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Oxford spin-out OXCCU raises US$22.8M to transform carbon dioxide into sustainable aviation fuel

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OXCCU, a company spun-out from the University of Oxford in 2021 that is focused on converting carbon dioxide and hydrogen into industrial and consumer products ( earlier post ), completed an £18-million (US$22.8 million) Series A financing round. Trafigura, TechEnergy Ventures and Doral Energy-Tech Ventures also participated in the financing.

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DOE awarding more than $50M to 15 projects to advance critical material innovations

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American Battery Metals Corporation; Field Demonstration of Selective Leaching, Targeted Purification, and Electro-Chemical Production of Battery Grade Lithium Hydroxide Precursor from Domestic Claystone Resources. Partners: American Lithium Corporation, DuPont Water Solutions. 525 Solutions, Inc.;

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Stanford GCEP awards $6.6M to 7 projects; focus on combining energy conversion with carbon-neutral fuel production

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million to seven research teams—six from Stanford and one from Carnegie Mellon University—to advance research on technologies for renewable energy conversion to electricity or fuels and for capturing CO 2 emissions and converting CO 2 to fuels. Advanced water-splitting.

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DOE to award $118M to 17 projects to accelerate domestic biofuel production

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Topic Area 1: Pre-Pilot Scale-Up of Integrated Biorefineries Algenesis Corporation, “Pre-Pilot Scale Production of Algae-based Jet Fuel and Polyurethane Monomers”, $4,987,974. This project will demonstrate the conversion of gaseous carbon wood wastes (terpenes) to renewable Terpenes SAF blending components.

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DOE releasing $20M in funding to ARPA-E awardees; NEXTCAR and REFUEL projects

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REFUEL projects will use water, molecules from the air, and electricity from renewable sources to produce high-energy liquid fuels for transportation and other uses. High-Efficiency Ammonia Production from Water and Nitrogen – $1,500,000. University of Minnesota: Small Scale Ammonia Synthesis Using Stranded Wind Energy – $2,900,000.

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MIT researchers develop optimized sulfidation separation process for rare earth and other key metals

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Sulfides are common materials, but the MIT scientists are experimenting with them under extreme conditions such temperatures from 800 to 3,000 degrees Fahrenheit that are used in manufacturing plants but not in a typical university lab. This research was supported by the US Department of Energy and the US National Science Foundation.

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AFC and University of Witwatersrand Sign Exclusive Agreement to Commercialize Fischer-Tropsch Fuels and Chemical Feedstocks in the Americas

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Alternative Fuels Corporation (AFC), a wholly-owned subsidiary of G4G Resources Ltd. Alternative Fuels Corporation (AFC), a wholly-owned subsidiary of G4G Resources Ltd. The agreement grants AFC exclusive rights to market the Wits conversion technology in the Americas. Earlier post.).