिक विरासत, सांस्कृतिक सभ्यता, ज्ञान का भंडार अद्वितीय है। ऐसी स्थिति में we must nurture our cultural values.

    आत्मनिर्भरता। महात्मा गांधी ने कहा था – स्वदेशी, एक शब्द था, उस समय की अर्थव्यवस्था को हिला कर रख दिया। खादी के उपयोग से शुरू हुआ। वर्तमान प्रधानमंत्री ने इसको एक नया आयाम दिया है – Vocal for Local। आपसे आग्रह करूँगा, गंभीरता से इसका पालन कीजिए। और हर व्यक्ति के कुछ कर्तव्य हैं। अधिकारों की बात हम करते हैं क्योंकि भारत के संविधान में हमें अधिकार मिले हैं—मौलिक अधिकार। पर भारत के संविधान में मौलिक दायित्व भी हैं, पर इसमें संविधान को देखने की आवश्यकता नहीं है। हमारी संस्कृति हमें सिखाती है कि हमारा दायित्व क्या है। We must discharge our civic duties diligently, और यह जब हम करेंगे तो नतीजे निकलेंगे। पहला – we will march, and the march will be fast-tracked for attaining a developed Bharat. We will unshackle ourselves from the colonial mindset। एक तो हम कर चुके हैं, हाल में बहुत बड़ा कदम उठाया गया है। पहले जो दंड विधान था, उसको न्याय विधान कर दिया गया है— unshackling the colonial mindset.

    हमे हमारी विरासत पर गर्व होना चाहिए, क्योंकि ये बेमिसाल है, जड़े मजबूत है । Lieutenant Governor focused कि ११ शताब्दी के आसपास कुछ भटकाव आ गया था, नालंदा गड़बड़ हो गया था, उसका  सृजन हो रहा है। But reflect back on our historical perspective and you will find we had educational institutions like Nalanda, Takshila and many more. People from all over the world took to these institutions for gaining wisdom, knowledge and also sharing it. हमारी एक ही पहचान है वसुधैव कुटुंबकम् । and that is the message we gave to the entire world. One family one planet one future. वसुधैव कुटुंबकम् G20 message.

    मेरा आपसे विनम्र आग्रह रहेगा कि आपको जो डिग्री मिली है  मैं आपको बधाई देता हूँ। a convocation as indicated by the Honourable Chief Minister is a milestone to be ever remembered. This moment will ever be etched in your memory. Please be in connect with people, your friends, all your lives that will be your nectar for the rest of your life. Make it a point. I would urge the vice chancellor that under the visionary guidance of the chancellor, the alumni association must be very vibrant. Institutions thrive on the strength of alumni confederations. I had indicated an idea for a long time that our institutions of eminence like IITs, IIMs, they must have a Confederation of alumni associations because these are natural think tanks. They can help us evolve policies for national interest. I am sure something will be done positive in that direction. I am particularly touched when honour was awarded to Shiv Dutt ji, Nirmoi Ji and Dr Ram Sevak ji.

    A society that recognises talent, a society that acknowledges unimpeachable credentials, a society awards those where the award is well earned by the person that is a signal to the rest of the people merit has a place because we have made exit of patronage. Patronage is no longer a password for opportunity, for success. But what struck me more fundamentally was look at doctorate in literature, doctorate in science. Two are fundamental, there has to be a synergy between the two. The two have to be in sync and that has to be our historical background. If you look at our history, you will find there has been a due regard to both, so I congratulate the chancellor and vice chancellor for being so thoughtful, for such thought-provoking choice that will ever stir our minds inviting our focus. And the address of both of them, though brief, was very illuminating.

    Boys and girls, समय का अभाव है । Time is always a constraint. I will give you 2-3 suggestions. One go for your aptitude. Don’t stress yourself. Don’t carry tension. Because for the first time you are living in an ecosystem, where you can fully utilise your talent, your exploitation of talent by yourself is unstoppable like the rise of Bharat. It is unstoppable now. Two, believe in the words of Vivekanand Ji “arise awake stop not till the goal is achieved”. These are words of Vivekanand Ji when you have to study who he was, he departed from mother India at what age, how he made global impact in that time zone, where travel was very difficult. May Mata Vaishno Devi ever bless you, ever enlighten you, ever guide you, and be a perennial source of inspiration and strength. To ensure your endeavours fructify and that you are always and ever committed to serving the Nation because when Bharat prospers it contributes to global peace.

    I am extremely grateful to the Chancellor, the Honourable Chief Minister and Vice Chancellor for affording me this opportunity. But I am conscious of the divine intervention of Maa Vaishno Devi. माँ का बुलावा आज आया था और माँ का नाम आते ही शरीर में एक संचार होता है sublimity का spirituality का religiosity का और सबके लिए शुभ सोचने का ।

    Thank you so much!

    ***

    JK

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    MIL OSI Asia Pacific News

  • MIL-OSI Asia-Pac: NTPC Wins Forward Faster Sustainability Award 2025 for Water Resilience

    Source: Government of India (2)

    Posted On: 14 FEB 2025 6:04PM by PIB Delhi

    NTPC Ltd., India’s largest integrated power utility, has been honoured with Forward Faster Sustainability Award 2025 in the Water Resilience category. The award was presented at a ceremony organised by the UN Global Compact Network India (UN GCNI) in Chennai on 13th February.

    The award was received by Shri Harekrushna Dash, ED (Sustainability, Environment & Ash) and Shri K Karthikeyan, AGM (Environment & Sustainability) in recognition of the company’s outstanding efforts in water conservation and sustainable water management initiatives.

    The Forward Faster Sustainability Awards celebrate organisations in India that have made significant strides in advancing sustainability and corporate responsibility, aligning with the United Nations Sustainable Development Goals (SDGs). This recognition reaffirms NTPC’s commitment to integrating sustainable practices in its operations and contributing towards global sustainability goals.

    With a strong focus on environmental stewardship, NTPC continues to drive impactful initiatives that enhance resource efficiency and promote long-term sustainability in the power sector.

    NTPC is committed to optimising water use through Reduce, Reuse & Recycle principles. With advanced wastewater treatment plants and 100% sweet water self-sufficiency at RGPPL, the company sets new industry benchmarks in water conservation. Beyond operations, NTPC enhances community access to clean water, restores local water bodies, and promotes conservation awareness—efforts that have earned it prestigious water resilience recognitions.

    NTPC Ltd. is India’s largest integrated power utility, contributing one-fourth of the India’s power requirements and has an installed capacity of over 77 GW, with an additional capacity of 29.5 GW under construction, including 9.6 GW of renewable energy capacity. The company is committed to achieving 60 GW of renewable energy capacity by 2032.

    With a diverse portfolio of thermal, hydro, solar, and wind power plants, NTPC is dedicated to delivering reliable, affordable, and sustainable electricity to the nation. The company is committed to adopting best practices, fostering innovation, and embracing clean energy technologies for a greener future.

    Along with power generation, NTPC has ventured into various new business areas, including e-mobility, battery storage, pumped hydro storage, waste-to-energy, nuclear power, and green hydrogen solutions.

    *****

    JN /SK

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    MIL OSI Asia Pacific News

  • MIL-OSI USA: Gov. Pillen Advocates for Merging Agencies, Improving State’s Water Quantity & Quality

    Source: US State of Nebraska

    . Pillen Advocates for Merging Agencies, Improving State’s Water Quantity & Quality

    LINCOLN, NE – Today, Governor Jim Pillen testified before the Nebraska Legislature’s Natural Resources Committee in favor of LB317 to merge the Department of Natural Resources (DNR) with the Department of Environment and Energy (DEE). Senator Tom Brandt introduced LB317 at the Governor’s request. 

    “Nebraska is at the center of an economic boom with announcements of new hydrogen, advanced biofuels and bio-based products, animal processing plants and data centers looking to locate here. All these industries will require water,” said Gov. Pillen. “Moving forward, we need to double-down on our efforts to protect and enhance this valuable resource. Combining DEE and DNR sets the foundation for water quantity and quality under the same leadership.”

    During his bill introduction, Sen. Brandt also touched on the collaboration between the agencies for water planning, state investments in water infrastructure projects and continued leadership by the state in resource management innovation. 

    “This merger will also reduce costs by eliminating overlapping administrative functions while improving outcomes in personnel management, financial oversight, and IT,” said Sen. Brandt. “Streamlining state permitting for water-related projects will cut red tape and enable quicker, more efficient progress on projects that matter to our communities.” 

    Yesterday, Gov. Pillen announced his appointment of Jesse Bradley to serve as interim director of DEE. Bradley is also the interim director of DNR.  He addressed the overarching benefit of housing DEE and DNR under what would be known as the Department of Water, Energy and Environment. 

    “By combining the agencies’ efforts, the state will improve its focus on challenging long-term water and natural resource management issues such as nitrogen management, water utilization and soil health. The merging of the two departments is expected to allow customers, who currently work with both DNR and DEE separately, the ability to streamline their planning and permitting efforts by working with a single department.”

    Also testifying in favor of LB317 was Tim McCoy, director of the Game & Parks Commission. 

