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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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Kobe team develops method for highly efficient hydrogen production using sunlight, water and hematite

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A research group led by Associate Professor Takashi Tachikawa of Kobe University’s Molecular Photoscience Research Center has developed a strategy that greatly increases the amount of hydrogen produced from sunlight and water using hematite (??Fe The potential is based on the RHE (Reversible Hydrogen Electrode). Zhang et al.

Water 334
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KIST team develops membrane reactor system to produce pure H2 from ammonia with high productivity

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1 ) and ammonia conversion (>99%) at a significantly reduced operating temperature (. This has resulted in a growing demand for a technology that can convert surplus renewable energy into hydrogen and transport the hydrogen to the target destination for utilization. mol-H 2 g cat ?1 Credit: KIST.

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DOE announces $3M for high performance computing research at national laboratories

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The US Department of Energy (DOE) announced up to $3 million to connect industry partners with US National Laboratory high-performance computing (HPC) resources that will accelerate the development of breakthrough manufacturing and clean energy technologies. Advanced functional materials for hydrogen applications. manufacturing.

Hydrogen 186
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NREL sets new world efficiency record for solar hydrogen production: 16.2%

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Scientists at the US Department of Energy’s (DOE) National Renewable Energy Laboratory (NREL) recaptured the record for highest efficiency in solar hydrogen production via a photoelectrochemical (PEC) water-splitting process. V), the cathodic overpotential (η c ), and the anodic overpotential (η a ). Young, Myles A. France, John A.

Solar 207
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Toshiba catalyst for efficient direct solar conversion of CO2 into ethylene glycol

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Most artificial photosynthesis technologies use a two-electron reduction conversion process, producing carbon monoxide and formic acid. The conversion is highly efficient, with a Faraday efficiency (the ratio of current contributing to production to total current) of 80%.

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New plasma synthesis process for one-step conversion of CO2 and methane into higher value fuel and chemicals

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A particularly significant route currently being developed for CO 2 utilization is catalytic CO 2 hydrogenation. Instead of using H 2 , direct conversion of CO 2 with CH 4 (dry reforming of methane, DRM) to liquid fuels and chemicals (e.g. acetic acid) represents another promising route for both CO 2 valorisation and CH 4 activation.