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Gigastack renewable hydrogen from offshore wind project advances to next phase; 100MW electrolyzer system

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million for the next phase of Gigastack, a new renewable hydrogen project, as part of the Department for Business, Energy and Industrial Strategy (BEIS) Hydrogen Supply Competition. Producing hydrogen has traditionally been associated with high carbon emissions, but by using renewable electricity—e.g., The UK has awarded £7.5

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California Energy Commission adopts offshore wind goals: 5GW by 2030, 25 GW by 2045

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The California Energy Commission (CEC) adopted a report establishing offshore wind goals and moving the state one step closer to development of the clean energy resource off California’s coast. Additional transmission infrastructure will be needed to deliver offshore wind energy from this region to the grid.

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Ørsted and partners secure funding for H2RES project; offshore wind power to produce renewable hydrogen for road transport

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The plant will use electricity from offshore wind turbines to produce renewable hydrogen for buses, trucks and potentially taxis. Hydrogen may also be produced by means of electrolysis, a process in which electricity is used to split water into hydrogen and oxygen. Avedøre Power Station on Avedøre Holme.

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bp & Ørsted to produce green H2 at Lingen refinery; industrial-scale electrolyzer powered by offshore wind

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project for industrial-scale production of green hydrogen via the electrolysis of water using ?renewable renewable power, producing zero emissions. This will be powered by renewable energy generated by an Ørsted offshore ?wind wind farm in the North Sea and the hydrogen produced will be used in the refinery.?.

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Liquid Wind to partner with Sundsvall Energi on second electrofuel facility; eMethanol for shipping

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Sundsvall Energi will partner with Liquid Wind to be the host and provide carbon dioxide for the second commercial-scale—100,000 t—electrofuel facility in Sweden. Biogenic carbon dioxide from the Sundsvall energy facility will be captured and combined with renewable hydrogen to generate green electrofuel, eMethanol.

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thyssenkrupp offering large-scale water electrolysis

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thyssenkrupp recently introduced industrial-scale water electrolysis for large projects. By splitting water into hydrogen and oxygen, this technology delivers “green” hydrogen, a clean, CO 2 -free energy carrier. The only inputs needed are water and renewable electricity from wind, hydro power or photovoltaics.

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Successful demonstration of FlexMethanol conversion of wind power to methanol

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In Germany, BSE Engineering and the Institute for Renewable Energy Systems at Stralsund University of Applied Sciences (IRES) have demonstrated the conversion of wind power into renewable methanol. The team uses green electricity to split water into hydrogen and oxygen in an electrolysis step.

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