    MIL OSI USA News

  • MIL-OSI USA: The Next Full Moon is the Snow Moon

    Source: NASA

    The next full moon will be Wednesday morning, Feb. 12, 2025, appearing opposite the Sun (in Earth longitude) at 8:53 a.m. EST. The Moon will appear full for about three days around this time, from Monday night into early Thursday evening. The bright star Regulus will appear near the full moon.

    The Maine Farmers’ Almanac began publishing Native American names for full moons in the 1930s, and these names are now widely known and used. According to this almanac, as the full moon in February, the tribes of the northeastern U.S. called this the Snow Moon or the Storm Moon because of the heavy snows in this season. Bad weather and heavy snowstorms made hunting difficult, so this Moon was also called the Hunger Moon. NOAA monthly averages for the Washington, D.C. area airports from 1991 to 2020 show January and February nearly tied as the snowiest months of the year (with February one tenth of an inch ahead).
    Here are the other celestial events between now and the full moon after next with times and angles based on the location of NASA Headquarters in Washington:
    As winter continues in the Northern Hemisphere, the daily periods of sunlight continue to lengthen. Wednesday, Feb. 12 (the day of the full moon), morning twilight will begin at 6:04 a.m. EST, sunrise will be at 7:03 a.m., solar noon will be at 12:23 p.m. when the Sun will reach its maximum altitude of 37.7 degrees, sunset will be at 5:43 p.m., and evening twilight will end at 6:41 p.m.
    Daylight Saving Time starts on the second Sunday in March for much of the United States. The day before, Saturday, March 8, morning twilight will begin at 5:32 a.m., sunrise will be at 6:30 a.m., solar noon will be at 12:19 p.m. when the Sun will reach its maximum altitude of 46.5 degrees, sunset will be at 6:08 p.m., and evening twilight will end at 7:06 p.m. Early on Sunday morning, March 9, the clock will “spring forward” from 1:59:59 a.m. EST to 3:00:00 a.m. EDT. Sunday, March 9, morning twilight will begin at 6:30 a.m., sunrise will be at 7:28 a.m., solar noon will be at 1:19 p.m. when the Sun will reach its maximum altitude of 46.9 degrees, sunset will be at 7:09 p.m., and evening twilight will end at 8:07 p.m. By Friday, March 14 (the day of the full moon after next), morning twilight will begin at 6:23 a.m., sunrise will be at 7:20 a.m., solar noon will be at 1:17 p.m. when the Sun will reach its maximum altitude of 48.9 degrees, sunset will be at 7:14 p.m., and evening twilight will end at 8:12 p.m.
    This should still be a good time for planet watching, especially with a backyard telescope. On the evening of the March 14, the full moon, Venus, Jupiter, Mars, Saturn, and Uranus will all be in the evening sky. The brightest of the planets, Venus, will be 28 degrees above the west-southwestern horizon, appearing as a 29% illuminated crescent through a telescope. Second in brightness will be Jupiter at 71 degrees above the south-southeastern horizon. With a telescope you should be able to see Jupiter’s four bright moons, Ganymede, Callisto, Europa, and Io, noticeably shifting positions in the course of an evening. Jupiter was at its closest and brightest in early December. Third in brightness will be Mars at 48 degrees above the eastern horizon. Mars was at its closest and brightest for the year just a month ago. Fourth in brightness (and appearing below Venus) will be Saturn at 11 degrees above the west-southwestern horizon. With a telescope you may be able to see Saturn’s rings and its bright moon Titan. The rings will appear very thin and will be edge-on to Earth in March 2025. Saturn was at its closest and brightest in early September. The planet Uranus will be too dim to see without a telescope when the Moon is in the sky, but later in the lunar cycle, if you are in a very dark area with clear skies and no interference from moonlight, it will still be brighter than the faintest visible stars. Uranus was at its closest and brightest in mid-November.
    During this lunar cycle, these planets, along with the background of stars, will rotate westward by about a degree each night around the pole star Polaris. Venus, named after the Roman goddess of love, will reach its brightest around Feb. 14, making this a special Valentine’s Day. After about Feb. 17, the planet Mercury, shining brighter than Mars, will begin emerging from the glow of dusk about 30 minutes after sunset. Feb. 24 will be the first evening Mercury will be above the western horizon as twilight ends, while Feb. 25 will be the last evening Saturn will be above the western horizon as twilight ends, making these the only two evenings that all of the visible planets will be in the sky after twilight ends. For a few more evenings after this, Saturn should still be visible in the glow of dusk during twilight. Around March 8 or 9, Mercury will have dimmed to the same brightness as Mars, making Mars the third brightest visible planet again. By the evening of March 13 (the evening of the night of the full moon after next), as twilight ends, Venus and Mercury will appear low on the western horizon, making them difficult targets for a backyard telescope, while Jupiter and Mars (and Uranus) will appear high overhead and much easier to view.
    Comets and Meteor Showers
    No meteor shower peaks are predicted during this lunar cycle. No comets are expected to be visible without a telescope for Northern Hemisphere viewers. Southern Hemisphere viewers may still be able to use a telescope to see comet C/2024 G3 (ATLAS), although it is fading as it moves away from Earth and the Sun, and some recent reports suggest that it might be breaking apart and disappearing from view.
    Evening Sky Highlights
    On the evening of Wednesday, Feb. 12 (the evening of the full moon), as twilight ends at 6:41 p.m. EST, the rising Moon will be 7 degrees above the east-northeastern horizon with the bright star Regulus 2 degrees to the right. The brightest planet in the sky will be Venus at 28 degrees above the west-southwestern horizon, appearing as a crescent through a telescope. Next in brightness will be Jupiter at 71 degrees above the south-southeastern horizon. Third in brightness will be Mars at 48 degrees above the eastern horizon. The fourth brightest planet will be Saturn at 11 degrees above the west-southwestern horizon. Uranus, on the edge of what is visible under extremely clear, dark skies, will be 68 degrees above the south-southwestern horizon. The bright star closest to overhead will be Capella at 75 degrees above the northeastern horizon. Capella is the 6th brightest star in our night sky and the brightest star in the constellation Auriga (the charioteer). Although we see Capella as a single star, it is actually four stars (two pairs of stars orbiting each other). Capella is about 43 light years from us.
    Also high in the sky will be the constellation Orion, easily identifiable because of the three stars that form Orion’s Belt. This time of year, we see many bright stars in the sky at evening twilight, with bright stars scattered from the south-southeast toward the northwest. We see more stars in this direction because we are looking toward the Local Arm of our home galaxy (also called the Orion Arm, Orion-Cygnus Arm, or Orion Bridge). This arm is about 3,500 light years across and 10,000 light years long. Some of the bright stars from this arm that we see are the three stars of Orion’s Belt, and Rigel (860 light years from Earth), Betelgeuse (548 light years), Polaris (about 400 light years), and Deneb (about 2,600 light years).
    Facing toward the south from the Northern Hemisphere, to the upper left of Orion’s Belt is the bright star Betelgeuse (be careful not to say this name three times). About the same distance to the lower right is the bright star Rigel. Orion’s belt appears to point down and to the left about seven belt lengths to the bright star Sirius, the brightest star in the night sky. Below Sirius is the bright star Adhara. To the upper right of Orion’s Belt (at about the same distance from Orion as Sirius) is the bright star Aldebaran. Nearly overhead is the bright star Capella. To the left (east) of Betelgeuse is the bright star Procyon. The two stars above Procyon are Castor and Pollux, the twin stars of the constellation Gemini (Pollux is the brighter of the two). The bright star Regulus appears farther to the left (east) of Pollux near the eastern horizon. For now, Mars is near Castor and Pollux, while Jupiter is near Aldebaran, but these are planets (from the Greek word for wanderers) and continue to shift relative to the background of the stars. Very few places on the East Coast are dark enough to see the Milky Way (our home galaxy), but if you could see it, it would appear to stretch overhead from the southeast to the northwest. Since we are seeing our galaxy from the inside, the combined light from its 100 to 400 billion stars make it appear as a band surrounding Earth.
    As this lunar cycle progresses, the planets and the background of stars will rotate westward by about a degree each evening around the pole star Polaris. The brightest of the planets, Venus, will reach its brightest around Valentine’s Day, Feb. 14.  Bright Mercury will begin emerging from the glow of dusk around Feb. 17 and will be above the horizon as twilight ends beginning Feb. 24, initiating a brief period when all the visible planets will be in the evening sky at the same time that will end after Feb. 25, the last evening Saturn will be above the horizon as twilight ends. Feb. 24 and 25 will also be the two evenings when Mercury and Saturn will appear closest together.
    The waxing crescent “Wet” or “Cheshire” Moon will appear near Mercury on Feb. 28 and Venus on March 1, appearing like a bowl or a smile above the horizon. The waxing gibbous Moon will appear near Mars and Pollux on March 8. Mercury will reach its highest above the horizon as twilight ends on March 8 but will be fading, appearing fainter than Mars. The nearly full moon will appear near Regulus on March 11. Venus and Mercury will be closest to each other on March 12.
    By the evening of Thursday, March 13 (the evening of the night of the full moon after next), as twilight ends at 8:11 p.m. EDT, the rising Moon will be 14 degrees above the eastern horizon. The brightest planet in the sky will be Venus at 4 degrees above the west-southwestern horizon, appearing as a thin, 4% illuminated crescent through a telescope. Next in brightness will be Jupiter at 62 degrees above the west-southwestern horizon. Third in brightness will be Mars at 72 degrees above the southeastern horizon. Mercury, to the left of Venus, will also be 4 degrees above the western horizon. Uranus, on the edge of what is visible under extremely clear, moonless dark skies, will be 45 degrees above the western horizon. The bright star closest to overhead will still be Capella at 75 degrees above the northwestern horizon.
    Morning Sky Highlights
    On the morning of Wednesday, Feb. 12, 2025 (the morning of the night of the full moon), as twilight begins at 6:04 a.m. EST, the setting full moon will be 13 degrees above the western horizon. No planets will appear in the sky. The bright star appearing closest to overhead will be Arcturus at 65 degrees above the southeastern horizon. Arcturus is the brightest star in the constellation Boötes (the herdsman or plowman) and the 4th brightest star in our night sky. It is 36.7 light years from us. While it has about the same mass as our Sun, it is about 2.6 billion years older and has used up its core hydrogen, becoming a red giant 25 times the size and 170 times the brightness of our Sun. One way to identify Arcturus in the night sky is to start at the Big Dipper, then follow the arc of the dipper’s handle as it “arcs toward Arcturus.”
    As this lunar cycle progresses the background of stars will rotate westward by about a degree each morning around the pole star Polaris. The waning Moon will appear near Regulus on Feb. 13, Spica on Feb. 17, and Antares on Feb. 21. The nearly full moon will appear near Regulus on March 12.
    By the morning of Friday, March 14 (the morning of the full moon after next), as twilight begins at 6:23 a.m. EDT, the setting full moon will be 12 degrees above the western horizon. No visible planets will appear in the sky. The bright star closest to overhead will be Vega at 68 degrees above the eastern horizon. Vega is the 5th brightest star in our night sky and the brightest star in the constellation Lyra (the lyre). Vega is one of the three bright stars of the “Summer Triangle” (along with Deneb and Altair). It is about 25 light-years from Earth, has twice the mass of our Sun, and shines 40 times brighter than our Sun.

