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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. from an offshore wind farm—the process of producing hydrogen from water (electrolysis) can be decarbonized. The UK has awarded £7.5

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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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thyssenkrupp’s water electrolysis technology qualified as primary control reserve in Germany; hydrogen production for the electricity market

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thyssenkrupp’s proprietary water electrolysis technology for the production of. Our plants are thus making a significant contribution to ensuring both a stable power supply and the cost-effectiveness of green hydrogen. Prerequisites include being able to provide full supply within max. thyssenkrupp and E.ON

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Cargill and BAR Technologies bringing wind propulsion to bulk cargo ships

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Cargill and BAR Technologies have embarked on a strategic project with naval architect Deltamarin to bring cutting edge wind propulsion technology to commercial shipping. Through this partnership we will bring bespoke wind solutions to customers who are actively seeking to reduce CO 2 emissions from their supply chain.

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MOL joins “Wind Hunter Project” for combination of sails and fuel cells on ships

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MOL) has joined a wide-ranging corporate-academic partnership in a zero-emission initiative called the “Wind Hunter Project,” seeking new applications for hydrogen fuel and wind power. The Wind Hunter Project combines wind propulsion sailing technology and wind energy converted to generate a stable supply of hydrogen.

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Wärtsilä gas engines to burn 100% hydrogen

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During the energy sector’s transition to carbon neutrality, wind, solar, and battery storage will form an increasing share of power systems. There will, however, also be a need for renewable fuels to enable long-term storage in persistent low wind and solar weather conditions.

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In Norway, Asko begins piloting use of hydrogen fuel-cell trucks

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Electricity generated by solar panels installed across nine thousand square metres of roofing at Asko’s regional warehouse is being used to split water, producing emissions-free hydrogen fuel and oxygen. In addition to solar, Asko is a major industrial wind power producer.

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