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DOE awards $22.1M to 10 nuclear technology projects including clean hydrogen production

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million to 10 industry-led projects to advance nuclear technologies, including two aimed at expanding clean hydrogen production with nuclear energy. A well-established downstream syngas-to-synfuel conversion process, such as Fischer-Tropsch synthesis, converts the syngas to liquid synfuel for a total projected cost of less than $4/gallon.

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Raven SR and Cap Clean Energy to collaborate on Canadian SAF and renewable diesel projects

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Raven SR, a renewable fuels company ( earlier post ), and Cap Clean Energy, a clean energy development company headquartered in Calgary, Alberta, signed a memorandum of understanding (MOU) to co-develop biofuels facilities in Canada to produce sustainable aviation fuel (SAF) and renewable diesel (RD) for the heavy duty transport sector.

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Cambridge researchers develop standalone device that makes formic acid from sunlight, CO2 and water

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Researchers at the University of Cambridge, with colleagues at the University of Tokyo, have developed a standalone device that converts sunlight, carbon dioxide and water into formic acid, a carbon-neutral fuel, without requiring any additional components or electricity. —senior author Professor Erwin Reisner.

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Aker Clean Hydrogen and Kuehne+Nagel to accelerate green container shipping

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Aker Clean Hydrogen, a global integrated clean hydrogen, ammonia and methanol producer, and Kuehne+Nagel, the world’s largest sea logistics provider, are partnering to decarbonize the maritime logistics sector by offering green container transport. —Knut Nyborg, Chief Executive Officer of Aker Clean Hydrogen.

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Study finds direct seawater splitting has substantial drawbacks to conventional water splitting, offers almost no advantage

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A study by a team of researchers from Technische Universität Berlin (TUB) and Fritz-Haber-Institut der Max-Planck-Gesellschaft has found that direct seawater splitting for hydrogen production has substantial drawbacks compared to conventional water splitting and offers almost no advantage. Additionally, H 2 O is needed for water splitting.

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DOE awards $27.5M to 16 water infrastructure projects

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million to 16 water infrastructure projects. Modern technology has the potential to reduce energy use in aging water infrastructure, particularly in wastewater treatment, which demands up to 2% of domestic electricity use each year. The US Department of Energy (DOE) is awarding $27.5

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Double-duty catalyst generates hydrogen fuel while cleaning up wastewater

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Herein, we are aiming to construct a dual-functional photocatalyst system which can degrade pollutants and simultaneously split water to generate hydrogen. Harnessing the sun’s energy to split water to make hydrogen fuel is a promising renewable resource, but it is a slow process even when catalysts are used to speed it along.

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