    Here is a day-by-day listing of celestial events between now and the full moon on March 14, 2025. The times and angles are based on the location of NASA Headquarters in Washington, and some of these details may differ for where you are (I use parentheses to indicate times specific to the D.C. area). If your latitude is significantly different than 39 degrees north (and especially for my Southern Hemisphere readers), I recommend using an astronomy app that is set up for your location or a star-watching guide from a local observatory, news outlet, or astronomy club.
    Sunday morning, Feb. 9 Mars will appear to the upper left of the waxing gibbous Moon. In the early morning at about 2 a.m. EST, Mars will be 8 degrees from the Moon. By the time the Moon sets on the northwestern horizon at 5:58 a.m., Mars will have shifted to 6 degrees from the Moon. For parts of Asia and Northern Europe the Moon will pass in front of Mars. Also, Sunday morning, the planet Mercury will be passing on the far side of the Sun as seen from Earth, called superior conjunction. Because Mercury orbits inside of the orbit of Earth it will be shifting from the morning sky to the evening sky and will begin emerging from the glow of dusk on the west-southwestern horizon after about Feb. 17 (depending upon viewing conditions).
    Sunday evening into Monday morning, Feb. 9 – 10 The waxing gibbous Moon will have shifted to the other side of the Mars (having passed in front of Mars in the afternoon when we could not see them). As evening twilight ends (at 6:38 p.m. EST) the Moon will be between Mars and the bright star Pollux, with Mars 3 degrees to the upper right and Pollux 3 degrees to the lower left. By the time the Moon reaches its highest for the night at 10:27 p.m., Mars will be 4.5 degrees to the right of the Moon and Pollux 2.5 degrees to the upper left of the Moon. Mars will set first on the northwestern horizon Monday morning at 5:44 a.m., just 22 minutes before morning twilight begins at 6:06 a.m.
    Wednesday morning, Feb. 12 As mentioned above, the full moon will be Wednesday morning, Feb. 12, at 8:53 a.m. EST. This will be on Thursday morning from Australian Central Time eastward to the international date line in the mid-Pacific. The Moon will appear full for about three days around this time, from Monday night into early Thursday evening.
    Wednesday evening into Thursday morning, Feb. 12 to 13 The bright star Regulus will appear near the full moon. As evening twilight ends at 6:41 p.m. EST, Regulus will be less than 2 degrees to the right of the Moon, very near its closest. By the time the Moon reaches its highest for the night at 12:55 a.m., Regulus will be 3 degrees to the right. As morning twilight begins at 6:03 a.m., Regulus will be 5 degrees to the lower right of the Moon.
    Friday evening, Feb. 14 Venus, the brightest of the planets, will be near its brightest for the year (based on a geometric estimate called greatest brilliancy). As evening twilight ends at 6:43 p.m. EST, Venus will be 28 degrees above the west-southwestern horizon. Venus will set on the western horizon about 2.5 hours later at 9:09 p.m. Having Venus, named after the Roman goddess of love, shining at its brightest on this evening will make for a special Valentine’s Day!
    Sunday night into Monday morning Feb. 16 to 17 Bright star Spica will appear near the waning gibbous Moon. As Spica rises on the east-southeastern horizon at 10:19 p.m. EST, it will be 3.5 degrees to the lower left of the Moon. Throughout the night Spica will appear to rotate clockwise around the Moon. As the Moon reaches its highest at 3:37 a.m., Spica will be 2 degrees to the left of the Moon. By the time morning twilight begins at 5:58 a.m., Spica will be a little more than a degree above the Moon.
    Monday evening, Feb. 17 This will be the first evening Mercury will be above the west-southwestern horizon 30 minutes after sunset, a rough approximation of when it might start emerging from the glow of dusk before evening twilight ends. Increasing the likelihood it will be visible, Mercury will be brighter than Mars, but not as bright as Jupiter.
    Monday evening, Feb. 17 At 8:06 p.m. EST, the Moon will be at apogee, its farthest from Earth for this orbit.
    Midday on Thursday, Feb. 20 The waning Moon will appear half full as it reaches its last quarter at 12:32 p.m. EST.
    Friday morning, Feb. 21 The bright star Antares will appear quite near the waning crescent Moon. As the Moon rises on the southeastern horizon at 2:05 a.m. EST, Antares will be one degree to the upper left. Antares will appear to rotate clockwise and shift away from the Moon as morning progresses. By the time morning twilight begins at 5:53 a.m., Antares will be 2 degrees to the upper right of the Moon. From the southern part of South America, the Moon will actually block Antares from view.
    Monday, Feb. 24 This will be the first evening Mercury will be above the western horizon as evening twilight ends at 6:54 p.m. EST, setting three minutes later at 6:57 p.m. This will be the first of two evenings when all the visible planets will be in the evening sky at the same time after twilight ends.
    This also will be the evening when Mercury and Saturn will appear nearest to each other, 1.6 degrees apart. To see them you will need a very clear view toward the western horizon and will likely have to look before evening twilight ends at 6:54 p.m. EST, as Mercury will set three minutes later at 6:57 p.m., and Saturn two minutes after Mercury at 6:59 p.m.
    Tuesday, Feb. 25 This will be the last evening Saturn will be above the western horizon as evening twilight ends at 6:55 p.m. EST, setting one minute later at 6:56 p.m. This will be the last of two evenings when all of the visible planets will be in the evening sky at the same time after twilight ends. Mercury and Saturn will appear almost as close together as the night before, with Mercury setting six minutes after Saturn at 7:02 p.m. Saturn, appearing about as bright as the star Pollux, may still be visible in the glow of dusk before evening twilight ends for a few evenings after this.
    Thursday evening, Feb. 27 At 7:45 p.m. EST will be the new Moon, when the Moon passes between Earth and the Sun and will not be visible from Earth.
    The day of, or the day after, the new Moon marks the start of the new month for most lunisolar calendars. The second month of the Chinese calendar starts on Friday, Feb. 28. Sundown on Feb. 28 also marks the start of Adar in the Hebrew calendar. In the Islamic calendar the months traditionally start with the first sighting of the waxing crescent Moon. Many Muslim communities now follow the Umm al-Qura Calendar of Saudi Arabia, which uses astronomical calculations to start months in a more predictable way (intended for civil and not religious purposes). This calendar predicts the holy month of Ramadan will start with sunset on Feb. 28, but because of Ramadan’s religious significance, it is one of four months in the Islamic year where the start of the month is updated based upon the actual sighting of the crescent Moon. Ramadan is honored as the month in which the Quran was revealed. Observing this annual month of charitable acts, prayer, and fasting from dawn to sunset is one of the Five Pillars of Islam.
    Friday evening, Feb. 28 As evening twilight ends at 6:58 p.m. EST, you may be able to see the thin, waxing crescent Moon barely above the western horizon. The Moon will set two minutes later at 7 p.m. Mercury will be 3.5 degrees above the Moon. For this and the next few evenings the waxing crescent Moon will appear most like an upward-facing bowl or a smile in the evening sky (for the Washington, D.C. area and similar latitudes, at least). This is called a “wet” or a “Cheshire” Moon. The term “wet Moon” appears to originate from Hawaiian mythology. It’s when the Moon appears like a bowl that could fill up with water. The time of year when this occurs as viewed from the latitudes of the Hawaiian Islands roughly corresponds with Kaelo the Water Bearer in Hawaiian astrology. As the year passes into summer, the crescent shape tilts, pouring out the water and causing the summer rains. The term “Cheshire Moon” is a reference to the smile of the Cheshire Cat in Lewis Carroll’s book “Alice’s Adventures in Wonderland.”
    Saturday afternoon, March 1 At 4:14 p.m. EST, the Moon will be at perigee, its closest to Earth for this orbit.
    Saturday evening, as evening twilight ends at 6:59 p.m. EST, the thin, waxing crescent Moon will be 13 degrees above the western horizon, with Venus 7 degrees to the upper right of the Moon. Mercury will appear about 10 degrees below the Moon. The Moon will set 76 minutes later at 8:15 p.m.
    Tuesday, March 4 This is Mardi Gras (Fat Tuesday), which marks the end of the Carnival season that began on January 6. Don’t forget to march forth on March Fourth!
    Thursday, March 6 The Moon will appear half-full as it reaches its first quarter at 11:32 a.m. EST.
    Saturday morning, March 8 Just after midnight, Mercury will reach its greatest angular separation from the Sun as seen from Earth for this apparition (called greatest elongation).
    Saturday evening, will be when Mercury will appear at its highest (6 degrees) above the western horizon as evening twilight ends at 7:06 p.m. EST. Mercury will set 34 minutes later at 7:40 p.m. This will also be the evening Mercury will have dimmed to the brightness as Mars, after which Mars will be the third brightest visible planet again.
    Also on Saturday evening into Sunday morning, March 8 to 9, Mars will appear near the waxing gibbous Moon with the bright star Pollux (the brighter of the twin stars in the constellation Gemini) nearby. As evening twilight ends at 7:06 p.m. EST, Mars will be 1.5 degrees to the lower right of the Moon and Pollux will be 6 degrees to the lower left. As the Moon reaches its highest for the night 1.25 hours later at 8:22 p.m., Mars will be 1.5 degrees to the lower right of the Moon and Pollux will be 5.5 degrees to the upper left. By the time Mars sets on the northwestern horizon at 4:53 a.m., it will be 4 degrees to the lower left of the Moon and Pollux will be 3 degrees above the Moon.
    Sunday morning, March 9 Daylight Saving Time begins. Don’t forget to reset your clocks (if they don’t automatically set themselves) as we “spring forward” to Daylight Saving Time! For much of the U.S., 2 to 3 a.m. on March 9, 2025, might be a good hour for magical or fictional events (as it doesn’t actually exist).
    Tuesday evening into Wednesday morning, March 11 to 12 The bright star Regulus will appear close to the nearly full moon. As evening twilight ends at 8:09 p.m. EDT, Regulus will be 4 degrees to the lower right of the Moon. When the Moon reaches its highest for the night at 11:52 p.m., Regulus will be 3 degrees to the lower right. By the time morning twilight begins at 6:26 a.m., Regulus will be about one degree below the Moon.
    Wednesday morning, March 12 Saturn will be passing on the far side of the Sun as seen from Earth, called a conjunction. Because Saturn orbits outside of the orbit of Earth it will be shifting from the evening sky to the morning sky. Saturn will begin emerging from the glow of dawn on the eastern horizon in early April (depending upon viewing conditions).
    Wednesday evening, March 12 The planets Venus and Mercury will appear closest to each other low on the western horizon, 5.5 degrees apart. They will be about 5 degrees above the horizon as evening twilight ends at 8:10 p.m. EDT, and Mercury will set first 27 minutes later at 8:37 p.m.
    Friday morning, March 14: Full Moon After Next The full moon after next will be at 2:55 a.m. EDT. This will be on Thursday evening from Pacific Daylight Time and Mountain Standard Time westward to the international date line in the mid Pacific. The Moon will appear full for about three days around this time, from Wednesday evening into Saturday morning.
    Total Lunar Eclipse As the Moon passes opposite the Sun on March 14, it will move through Earth’s shadow, creating a total eclipse of the Moon. The Moon will begin entering the partial shadow Thursday night at 11:57 p.m., but the gradual dimming of the Moon will not be noticeable until it starts to enter the full shadow Friday morning at 1:09 a.m. The round shadow of Earth will gradually shift across the face of the Moon (from lower left to upper right) until the Moon is fully shaded beginning at 2:26 a.m.
    The period of full shadow, or total eclipse, will last about 65 minutes, reaching the greatest eclipse at 2:59 a.m. and ending at 3:31 a.m. Even though it will be in full shadow, the Moon will still be visible. The glow of all of the sunrises and sunsets on Earth will give the Moon a reddish-brown hue, sometimes called a “blood” Moon (although this name is also used for one of the full moons near the start of fall). From 3:31 until 4:48 a.m., the Moon will exit the full shadow of Earth, with the round shadow of Earth again shifting across the face of the Moon (from upper left to lower right). The Moon will leave the last of the partial shadow at 6 a.m. ending this eclipse. 

