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Researchers develop earth-abundant photocatalyst for conversion of ammonia into hydrogen

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and Princeton University’s Andlinger Center for Energy and the Environment have created a scalable photocatalyst that can convert ammonia into hydrogen fuel. This result demonstrates the potential for highly efficient, electrically driven production of hydrogen from an ammonia carrier with earth-abundant transition metals.

Hydrogen 273
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STEAG and thyssenkrupp planning joint green hydrogen project

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The STEAG power station in Duisburg-Walsum, the site for the construction of a large-scale green hydrogen generation system. ©euroluftbild.de/Hans They endorse the development of a hydrogen economy and infrastructure in Germany and in Europe. At its core, our climate transformation is based on the use of hydrogen.

Hydrogen 482
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WSU, GTI system uses electrochemical reforming of ethanol for compressed hydrogen production; CAPER

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A team from Washington State University (WSU) and the Gas Technology Institute have used an ethanol and water mixture and a small amount of electricity in an electrochemical conversion system to produce pure compressed hydrogen. Without using a membrane, the only gas-phase species is H2. —Kee et al.

Hydrogen 243
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Fraunhofer researchers developing ammonia-based systems for mobile energy in infrastructure, transportation and industry

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Researchers at the Fraunhofer Institute for Microengineering and Microsystems IMM are developing ammonia-based systems for a mobile, decentralized energy supply in the infrastructure, transportation and industry sectors. An alternative to fossil fuels is power-to-X fuels, which are synthesized from electrolysis-based hydrogen.

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Haldor Topsoe to build large-scale SOEC electrolyzer manufacturing facility to meet customer needs for green hydrogen

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With efficiencies above 90%, Topsoe’s proprietary SOEC electrolyzers offer superior performance in electrolysis of water into hydrogen—e.g., Solid oxide electrolysis cell (SOEC) technology is attractive because of unrivaled conversion efficiencies—a result of favorable thermodynamics and kinetics at higher operating temperatures.

Hydrogen 476
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AirCapture, OCOchem and partners win $2.93M DOE grant for direct air capture of CO2 and conversion to formic acid

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Carbon dioxide capture company AirCapture and carbon dioxide conversion company OCOchem, along with other partners, have won a $2.93-million OCOchem transforms recycled CO 2 , water and zero-carbon electricity to produce formic acid, a globally traded commodity chemical and emerging electro-fuel.

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ENEOS begins joint study with Origin on Japan-Australia green hydrogen supply chain; MCH as transport medium

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ENEOS Corporation and Origin Energy signed a memorandum of understanding to conduct a study on a potential business collaboration for the development of a CO 2 -free hydrogen supply chain between Japan and Australia. Specifically, Origin will focus on use of renewable energy supply and water electrolysis cells for hydrogen production.

Australia 221