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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. Operators can now link their plants to the German electricity market via E.ON’s virtual power plant. Operators can now link their plants to the German electricity market via E.ON’s virtual power plant. thyssenkrupp and E.ON

Water 337
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Fukushima Hydrogen Energy Research Field (FH2R) completed in Japan; aiming for low-cost green hydrogen production; P2G

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Japan’s New Energy and Industrial Technology Development Organization (NEDO), Toshiba Energy Systems & Solutions Corporation (Toshiba ESS), Tohoku Electric Power Co., With sights set on expanding the use of renewable energy, Toshiba ESS, Tohoku Electric Power Co., Tohoku Electric Power Co., Overview of FH2R system.

Low Cost 450
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Evonik and Siemens launch phase 2 of Rheticus: butanol, hexanol from CO2 and water using renewable electricity and bacteria

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The goal is to develop an efficient and powerful test plant that will use carbon dioxide and water as well as electricity from renewable sources and bacteria to produce specialty chemicals. Process design for technical synthesis of butanol and hexanol from CO 2 , H 2 0 and electricity. describing the approach.

Water 170
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Alstom and MOL to explore use of hydrogen technologies for rail transport in Hungary

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Alstom and MOL, Hungary’s leading oil and gas company, have signed a Memorandum of Understanding to structure cooperation in examining the use of hydrogen technology in rail transportation. Alstom is a pioneer of hydrogen technology, having introduced the Coradia iLint to the German market in September 2018 ( earlier post ).

Hungary 334
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Monash team proposes roadmap to renewable ammonia economy; 3 generations of technology

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While there is global potential to generate renewable energy at costs already competitive with fossil fuels, a means of storing and transporting this energy at a very large scale is a roadblock to large-scale investment, development and deployment. of global greenhouse gas emissions (or about 1.4% —MacFarlane et al. Generation 1.

Renewable 419
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U Toronto and Fujitsu team use quantum-inspired computing to discover improved catalyst for hydrogen production

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Scaling up the production of what we call green hydrogen is a priority for researchers around the world because it offers a carbon-free way to store electricity from any source. Nearly all commercial hydrogen is produced from natural gas. —Ted Sargent, senior author.

Hydrogen 448
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Researchers increase carbon efficiency of BtL process from 38 to >90% by adding hydrogen from renewable sources; 2.4x more fuel produced

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The increased carbon efficiency is possible because the water gas shift reaction is avoided and instead a reversed water gas shift is introduced to convert CO 2 to CO. The required electrical power for the extra production is estimated to be 11.6?kWh C the electric energy may be reduced to 9.5?kWh

Hydrogen 244