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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 is widely used in heavy industry in Europe, but it is mainly produced by converting fossil fuels in a process which emits large amounts of greenhouse gases.

Wind 259
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BASF and RWE proposing 2GW offshore wind farm for green electricity and hydrogen for chemical industry

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Markus Krebber (RWE), accompanied by Chairman of the Mining, Chemical and Energy Industries Union (IG BCE) Michael Vassiliadis, presented a project idea that envisions a new 2 GW offshore wind farm in the German North Sea to provide the Ludwigshafen chemical site with green electricity and enable CO 2 -free production of hydrogen.

Wind 416
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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. Operation of this technology under dynamic conditions will be confirmed during a year-long test. FlexMethanol.

Wind 357
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IIASA-led study proposes Underground Gravity Energy Storage as long-term energy storage solution for renewables

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Renewable energy sources are central to the energy transition toward a more sustainable future. However, because sunshine and wind are inherently variable and inconsistent, finding ways to store energy in an accessible and efficient way is crucial. An open-access paper on the work is published in the journal Energies.

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Ørsted proposes to develop one of the world’s largest renewable hydrogen plants: SeaH2Land

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Ørsted, the world’s leading offshore wind developer, together with the major industrial companies in the North Sea Port cluster, have launched the SeaH2Land vision for a gigawatt scale project to reduce carbon emissions in the Dutch-Flemish industrial cluster with renewable hydrogen.

Hydrogen 284
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PCC SE and Landsvirkjun to convert silicon metal plant CO2 emissions to methanol

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The production of green methanol requires a renewable carbon source from PCC’s silicon metal plant in Iceland and renewable power from Landsvirkjun´s power stations. PCC SE aims for its silicon metal plant at Húsavík to become carbon-neutral by replacing fossil carbon reductants in production with renewable alternatives.

Iceland 259
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New electrocatalyst converts CO2 into ethanol, acetone, and n-butanol with high efficiency

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The electrocatalytic conversion of CO 2 using renewable energy could establish a climate-neutral, artificial carbon cycle. Excess energy produced by photovoltaics and wind energy could be stored through the electrocatalytic production of fuels from CO 2. These could then be burned as needed.

Convert 435