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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.

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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 Mesocrystal photoanode formation and photochemical water splitting characteristics.

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HYBRIT produces hydrogen-reduced sponge iron on pilot scale

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SSAB, LKAB and Vattenfall have now produced hydrogen-reduced sponge iron on a pilot scale. The technological breakthrough within the HYBRIT ( earlier post ) initiative cuts about 90% of the emissions in connection with steel production and is a decisive step on the road to fossil-free steel. So far, about 100 tons have been produced.

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Swiss team develops effective and low-cost solar water-splitting device; 14.2% solar-to-hydrogen efficiency

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Recently, c-Si modules have been implemented in solar-hydrogen devices, demonstrating SHE [solar-to-hydrogen efficiency] of 9.7%. As the V OC of the presented c-Si cells is only ∼600 mV, four cells need to be connected in series to achieve stable water splitting performance. Schüttauf et al. Schüttauf et al.

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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. Structure of an IMM photocathode configured for water splitting with TEM cross-section of the active layers.

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Wind-to-Hydrogen Tech Goes to Sea

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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. They are highly automated production islands that directly convert wind energy to hydrogen, with a few of them processing the gas into fuels and other goods.

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Researchers from MIT and Sun Catalytix develop an artificial leaf for solar water splitting to produce hydrogen and oxygen

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Researchers led by MIT professor Daniel Nocera have produced an “artificial leaf”—a solar water-splitting cell producing hydrogen and oxygen that operates in near-neutral pH conditions, both with and without connecting wires. Earlier post.). simulated sunlight. simulated sunlight. solar-to-fuels systems.

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