ABS approves new design for ammonia floating production storage and offloading unit with onboard carbon capture technology for blue ammonia production, a low-carbon method. Read more here: https://fcw.sh/BEQnXP #HydrogenNow #FuelCells #CleanEnergy #H2 #Decarbonise
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Carbon capture and sequestration (CCS) is a viable method for reducing the carbon footprint of industrial operations such as ethanol production and carbon-intensive facilities like steel and cement manufacturing. Read James Nutaitis' insights on what the landscape looks like for CCS in the U.S., a basic overview of what CCS entails, Class VI permitting and primacy, predications about where the industry is headed, and more. Click here to read the article: https://ow.ly/lvgQ50Uc087 #CarbonCapture #CCS #EnergyTransition #Decarbonization #EcoEngineers
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How to decarbonise the maritime industry? 🤔 In the video below, we explain how we can replace conventional fossil-based combustion engines with methanol-based fuel cells. Initially for auxiliary power - and eventually also for powering the propulsion of the vessels 🛳 The HT PEM technology brings strong benefits to the maritime industry: ✅ Fuel savings of 20-30% due to the superior electrical efficiency ✅ Up to 100% CO2 recovery for recycling or storage See for yourself how we make it happen 👇📽🛳💚 #makeadifference #greenshipping #methanol #fuelcells #greenfuels #decarbonisation #netzero
We reduce the cost of going green!
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Enhanced Oil Recovery (EOR): The Perfect Fit for Compact Carbon Capture EOR remains a $400B–$665B market opportunity for CO₂ utilization, with demand exceeding 17 billion metric tons annually. Our CaptureX Pearls: 🔹 Provide localized CO₂ capture at the point of production, eliminating costly transport. 🔹 Operate for under $100 per metric ton - up to 75% cheaper than traditional methods. 🔹 Deploy in 5-10 business days, offering unmatched speed for high-demand sectors. Ready to see how compact carbon capture can transform EOR and cut costs while maximizing output? Let’s talk. #CarbonCapture #EnhancedOilRecovery #CO2Solutions
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🚀 𝗣𝗿𝗲𝗰𝗶𝘀𝗲 & 𝗔𝗰𝗰𝘂𝗿𝗮𝘁𝗲 𝗖𝗲𝘁𝗮𝗻𝗲 𝗥𝗮𝘁𝗶𝗻𝗴𝘀 🌟 The new 𝗖𝗙𝗥 𝗙𝟱 𝗖𝗲𝘁𝗮𝗻𝗲 𝗘𝗙𝗜 𝗥𝗮𝘁𝗶𝗻𝗴 𝗦𝘆𝘀𝘁𝗲𝗺 features a high-pressure 𝙀𝙡𝙚𝙘𝙩𝙧𝙤𝙣𝙞𝙘 𝙁𝙪𝙚𝙡 𝙄𝙣𝙟𝙚𝙘𝙩𝙞𝙤𝙣 (𝙀𝙁𝙄) system powered by 𝗫𝗖𝗣® 𝗧𝗘𝗖𝗛𝗡𝗢𝗟𝗢𝗚𝗬. 𝗞𝗲𝘆 𝗕𝗲𝗻𝗲𝗳𝗶𝘁𝘀: ✅ 𝗨𝗻𝗺𝗮𝘁𝗰𝗵𝗲𝗱 𝗔𝗰𝗰𝘂𝗿𝗮𝗰𝘆: Precise fuel injection control improves combustion consistency, delivering more accurate Cetane Number (CN) measurements per ASTM D613 standards. ✅ 𝗘𝘅𝘁𝗲𝗻𝗱𝗲𝗱 𝗖𝗡 𝗥𝗮𝗻𝗴𝗲: Supports a broader range (29.6 to 87.6 CN), accommodating ultra-high cetane renewable fuels like 𝗛𝗩𝗢 and 𝗛𝗗𝗥𝗗. ✅ 𝗦𝘂𝘀𝘁𝗮𝗶𝗻𝗮𝗯𝗹𝗲 𝗗𝗲𝘀𝗶𝗴𝗻: Eliminates injector cooling, enabling 𝘾𝙡𝙤𝙨𝙚𝙙-𝙇𝙤𝙤𝙥 𝙎𝙮𝙨𝙩𝙚𝙢 cooling that conserve an average of 𝟮𝟰𝟬𝟬 𝗹𝗶𝘁𝗲𝗿𝘀 𝗼𝗳 𝘄𝗮𝘁𝗲𝗿 per shift, while reducing fuel waste. 📑 Learn more: https://lnkd.in/gEAgNnd6 #FuelTesting #Sustainability #CetaneEFI #Innovation #ASTMD613
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DNV has released a new standard, Electrolyser Systems DNV-ST-J301, embedded in DNV’s #certification framework for the equipment and facilities used in producing #hydrogen and its derivatives through water #electrolysis. 👉 Read more at https://lnkd.in/e6y5eY-A.