    MIL OSI USA News

  • MIL-OSI Asia-Pac: At the Conclusion of India Energy Week 2025, India Cements Position as Global Energy Leader

    Source: Government of India

    At the Conclusion of India Energy Week 2025, India Cements Position as Global Energy Leader

    “World’s second-largest energy conclave saw announcement of largest-ever exploration bid round, charted path for green energy transition while strengthening international partnerships”

    Posted On: 14 FEB 2025 2:42PM by PIB Delhi

    Shri Hardeep Singh Puri, Minister of Petroleum and Natural Gas, highlighted the measurable success of India Energy Week 2025 through its unprecedented participant and exhibitor numbers and technical paper submissions. The Minister noted that the event had exceeded expectations by encompassing a comprehensive range of sectors including petroleum, natural gas, green energy, biofuel, and CBG, showcasing remarkably innovative developments.

    Shri Puri emphasized that within the short span of three years, India Energy Week has established itself as the world’s second-largest energy platform, with its fourth edition scheduled to take place in Goa.

    The Minister emphasized that IEW 2025 distinguished itself from other global energy forums by facilitating actual business transactions rather than merely serving as a networking platform. Shri Hardeep Singh Puri specifically highlighted practical innovations such as the cost-effective conversion kit demonstrated at the HPCL stall, designed for enabling biofuel usage in two and three-wheelers. Additionally, the Minister also expressed satisfaction at the convergence of investors, manufacturers, and consumers, particularly evident in the display of flex fuel vehicles.

    Speaking on India-US energy cooperation, the Minister noted the substantial progress in bilateral relations, particularly in the natural gas sector. The Minister highlighted India’s stated goal of increasing natural gas consumption to 15% in its energy mix from about 6% currently, emphasizing the strategic importance of the relationship with the United States for Liquified Natural Gas (LNG) supplies.

    Addressing reforms in the Exploration and Production (E&P) sector, Shri Puri detailed the scale of Open Acreage Licensing Program (OALP) Round X covering about 200,000 square kilometers. The Minister explained that enhanced interest in this round has been driven by systematic reforms in the regulatory regime, transitioning from production to revenue sharing mechanisms, along with the proposed amendments to Oilfields (Regulation and Development) Act 1948.

    Additionally, Shri Puri announced that the new legislative framework, developed through extensive consultations, is set to be presented in the Lok Sabha. He particularly noted the collaboration of ONGC with BP, and Reliance in bidding for blocks in earlier rounds as a strong message of industry partnership.

    Outlining the Ministry’s priorities, the Minister emphasized focus on E&P, stressing the importance of expert collaboration and the proposed changes to regulatory framework that allows appropriate compensation for resource discovery to the stakeholders in the sector.

    The Minister highlighted the significance of the amendments, passed by the Rajya Sabha, in ensuring policy predictability, particularly regarding windfall tax implementation. He emphasized the removal of discretionary elements in policy implementation as a move toward more transparent governance in the energy sector.

    Discussing the global energy scenario, the Minister observed that the new US administration’s push for increased oil supply has created favorable conditions in global markets. He noted the emergence of new oil sources from the Western Hemisphere, including Brazil, Argentina, Suriname, Canada, US, and Guyana, as beneficial for major consuming nations like India. Shri Puri expressed complete confidence in India’s international investments in the Oil & Gas assets across Brazil, Venezuela, Russia, and Mozambique.

    Shri Hardeep Singh Puri described the biofuel program as a remarkable story, citing current capacity of 1,700 crore liters for ethanol blending, while discussing potential beyond the 20% blending target. Moreover, Shri Puri expressed particular excitement about green hydrogen, confirming confident progression toward the 5MMT annual production target for 2030, while also highlighting sustainable aviation fuel development.

