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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 AirCapture develops on-site, modular technology that captures CO 2 from the air using waste heat from manufacturing plants, enabling customer operations to go carbon neutral and even negative.

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SGH2 building largest green hydrogen production facility in California; gasification of waste into H2

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The plant will feature SGH2’s technology, which will gasify recycled mixed paper waste to produce green hydrogen that reduces carbon emissions by two to three times more than green hydrogen produced using electrolysis and renewable energy, and is five to seven times cheaper. The facility will process 42,000 tons of recycled waste annually.

Waste 448
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Fraunhofer working on optimized methanol reformers to deliver hydrogen

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Methanol reformers convert easy-to-transport methanol into hydrogen. Transporting hydrogen can be a complex process. Converting hydrogen into methanol can provide a solution, as not only is methanol much easier to transport than hydrogen, it can also be stored almost unlimited at ambient pressure. © Fraunhofer IMM.

Hydrogen 447
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Dearman-led consortium awarded $3.1M to develop waste-heat-recovery system using liquid air engine

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The Dearman project is to deliver a production-feasible waste-heat recovery system for urban commercial vehicles, which offers life-cycle CO 2 savings of up to 40%; fuel savings of 25%, with the potential of up to almost 50%; and potential payback in less than three years. Earlier post. ). The IDP10-funded project will cost £3.25

Waste 246
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Manchester team proposing graphene-based ballistic rectifier for waste heat recovery

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Researchers at the University of Manchester (UK) have developed a graphene-based nano-rectifier (“ballistic rectifier”) that can convert waste heat to electricity. Conventional devices with similar conversion efficiencies require cryogenically low temperatures. Click to enlarge. 2014.11.064. and Lorke, A. and Kriele, A. and Bichler, M.

Waste 150
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Cambridge researchers develop standalone device that makes formic acid from sunlight, CO2 and water

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The results, reported in the journal Nature Energy , represent a new method for the conversion of carbon dioxide into clean fuels. In addition, storage of gaseous fuels and separation of by-products can be complicated—we want to get to the point where we can cleanly produce a liquid fuel that can also be easily stored and transported.

Water 418
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Blue World Technologies takes 15% stake in Danish Power Systems; methanol fuel cell vehicles

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The complete Blue World system includes the fuel cell stack, the methanol reformer, heat-exchanger, power conversion units and a set of power and operation controllers, and balance of plant. A closed thermal integration enables reuse of fuel cell waste heat for fuel evaporation thereby increasing efficiency.

Fuel 317