⚡️ Energy doesn’t always flow when it’s needed most. Antora Energy is changing that—storing energy as heat in carbon blocks. When power is cheap, Antora soaks it up. Storing that energy for days on end, they deliver it around-the-clock to keep manufacturing running 24/7. This is what American innovation looks like. 👏 See more in Positive Sum No. 3, an Emerson Collective publication: https://lnkd.in/eVhY8tux
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Meeting Green Energy Demands at Scale: Manufacturing for the Hydrogen Economy As the world accelerates toward a sustainable energy future, few challenges are as complex—or as promising—as scaling up the hydrogen economy. Green hydrogen, produced through renewable-powered electrolysis, has the potential to revolutionize transportation, industry, and energy storage. But for that potential to be realized, the cost of producing green hydrogen must continue to come down, and that means the manufacturing of electrolyzer components must achieve new levels of precision, efficiency, and scale. At ACS, we know something about precision and scale. With over 85 years in business, and more than 50 years of experience manufacturing bulk components for the automotive industry, we’ve spent decades perfecting the art and science of high-volume production. Read more: https://lnkd.in/esn3UxYd
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There is an unprecedented wave of grid-scale lithium-ion installations, and with it, a looming battery end-of-life challenge that requires innovative solutions. As mentioned in the below article by Arche Energy, technological innovations in battery recycling are essential to making energy storage efficient and sustainable. Licovolt's proprietary pCAM transforms battery materials economics through a revolutionary breakthrough: a sodium sulphate free process and resultant precursor that retains all metals. Unlike conventional precursors that lose lithium during processing, Licovolt's novel composition maintains lithium throughout. https://lnkd.in/gyH_XeMJ
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The massive increase in BESS, which is likely to be bigger than we think as AI CAPEX goes to the moon, will mean a hige waste issue in the future. Those with the right recycling technologies with high recovery and very low cost ( as this is a TC/RC industry) will win. Licovolt’s innovative molecules will deliver on these metrics.
There is an unprecedented wave of grid-scale lithium-ion installations, and with it, a looming battery end-of-life challenge that requires innovative solutions. As mentioned in the below article by Arche Energy, technological innovations in battery recycling are essential to making energy storage efficient and sustainable. Licovolt's proprietary pCAM transforms battery materials economics through a revolutionary breakthrough: a sodium sulphate free process and resultant precursor that retains all metals. Unlike conventional precursors that lose lithium during processing, Licovolt's novel composition maintains lithium throughout. https://lnkd.in/gyH_XeMJ
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🌿 100% Renewable Energy — Powering Clean Innovation At SEKISUI SEIKEI, all of our manufacturing sites in Japan are now powered by 100% renewable energy. This marks our commitment to sustainable manufacturing, minimizing CO₂ emissions while ensuring the high purity and precision required in semiconductor, electronic material, and high-purity chemical industries. We continue to advance Clean Container Solutions that combine performance, purity, and sustainability — for a cleaner industrial future. #SEKISUISEIKEI #Sustainability #CleanEnergy #RenewableEnergy #ESG #CleanManufacturing #Decarbonization #CleanContainer #SemiconductorMaterials #ChemicalIndustry
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Net Zero isn’t just a target - it’s a business opportunity. UK chemical manufacturers can reduce energy costs, improve resilience and gain competitive advantage through smart energy strategies. Discover how leading companies are turning decarbonisation into a growth strategy. Download E.ON’s free white paper: https://lnkd.in/ekKXsSt7 #netzero #renewableenergy #energy
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The Swedish battery innovator, Altrisi is making significant strides in sustainable energy storage with a recent funding boost of €7.3 million (80.75 MSEK) from their current investors, including InnoEnergy. #SustainableEnergy #BatteryInnovation https://lnkd.in/d3ZJj8ei
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💡Over the past weeks, Think Energy has taken another step toward reshaping the future of refining in Latin America. Our leadership team, met with strategic investors and partners in Brazil and Argentina to discuss how modular, cleaner crude-conversion plants can help the region move beyond traditional refining models. These meetings confirmed strong interest from major players to advance up to 10,000 barrels per day of new processing capacity in the near term, a clear sign that innovation, efficiency, and sustainability are converging in the region’s energy landscape. At Think Energy, we’re proving that processing can be faster, cleaner, and more profitable, delivering real results while removing H2S, sulfur, and up to 50% of CO2 emissions, all within 90 days of deployment. Read more here: https://lnkd.in/eFnbrR34
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New Article Alert! Comparative Life Cycle Water Use Assessment of Diverse Hydrogen Production Pathways Published in Environmental Science & Technology, this study comparatively evaluates the life cycle water use of various hydrogen production pathways, which varies with feedstock type, production technology, electricity and water supply sources, cooling technology, and production location. Among the stages across the life cycle, hydrogen plant operation and electricity supply dominate the life cycle water use for hydrogen production. The competitiveness of water footprints for electrolysis compared to reforming or gasification with carbon capture highly depends on the source of electricity supplied for hydrogen production, even in a net-zero economy. The lowest life cycle water consumption can be achieved by integrating wind-powered electrolysis with dry cooling at a hydrogen production plant. Dry cooling and alternative water sources can be employed to reduce the use of freshwater for hydrogen production. Hydrogen, water, and electricity are interlinked and should be coordinated locally to ensure sustainability in the three dimensions. https://lnkd.in/gHwvUsbM This article is the 4th one of a series of our outputs on hydrogen energy: https://lnkd.in/gqsBMNCR https://lnkd.in/dFjN22ff https://lnkd.in/gsTMfuAK I also want to deliver my special thanks to the Wyoming Innovation Partnership program and the UW School of Energy Resources for their great support and collaborations! There are more on the way. Please stay tuned!
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Germany's hydrogen value chain sees expansion with the launch of BASF ECMS's gigawatt-scale hydrogen component facility in Budenheim, near Frankfurt. This facility marks a significant step in enhancing local hydrogen production capabilities, supporting the country's transition to sustainable energy solutions. What impacts might this facility have on hydrogen infrastructure and energy transition? Share your insights. #HydrogenEnergy #SustainableEnergy #EnergyTransition #Germany #IndustrialDevelopment https://lnkd.in/dkRg4NcE
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SEDC Energy ships hydrogen by sea using Hydrexia’s solid-state storage. By Edward Laity SEDC Energy has shipped hydrogen from Malaysia to Singapore and Hong Kong using Hydrexia’s solid-state hydrogen storage containers. The delivery marked the first time the Malaysian state-owned energy firm transported hydrogen by sea using metal hydride storage technology, rather than in a gas or liquid form. Hydrexia provided its MHX container, which stores hydrogen in magnesium-based metal hydrides. “[This] mitigates risks associated with hydrogen logistics, and reduces operational costs,” according to the firm’s statement. https://lnkd.in/d2gwHNYz
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Chief Detective, child exploitation unit @NYPD ALUF Principe Borghese, Secretary of State, Vatican City Director at CIA LEHENDAKARI USA governorship aran islands Mararajha of Rajistan & Afgh Gen GDF
6dThe heat differential is interesting especially with a Sterling Engine at Courmayeur