    Secretary, Ministry of Petroleum and Natural Gas, Shri Pankaj Jain, detailed the business conducted during IEW 2025 across various domains. He categorized the agreements into distinct areas: supply arrangements for crude, LNG, and LPG across geographies; technology partnerships for digital refinery solutions; and exploration services.

    Shri Pankaj Jain also highlighted the unprecedented scale of OALP Round X, emphasizing the need for global expertise to exploit hydrocarbon resources in the country. Shri Jain also discussed the potential use of the Oil Industry Development Fund, established under the Oil Industry Development Act, for innovative financing needs in deep-water exploration projects.

    Felicitation to Startup Competition and Hackathon Winners:

    The prestigious Avinya’25 – Energy Startup Challenge awards, the flagship initiative of the Ministry of Petroleum and Natural Gas, were presented by Shri Hardeep Singh Puri and Shri Pankaj Jai. Avinya’25 recognized startups with pioneering solutions addressing key energy challenges.

    UrjanovaC Pvt Ltd emerged as the winner for its synthetic catalyst technology that enables scalable and cost-competitive CO₂ capture and conversion. The first runner-up, Breathe ESG Private Limited, developed a SaaS platform that automates ESG reporting, decarbonization strategies, and compliance.

    AgriVijay, the second runner-up, introduced India’s first curated marketplace for renewable energy solutions for farmers and rural households. Apeiro Energy, securing the third runner-up position, designed hybrid microgrids by integrating small wind turbines with solar panels. UGreen Technology, the fourth runner-up, developed a molecular-engineering approach that enhances CO₂ reactivity for efficient carbon capture.

    Additionally, the Ministry introduced Vasudha – Oil and Gas Startup Challenge, an exclusive competition for overseas startups revolutionizing the upstream oil and gas sector. Out of 17 entries from 13 countries, two visionary startups were recognized.

    Latin Energy Partners Inc., Paraguay, won the challenge, while Ultrasound Process Consultation LLC, USA, was named the runner-up. Their innovations in oil and gas exploration, AI-driven production management, ESG compliance, CCUS technologies, and geothermal exploration were highly commended.

    Promoting research and technological innovation, a Hackathon was organized among seven premier IITs, including IIT Delhi, Mumbai, Madras, Guwahati, Roorkee, Kharagpur, and ISM Dhanbad. The competition aimed to drive forward-thinking solutions in CCUS and renewable energy. IIT (ISM) Dhanbad secured the winner’s title, while IIT Guwahati emerged as the runner-up.

    About India Energy Week 2025

    India Energy Week was envisioned as more than just another industry conference—it was designed to be a dynamic platform redefining global energy dialogues. In just two years, this self-funded initiative has achieved precisely that, becoming the world’s second-largest energy event. The third edition, scheduled from February 11-14, 2025, at Yashobhoomi, New Delhi, represents a significant milestone in shaping the global energy narrative.

    ****

    MONIKA

    (Release ID: 2103188) Visitor Counter : 66

    MIL OSI Asia Pacific News

  • MIL-OSI USA: Senator Murray: Trump Blocking Funding Will Kill Good-Paying Energy Jobs and Raise Families’ Energy Bills

    US Senate News:

    Source: United States Senator for Washington State Patty Murray

    Murray: “In choking off tens of billions of dollars in energy investments, Trump is threatening to kill thousands of good-paying American jobs and raise energy costs for households across the country.”

    Senator Murray hosts press call to detail how Trump blocking energy investments is hurting communities in every part of the country

    ***WATCH: PRESS CALL HERE***

    Washington, D.C. — Today, U.S. Senator Patty Murray (D-WA), Vice Chair of the Senate Appropriations Committee and Ranking Member of the Energy and Water Appropriations Subcommittee, hosted a press call to underscore how President Trump continuing to block key energy investments threatens to raise families’ energy bills, derail key energy projects, and kill good-paying jobs in communities across the country. Senator Murray was joined by David Turk, former Deputy Secretary of the U.S. Department of Energy, and Joe Nguyen, Director of the Washington state Department of Commerce.

    “The guy who swore up and down on the campaign trail that he would lower people’s energy costs is now working to raise them. And an administration that says it wants to ‘restore energy dominance’ is now working to kill domestic energy projects and the thousands of American jobs they are creating,” said Senator Murray. “This funding freeze—which may very well not be a freeze but a permanent rollback—is bad for families and it’s bad for workers. And it is also bad for American businesses who have inked contracts to create new battery plants, produce sustainable aviation fuel, lay down new transmission lines, construct new energy plants, and so much more—and who are now left wondering whether the federal government is going to honor its commitments.”

    “Another estimate said that the average American consumer is going to pay almost $500 more per year if these kinds of programs—the tax incentives to the loan programs—don’t go forward. And I think that’s a conservative estimate,” said David Turk, who recently served as Deputy Secretary of the U.S. Department of Energy. “I really want to underscore that chaos and confusion and uncertainty is not our friend. If you talk to any investor, if you talk to any CEO, the last thing they need—the last thing they want—is chaos, confusion, uncertainty about what should be no brainers. If the government makes a commitment, if we get to conditional commitment with a loan program recipient, that’s the government’s credibility. That’s the American people’s credibility on the line to follow through and make sure that we are providing that certainty for investment.”

    “It was 27 degrees in West Seattle this morning, and even colder in other parts of the state. The hundreds of millions of dollars threatened today by Trump’s political games hurts already overburdened communities the most, especially low-income families, rural towns, and our small businesses. Washingtonians deserve better than the games the Trump administration is playing,” said Joe Nguyen, Director of the Washington state Department of Commerce.

    On his first day in office, President Trump signed an executive order to illegally halt funding from the Infrastructure Investment and Jobs Act (IIJA) and Inflation Reduction Act (IRA) from going out the door to communities and recipients counting on the funding. Hundreds of billions of dollars are still being held up under Trump’s directives—and it’s jeopardizing all manner of energy projects and programs communities are counting on.

    In the years since the IIJA and IRA were signed into law, over $211 billion in private sector investment in clean energy and tech manufacturing has been announced nationwide—with 232k+ jobs announced and nearly 80% of those investments made in Republican-held districts. The president’s freeze puts all these gains at serious risk.

    Senator Murray’s remarks, as delivered, are below:

    “Thanks everyone for joining this call today. I’m really glad to be here with David Turk, who recently served as Deputy Energy Secretary, and Joe Nguyen, Director of Washington state’s Department of Commerce, to talk about how President Trump and Elon Musk are holding up tens of billions of dollars in energy investments nationwide—putting jobs at risk and raising energy costs for families.

    “We are now well into the fourth week of President Trump’s illegal—and deeply harmful—funding freeze.

    Trump is still blocking funding that we secured in the Bipartisan Infrastructure Law and Inflation Reduction Act, among much else, from going out the doors. It is, of course, illegal for a president to unilaterally decide to block funding.

    “As I’ve said many times: presidents don’t just get to pick and choose what laws they feel like following.

    “But Trump blocking funding is not merely illegal. It also devastating for communities like the ones I represent—who are counting on these resources, who’ve hired folks, are relying on this funding to, for example, lower their monthly energy bill, and who, in many cases, have already inked contracts.

    “Today, we are talking about the energy investments Trump is blocking—and I want to say from the outset this is just one slice of the vast pot of funding he is holding up.

    “Trump’s freeze is holding up funding for: rebuilding roads and bridges, new clean school buses, wildfire prevention efforts, assistance for farmers, replacing old water pipes, investments in our national security, and so much more.

    “But today I wanted to zero in on what’s going on at the Department of Energy.

    “Because make no mistake: in choking off tens of billions of dollars in energy investments, Trump is threatening to kill thousands of good-paying American jobs and raise energy costs for households across the country.

    “When Congress passed the Bipartisan Infrastructure Law and the Inflation Reduction Act, we made historic investments to—among a whole lot else—create good-paying clean energy jobs, spur innovation, strengthen American manufacturing, and lower energy costs for families.

    “We provided funding for families to upgrade their homes and save big on their energy bills. We delivered resources to build new battery manufacturing plants, construct cutting-edge hydrogen hubs, boost our nuclear power capabilities, and increase domestic production of critical minerals we absolutely need.

    “As you can imagine, a lot of good new jobs have been created in the process—and we’re really just beginning to feel the full benefits.

    “A quarter of a million clean energy jobs have been created since we passed the IRA and Bipartisan Infrastructure Law. In Washington state, the new Pacific Northwest Hydrogen Hub alone is set to create 10,000 jobs. The Department of Energy’s Loan Programs Office awards alone will support at least 50,000 good jobs across the country.

    “But Trump is putting these domestic jobs at risk—which plays right into the hands of our competitors, like China.

    “And he is simultaneously threatening to rip up programs we’ve created that are lowering people’s energy costs.

    “Right now, Trump is putting funding for the Home Energy Rebates Program in serious jeopardy. We are talking about funding for families to make upgrades that save them on their monthly energy bill. Funding for you to buy energy efficient appliances and to retrofit your home so that cold air stays out in the winter and hot air stays out in the summer. These programs aren’t just important in tackling the climate crisis—they are saving families money.