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Exciting news on the world-first trial of a new plasma technology to recycle CO2 emissions from steel production! ArcelorMittal and Mitsubishi Heavy Industries collaborate with D-CRBN to trial a new technology to convert carbon dioxide (CO2) captured at ArcelorMittal Gent into carbon monoxide which can be used in steel and chemical production. Learn more about the process which by using renewable electricity, the plasma is used to break the carbon-oxygen bond, thereby converting CO2 into carbon monoxide.
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🔬🌿 Life Cycle Assessment of Hydrogen-Based Steelmaking: Insights and Challenges As the steel industry explores hydrogen-based direct reduction (H-DR) as a pathway to decarbonization, life cycle assessment (LCA) plays a crucial role in evaluating the environmental impact of this innovative technology. Recent studies have shed light on the potential and challenges of H-DR steelmaking: 📊 The H-DR route, when powered by a sustainable energy source, can result in an 80% reduction in CO2 emissions compared to the traditional BF-BOF process. ⚡ The direct reduction route is power-intensive, and the sustainability of the electricity grid system is of high importance for the overall impact. 🔋 Improving electrolyzer technology to increase efficiency can reduce the overall energy expenditure and facilitate efficient direct reduction. While there is a need for further improvement to achieve carbon neutrality, the adoption of hydrogen-based steelmaking is a significant step towards a more sustainable future for the industry. 🌍💪#LifeCycleAssessment #HydrogenSteelmaking #SustainableManufacturing #CleanEnergy #IndustryDecarbonization
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Independent engineering reports score the lifecycle carbon footprint of eligible alternative fuel volumes. This score is compared alongside a decreasing annual carbon intensity baseline. The resulting difference is reflected as a total volume of CO2e reduced. Inspired by low carbon fuel standards (LCFS), TERCs leverage well-known verification methodologies to offer unique certificates to the voluntary carbon market. Ready to make a tangible impact on carbon emissions? By investing in TERC, you're not only contributing to the reduction of CO2, but also championing innovative, low-carbon solutions. Each TERC represents a real, measurable reduction in emissions - counterbalancing 112 gallons of gasoline! 🌿 Learn more by reading the official program overview here: https://lnkd.in/eZErRnQH #TERC #Engineering #CarbonEmissionReduction #LowCarbon #Innovate #CarbonSolutions #Gasoline
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Decarbonisation, especially in CO2-intensive industries, is not possible without CCUS. However, its widespread deployment will require continued improvements in cost and technology performance. Stronger and clearer policies are needed to further activate the market and encourage government and industry to further invest in developing supply chains, infrastructures around them, and continued R&D activities. Welcoming submission to this Special Issue that aims to present and disseminate the most recent advances related to CO2 capture and sequestration technology, CO2 utilisation technology, techno-economic and life cycle assessment, and regulatory and policy issues: - CO2 capture technology - Thermal chemical CO2 conversion: CO2 to CH4, methanol, and other higher hydrocarbons - Photocatalytic CO2 conversion - Plasma enhanced CO2 conversion - Biological CO2 conversion# - CO2 mineralisation - CO2 sequestration - Regulatory and policy issues; - Economic and environmental benefits and impacts such as techno-economic and life cycle assessment.
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I found a valuable summary of #hydrogen production methods on a video with pros and cons. The consideration of WTP (Well to Propeller) will bring the importance of the production method of synthetic fuels (core element is hydrogen). #battery #green #tugboat #decarbonization #WTP
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