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bp to enter German offshore wind market with 4GW auction win

Green Car Congress

bp has been awarded the rights to develop two offshore wind projects in the German tender round, marking its entry into offshore wind in continental Europe. The two North Sea sites, located 130km and 150km offshore in water depths of about 40m, have a total potential generating capacity of 4GW.

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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 west Germany. wind farm in the North Sea and the hydrogen produced will be used in the refinery.?. Electrolysis splits water into hydrogen and oxygen gases. renewable power, producing zero emissions. Lingen refinery.

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

Green Car Congress

thyssenkrupp’s proprietary water electrolysis technology for the production of. conducted the necessary tests jointly in an existing water electrolysis plant operating as part of the Carbon2Chem project ( earlier post ) in Duisburg. green hydrogen meets the requirements for participation in the primary control reserve market.

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Successful demonstration of FlexMethanol conversion of wind power to methanol

Green Car Congress

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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Wind-to-Hydrogen Tech Goes to Sea

Cars That Think

Wind and solar parks produce a large portion of their energy. Then, as now, wind farms are operating off the world’s coasts—but not all of these offshore sites are connected to the mainland via underwater power cables. Some of the wind farms instead sit in clusters more than 100 kilometers out at sea.

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Topsoe to build world’s largest SOEC electrolyzer production facility; 500 MW scalable to 5 GW; focusing on Power-to-X

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To produce hydrogen, it utilizes electricity to split water molecules (H 2 O) into hydrogen (H 2 ) and oxygen (O 2 ). The cathode splits water molecules, via reduction, into hydrogen and oxide ions, after which the oxide ions are transported through the electrolyte to the anode and oxidized into oxygen.

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E.ON Power-to-Gas facility begins commercial operations; wind-to-H2

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has inaugurated commercial operations at its Power-to-Gas (P2G) facility in Falkenhagen, Germany. The plant uses wind power and Hydrogenics’ electrolysis equipment to transform water into hydrogen, which is then injected into the existing regional natural gas transmission system. Earlier post.) Ingo Luge, CEO of E.ON

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