    “They provide households up to $14,000 in rebates to make upgrades and lower their energy bills—and they are saving American households up to $1 billion every single year.

    “The Weatherization Assistance Program, for example, saves households $372 on average each year! But again—Trump has put it on the chopping block.

    “There’s no need to dance around it: the guy who swore up and down on the campaign trail that he would lower people’s energy costs is now working to raise them.

    “And an administration that says it wants to ‘restore energy dominance’ is now working to kill domestic energy projects and the thousands of American jobs they are creating!

    “This funding freeze—which may very well not be a freeze but a permanent rollback—is bad for families and it’s bad for workers. And it is also bad for American businesses who have inked contracts to create new battery plants, produce sustainable aviation fuel, lay down new transmission lines, construct new energy plants, and so much more—and who are now left wondering whether the federal government is going to honor its commitments.

    “That uncertainty alone risks jobs and investments—and will hurt local economies everywhere.

    “It was recently reported, for example, that Trump and Musk are looking at cancelling even finalized loans provided by the Energy Department’s Loan Programs Office. That, of course, puts jobs at risk and puts workers’ livelihoods and businesses’ bottom lines in jeopardy.

    “But what we are seeing is also a situation rife with potential conflicts of interest and corruption—which is another huge part of the story when it comes to Trump and Musk blocking funding.

    “Just one example: back in 2010, when Tesla wasn’t doing too hot, Elon Musk secured a half billion-dollar loan from the Department of Energy. That loan boosted the company—and Elon Musk—and helped them become what they are today.

    “Fast forward to now—Elon Musk is raiding agencies, cutting off funding, cancelling contracts, and the Energy Department is apparently looking to cancel loans it has made to his electric vehicle competitors.

    “The obvious question then is Elon Musk going to cut off loans that are helping Tesla’s competitors create jobs and build their business right here in America?

    “There is so much at stake—and what is painfully clear is that Trump’s illegal funding freeze is causing chaos and confusion. It’s putting these projects and jobs at risk—and will take money out of families’ pockets—and it has got to end.

    “The court decisions we’ve gotten so far have affirmed what we have known all along: Trump does not have the power to steal approved funding from the American people.

    “But the relief the orders should provide is, for now, only temporary—and in many cases, the funding is still frozen.

    “Now, DOE may say they’ve just developed a new process for thoroughly reviewing all programs and payments but make no mistake: this process is meant to have the same effect—it is a freeze by a different name and the funds remain frozen.

    “What needs to happen is Donald Trump and Elon Musk must end the freeze and revoke their orders to choke off these investments.

    “As I’ve said before: if Donald Trump wants to roll back programs that are lowering people’s energy bills, he can come to Congress and win the votes he needs to do it.

    “If Donald Trump wants to gut funding that is creating good-paying energy jobs all across the country, he can come to Congress and win the votes he needs to do it.

    “That’s why I am here today to sound the alarm and protect critical programs American families rely on and support. You don’t just get to rip up contracts and block funding owed to the American people.

    “Now, I want to turn it over to David Turk, who I’m so glad could join us, to talk a bit more about what this freeze is doing.”

    MIL OSI USA News

  • MIL-OSI New Zealand: Northland News – $600,000 of Climate Resilient Communities Funding allocated

    Source: Northland Regional Council

    Twenty-two projects around Te Taitokerau are to share $600,000 of Northland Regional Council funding designed to help build climate resilience.
    Council Deputy Chair Tui Shortland says during the council’s Long-Term Plan 2024-2034 consultation, the region’s communities had emphasised the importance they placed on council taking a leading role in helping to build that resilience.
    That had resulted in the council establishing a $600,000 fund to support communities to prepare for the growing effects of climate change and the natural hazard risks our region faces.
    Councillor Shortland says the council had received a huge level of interest from communities across Northland, expressing their ideas and aspirations for a climate resilient future for Te Taitokerau.
    “In this first round we had an overwhelming response, with 96 applications requesting $3.2 million.”
    Councillor Shortland says deciding how to allocate the $600,000 available had been extremely difficult, but 22 projects that met the fund criteria and aimed to build community capacity and strengthen connections to build community resilience would receive a portion of this pūtea.
    “Six of the projects directly focus on building kai resilience for the region.”
    “These include on the ground community-led mahi that aims to educate and empower communities to grow their own kai and projects that identify and strengthen food support networks and develop a strategy for how the region can become self-sufficient in food production and distribution.”
    Four projects supported water supply investigations to future proof water resilience and water tanks in vulnerable communities. “This extends the water resilience mahi NRC previously supported through the Water Resilience Fund which has now been replaced with this Climate Resilient Communities Fund.”
    Three rural marae will receive funding to support the installation of solar panels, improving energy resilience and benefiting the wider community in times of need. Investing in energy security not only keeps the power on when energy infrastructure goes down, but reduces energy costs for our people and importantly helps reduce Te Taitokerau’s greenhouse gas emissions.
    Funding will support four projects that look to nature-based solutions to build resilience to the changing climate, recognising how restoring wetlands, river margins and coastal dune systems can enhance protection from weather events, increase carbon sequestration and support our indigenous biodiversity.
    Three other projects aim to build resilience across multiple impact areas looking holistically at how our resilience could be improved as the climate changes.
    Two planning projects have been funded that will help the respective communities understand how climate change could impact them and to formulate specific plans to reduce these impacts.
    Successful applicants and their projects are:
    • Bream Bay Coastal Care Trust – Bream Bay Coastal Restoration Project ($23,000)
    • Climate Change Taitokerau Northland Trust – Kai Sovereignty Strategy ($20,000)
    • Coastal Restoration Trust of New Zealand- Te Taitokerau branch – Te Taitokerau How to restore dunes video ($30,708)
    • Community Business Environment Centre – Hokinganui a Kai ($40,000)
    • Hokianga Community Educational Trust – He Kete Kai o Hokianga -Future Proofing our Hokianga Food Systems ($36,786.39)
    • Matatina Marae Trust – Matatina Kai Whenua – community garden at marae for self sufficiency ($22,476)
    • Maungarongo Whenua Trust on behalf of Ricco Tito -Taiao Kaitiaki Oranga ō te Waīma ($30,000)
    • Morehu Marae Committee – Water tank replacement at marae ($7127.66)
    • Ngaitupoto Trustees Marae – Solar system ($35,000)
    • Opuawhanga Community Hall Trust – Resilience Network ($10,500)
    • Oromahoe 18R2B2B2 Trust – Te Wai Ora, Te Whenua Ora: Oromahoe Water Feasibility Study ($25,000)
    • Pakanae 5A Trust – Cultural and Nature-Based Resilience Programme ($30,000)
    • Puketawa Marae – Solar Energy for marae resilience ($26,037.49)
    • Roma Marae – Te Ngao ki te Marae o Roma (Energy Resilience at Roma Marae) ($25,000)
    • Rural Support Trust Northland – Rural Support Climate Resilience ($40,000)
    • Te Hapua Sports and Recreation Club – Water Resilience ($6956.52)
    • Te Kōhanga Reo O Manaakitia – Kia manawaroa Te Kōhanga Reo o Manaakitia ($7200)
    • Te Maire Whanau Trust – Whānau-Led Fruit Orchard Development ($30,000)
    • Te Paatu ki Kauhanga Trust Board – Kāmehameha ($40,000)
    • Te Pokapu Tiaki Taiao O Te Tai Tokerau Trust -Tuituia Te Kahunuku & Food Resiliency ($32,325)
    • Te Runanga o Ngati Hine Trust – Tanks a lot ($40,000)
    • Whakapara Marae Trust – Te Taiao o nga Waipukehia” The environment of the flooded waters ($30,000) .

    MIL OSI New Zealand News

  • MIL-OSI USA: NASA’s SPHEREx Space Telescope Will Seek Life’s Ingredients

    Source: NASA

    Where is all the water that may form oceans on distant planets and moons? The SPHEREx astrophysics mission will search the galaxy and take stock.
    Every living organism on Earth needs water to survive, so scientists searching for life outside our solar system, are often guided by the phrase “follow the water.” Scheduled to launch no earlier than Thursday, Feb. 27, NASA’s SPHEREx (Spectro-Photometer for the History of the Universe, Epoch of Reionization, and Ices Explorer) mission will help in that quest.
    After its ride aboard a SpaceX Falcon 9 from Vandenberg Space Force base in California, the observatory will search for water, carbon dioxide, carbon monoxide, and other key ingredients for life frozen on the surface of interstellar dust grains in the clouds of gas and dust where planets and stars eventually form.
    While there are no oceans or lakes floating freely in space, scientists think these reservoirs of ice, bound to small dust grains, are where most of the water in our universe forms and resides. Additionally, the water in Earth’s oceans as well as those of other planets and moons in our galaxy likely originated in such locations.

    The mission will focus on massive regions of gas and dust called molecular clouds. Within those, SPHEREx will also look at some newly formed stars and the disks of material around them from which new planets are born.
    Although space telescopes such as NASA’s James Webb and retired Spitzer have detected water, carbon dioxide, carbon monoxide, and other compounds in hundreds of targets, the SPHEREx observatory is the first to be uniquely equipped to conduct a large-scale survey of the galaxy in search of water ice and other frozen compounds.

    Rather than taking 2D images of a target like a star, SPHEREx will gather 3D data along its line of sight. That enables scientists to see the amount of ice present in a molecular cloud and observe how the composition of the ices throughout the cloud changes in different environments.
    By making more than 9 million of these line-of-sight observations and creating the largest-ever survey of these materials, the mission will help scientists better understand how these compounds form on dust grains and how different environments can influence their abundance.  
    Tip of the Iceberg
    It makes sense that the composition of planets and stars would reflect the molecular clouds they formed in. However, researchers are still working to confirm the specifics of the planet formation process, and the universe doesn’t always match scientists’ expectations.
    For example, a NASA mission launched in 1998, the Submillimeter Wave Astronomy Satellite (SWAS), surveyed the galaxy for water in gas form — including in molecular clouds — but found far less than expected.

    “This puzzled us for a while,” said Gary Melnick, a senior astronomer at the Center for Astrophysics | Harvard & Smithsonian and a member of the SPHEREx science team. “We eventually realized that SWAS had detected gaseous water in thin layers near the surface of molecular clouds, suggesting that there might be a lot more water inside the clouds, locked up as ice.”
    The mission team’s hypothesis also made sense because SWAS detected less oxygen gas (two oxygen atoms bound together) than expected. They concluded that the oxygen atoms were sticking to interstellar dust grains, and were then joined by hydrogen atoms, forming water. Later research confirmed this. What’s more, the clouds shield molecules from cosmic radiation that would otherwise break those compounds apart. As a result, water ice and other materials stored deep in a cloud’s interior are protected.
    As starlight passes through a molecular cloud, molecules like water and carbon dioxide block certain wavelengths of light, creating a distinct signature that SPHEREx and other missions like Webb can identify using a technique called absorption spectroscopy.
    In addition to providing a more detailed accounting of the abundance of these frozen compounds, SPHEREx will help researchers answer questions including how deep into molecular clouds ice begins to form, how the abundance of water and other ices changes with the density of a molecular cloud, and how that abundance changes once a star forms.
    Powerful Partnerships
    As a survey telescope, SPHEREx is designed to study large portions of the sky relatively quickly, and its results can be used in conjunction with data from targeted telescopes like Webb, which observe a significantly smaller area but can see their targets in greater detail.
    “If SPHEREx discovers a particularly intriguing location, Webb can study that target with higher spectral resolving power and in wavelengths that SPHEREx cannot detect,” said Melnick. “These two telescopes could form a highly effective partnership.”
    More About SPHEREx
    SPHEREx is managed by NASA’s Jet Propulsion Laboratory in Southern California for the Astrophysics Division within the Science Mission Directorate at NASA Headquarters in Washington. BAE Systems (formerly Ball Aerospace) built the telescope and the spacecraft bus. The science analysis of the SPHEREx data will be conducted by a team of scientists located at 10 institutions in the U.S., two in South Korea, and one in Taiwan. Data will be processed and archived at IPAC at Caltech, which manages JPL for NASA. The mission principal investigator is based at Caltech with a joint JPL appointment. The SPHEREx dataset will be publicly available at the NASA/IPAC Infrared Science Archive.
    For more information about the SPHEREx mission visit:
    https://www.jpl.nasa.gov/missions/spherex/

    News Media Contact
    Calla CofieldJet Propulsion Laboratory, Pasadena, Calif.626-808-2469calla.e.cofield@jpl.nasa.gov
    2025-020

    MIL OSI USA News

  • MIL-OSI United Nations: Resilience, Sustainable Energy and Marine Biodiversity (RESEMBID)

    Source: UNISDR Disaster Risk Reduction

    Mission

    The Resilience, Sustainable Energy and Marine Biodiversity (RESEMBID) programme serves the Caribbean Overseas Countries and Territories (OCTs), supporting sustainable human development efforts of the 12 jurisdictions, namely: Anguilla, British Virgin Islands, Cayman Islands, Montserrat, Turks and Caicos Islands, Aruba, Bonaire, Curaçao, Saba, Sint Eustatius, Sint Maarten, and Saint Barthélemy.

    The programme commenced in January 2019 and, after six years of partnering with the OCTs on 48 projects, will close in September 2025.

    MIL OSI United Nations News

  • MIL-OSI Europe: France: BNP Paribas signs an agreement with the EIB to generate up to €8 billion in wind energy investments

    Source: European Investment Bank

    • Co-signed initiative to spur funding for wind energy sector in the European Union, supporting transition to net zero and boosting innovation of Europe’s renewable energy manufacturers
    • Up to €8 billion of new wind energy investments in real economy thanks to leverage effect of EIB counter-guarantee and BNP Paribas’ portfolio of bank guarantees
    • This deal between EIB and BNP Paribas is part of the EIB’s contribution to the European Wind Power Package. The operation is backed by InvestEU, the EU programme aiming to mobilise investment of more than €372 billion by 2027.

    BNP Paribas has signed an agreement with the European Investment Bank (EIB) that will stimulate up to €8 billion of funding for wind energy projects across the European Union. This initiative will unlock key investments to support new wind farm projects, supply chain efficiency and improved grid interconnections, therefore accelerating wind energy development and ultimately increasing production.

    Under the agreement, the EIB has extended a €500 million counter-guarantee, enabling BNP Paribas, to establish a €1 billion portfolio of bank guarantees designed to back new investments in wind farms in the EU. The leverage effect of such a counter-guarantee is expected to spur up to €8 billion of investments in the real economy.

    The agreement falls under a €5 billion initiative announced by the EIB in support of the European Wind Power Package presented by the European Commission in October 2023. The initiative aims at accelerating wind energy deployment and strengthening the competitiveness of Europe’s wind industry. The programme aims to support the production of 32 GW of the 117 GW of wind capacity needed to enable the European Union to meet its goal of generating at least 45% of its energy from renewable sources by 2030.This transaction is part of BNP Paribas’ long-standing commitment to supporting the energy transition by directing its financing towards low-carbon energy, which will account for at least 90% of the bank’s energy production financing by 2030.

    Supporting renewable energy is key to European energy independence, says EIB Vice-President Ambroise Fayolle“Guarantees, like the ones EIB provides through this new financial instrument, contribute to enable the funding of essential projects that drive the green transition, support the decarbonization of the European economy, and strengthen industrial competitiveness.

    “BNP Paribas is pleased to reinforce our historic relationship with the European Investment Bank, this time to support the continent’s growing wind energy sector,” says Alain Papiasse, Chairman of Corporate and Institutional Banking at BNP Paribas “This partnership reflects our mutual commitment to advancing sustainable energy projects that strengthen the continent’s economy while reducing its carbon footprint. By uniting our expertise and resources with the EIB’s pivotal support, we hope to help drive lasting, positive projects for communities, businesses and the environment.

    Yannick Jung, Head of Global Banking at BNP Paribas stated “We see the EIB’s invaluable support in this partnership as a way of accelerating our ongoing strategy to facilitate the transition to a Low Carbon Economic Model. By supporting European Corporates along the Wind Value Chain, we believe our collective efforts will inspire innovation, foster sustainability and pave the way for a more robust Europe”.

    Background information

    About the EIB

    The European Investment Bank (ElB) is the long-term lending institution of the European Union, owned by its Member States. It finances investments that contribute to EU policy objectives by bolstering digitalisation and technological innovation, security and defence, agriculture and bioeconomy, social infrastructure, high-impact investments outside the EU, and the Capital Markets Union.   

    The EIB Group, which also includes the European Investment Fund (EIF), signed nearly €89 billion in new financing for over 900 projects in 2024. These commitments are expected to mobilise around €350 billion in investment, supporting 400 000 companies and 5.8 million jobs.   

    All projects financed by the EIB Group are in line with the Paris Climate Accord and the EIB Group does not fund investments in fossil fuels. Almost 60% of the EIB Group’s annual financing supports projects directly contributing to climate change mitigation, adaptation, and a healthier environment.   

    In 2024, France was the largest recipient of EIB Group financing, with total investment of €12.6 billion. Two-thirds of this financing went to projects contributing to the fight against global warming and adaptation to its effects.

    About BNP Paribas

    BNP Paribas is the European Union’s leading bank and key player in international banking. It operates in 63 countries and has nearly 183,000 employees, including more than 145,000 in Europe. The Group has key positions in its three main fields of activity: Commercial, Personal Banking & Services for the Group’s commercial & personal banking and several specialised businesses including BNP Paribas Personal Finance and Arval; Investment & Protection Services for savings, investment and protection solutions; and Corporate & Institutional Banking, focused on corporate and institutional clients. Based on its strong diversified and integrated model, the Group helps all its clients (individuals, community associations, entrepreneurs, SMEs, corporates and institutional clients) to realise their projects through solutions spanning financing, investment, savings and protection insurance. In Europe, BNP Paribas has four domestic markets: Belgium, France, Italy and Luxembourg. The Group is rolling out its integrated commercial & personal banking model across several Mediterranean countries, Turkey, and Eastern Europe. As a key player in international banking, the Group has leading platforms and business lines in Europe, a strong presence in the Americas as well as a solid and fast-growing business in Asia-Pacific. BNP Paribas has implemented a Corporate Social Responsibility approach in all its activities, enabling it to contribute to the construction of a sustainable future, while ensuring the Group’s performance and stability.

    About InvestEU and the wind power package

    The InvestEU programme provides the European Union with long-term funding by leveraging substantial private and public funds in support of a sustainable recovery. It also helps mobilise private investment for the European Union’s strategic priorities such as the European Green Deal and the digital transition. InvestEU brings all EU financial instruments previously available for supporting investments within the European Union together under one roof, making funding for investment projects in Europe simpler, more efficient and more flexible. The programme consists of three components: the InvestEU Fund, the InvestEU Advisory Hub, and the InvestEU Portal. The InvestEU Fund is deployed through implementing partners that will invest in projects using the EU budget guarantee of €26.2 billion. The entire budget guarantee will back the investment projects of the implementing partners, increase their risk-bearing capacity and thus mobilise at least €372 billion in additional investment.

    The European Commission presented the European Wind Power Package in October 2023 to tackle the unique set of challenges faced by the wind sector, including insufficient and uncertain demand, slow and complex permitting, lack of access to raw materials and high inflation and commodity prices, among others. In a specific Action Plan, the Commission set out a set of initiatives concerning permitting, auction design, skills and access to finance to ensure that the clean energy transition goes hand-in-hand with industrial competitiveness and that wind power continues to be a European success story. As part of this plan, in July 2024, the European Investment Bank (EIB) activated a €5 billion initiative to support manufacturers of wind-energy equipment in Europe.

    MIL OSI Europe News

  • MIL-OSI United Nations: UNECE Inland Transport Committee advances international cooperation for sustainable and resilient future of transport

    Source: United Nations Economic Commission for Europe

    Gathering at this week’s 87th annual session of the UNECE Inland Transport Committee (ITC) at the Palais des Nations in Geneva, global transport leaders shared commitments aimed at  forging a sustainable, efficient, and resilient future of inland transport. 

    Looking to 2030 and beyond – and recognizing the need for scaled-up action in response to climate change, technological advancements, and shifting global trade patterns – several countries announced pledges that reaffirm their commitment to regional cooperation, enhanced connectivity, innovation, and environmental sustainability in inland transport. 

    “The challenges before us are immense, but so are the opportunities,” noted UNECE Executive Secretary Tatiana Molcean at the opening of the session. “We are here today to chart the course for the future, ensuring that inland transport is not only a driver of economic growth but also a catalyst for sustainability, resilience, and innovation.” 

    Enhanced connectivity and sustainability  

    The Netherlands and Türkiye pledged to continue supporting efforts to advance digitalization, infrastructure development, and border-crossing efficiency along the Trans-Caspian and Almaty-Tehran-Istanbul corridors, with a strong emphasis on greening the corridors, reducing their environmental impact, and lowering greenhouse gas emissions.  

    This joint commitment highlights the importance of collaboration to advance regional integration, promote sustainable transport practices, and enhance the economic and environmental performance of these strategic corridors.   

    “Transport corridors provide an essential backbone structure for the functioning of our economies,” said Chris Jansen, Minister for the Environment and Public Transportation of The Netherlands. “Let us try to unlock this potential together and use our combined efforts of cooperation within the UNECE Inland Transport Committee to achieve this work.”  

    “By strengthening our transport corridors, we will also make significant contributions to reducing economic inequalities between regions, facilitating access to markets for underdeveloped regions and promoting sustainable development,” emphasized Abdulkadir Uraloğlu, Minister of Transport and Infrastructure of Türkiye. 

    Advancing decarbonization and innovation 

    Underlining ITC’s unique role as the only global UN platform for road, rail and inland waterway transport, Georgia, The Netherlands and Türkiye reaffirmed their commitment to leverage its capacity to drive innovation and strategic foresight in the inland transport sector.  

    The three countries pledged to support the effective implementation of the ITC Decarbonization Strategy and to contribute to its other critical work streams, including climate change adaptation for transport infrastructure, cycling infrastructure, e-mobility, and the use of GIS mapping for transport infrastructure planning through the International Transport Infrastructure Observatory. 

    Accelerating e-mobility and smart charging solutions 

    Recognizing that inland transport sector plays a pivotal role in achieving global climate goals, The Netherlands and Türkiye pledged to support the UNECE Informal Task Force on E-Mobility to advance zero-emission policies, align regulatory frameworks, and facilitate the development of critical infrastructure for alternative energy carriers, in particular electric mobility, alongside hydrogen and biofuels.  

    The Netherlands will lead efforts on smart charging and energy system optimization, while Türkiye will spearhead best practices for EV infrastructure planning. 

    In line with the ITC Decarbonization Strategy, Germany pledged to work to swiftly expand the charging infrastructure for electric vehicles and to drive the uptake of climate-friendly fuels. Furthermore, Germany committed to fostering key technology innovations, such as automated/autonomous driving on the road to reach a more sustainable, safe, digital, accessible and affordable mobility. 

    Global relevance of ITC work 

    Reflecting the global relevance of ITC not only in harmonization of vehicle standards, but also in development of transport infrastructure, and smart and clean mobility solutions, Cambodia announced that it will seek to actively participate in the UNECE World Forum for Harmonization of Vehicle Regulations (WP.29) and join working parties dealing with the transport of dangerous goods, intermodal transport and logistics, as well as to join the Agreement concerning the International Carriage of Dangerous Goods by Road (ADR).   

    As a small island developing state, facing frequent storm surges and flooding that threaten its critical road network, Seychelles appreciated the ITC as a vital platform to advance solutions for climate-resilient road infrastructure, maintenance and environmentally friendly engineering, as well as energy-efficient public transport options.  

    MIL OSI United Nations News

  • MIL-OSI USA: WATCH: Padilla Slams Republican Budget Proposal That Would Raise Costs for American Families

    US Senate News:

    Source: United States Senator Alex Padilla (D-Calif.)

    WATCH: Padilla Slams Republican Budget Proposal That Would Raise Costs for American Families

    WATCH: Padilla criticizes Republican budget proposal that would cut critical programs to pay for tax cuts for the ultra-wealthy

    WASHINGTON, D.C. — Today, U.S. Senator Alex Padilla (D-Calif.), a member of the Senate Budget Committee, delivered opening remarks during a hearing on the proposed budget resolution for Fiscal Year 2025.

    Padilla outlined the misguided budget proposal from Republicans to cut hundreds of billions of dollars in benefits Americans rely on to fund tax breaks for billionaires:

    • “The second Trump Administration has begun clearly laying the groundwork to cut crucial programs that American families rely on in order to fund yet another round of tax breaks for the ultra-wealthy. … The budget is a reflection of our values and our priorities. And I want to talk about priorities. Not the President’s priorities. I want to talk about the American people’s priorities. I’ve heard over and over again that the outcome of last fall’s election was a mandate, and that the important takeaway from the election was Americans’ frustrations with a high cost of living. … Too many families, Republicans and Democrats, struggling to pay for groceries, to afford gas, struggling to pay the rent or the mortgage every month.”
    • “Folks, make no mistake, under these plans, life will be more expensive for working families and all for what? That’s really the big question I have. All for what? It’s crystal clear: to help pay for hundreds of billions of dollars in tax breaks for billionaires and large corporations. And to achieve this, President Trump and his allies here in Congress seem determined to slash the programs that American families depend on the most: Medicaid, nutrition assistance programs, Pell grants, affordable health care coverage, cancer research, investments in our energy sector, including for hydrogen, biofuels, and carbon capture.”

    Padilla also highlighted the immense costs of mass deportations, and the essential contributions of immigrants to the U.S. economy. Undocumented workers make up nearly 14 percent of construction workers — and roughly 42 percent of our agricultural workforce. Trump’s mass deportations plan would lead to skyrocketing prices for food, goods, and services, exacerbate our workforce shortages, and could drop the United States’ GDP by 6.8 percent:

    • “Here’s an inconvenient truth for many, and that’s the fact that immigrants, both documented and undocumented, are also critical to the success of our economy, because the percentage of immigrants — documented, undocumented — who are violent criminals, is a very, very small percentage.”
    • “If President Trump gets his way with the mass deportations that are not focused just on violent criminals, here’s what American families can expect. Get ready also for more expensive fruit, more expensive vegetables, and that’s if grocery stores can successfully keep up with stocking the shelves. If you’ve been saving up for years to buy a home, get ready to pay more and wait longer. Why? Because construction will slow down, and prices will go up.”

    As Republicans emphasize the need for American energy independence, Padilla stressed that the Trump Administration’s executive orders and the proposed budget resolution would undo the historic investments Congress made to diversify the energy sector:

    • “Undermining renewables isn’t just undermining energy independence. It’s a threat to our national security, and it’s a threat to the good-paying jobs we’ve created across the country in red states and blue states alike.”

    Video of Senator Padilla’s full remarks is available here.

    MIL OSI USA News