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Ethanol-fueled solid oxide fuel cells with HEA internal reforming catalyst for transportation applications

Green Car Congress

Researchers from Lawrence Berkeley National Laboratory and the University of Connecticut have demonstrated high-performance metal-supported solid oxide fuel cells (MS-SOFC) with an integrated high entropy alloy (HEA) internal reforming catalyst (IRC) for transportation applications using ethanol and methanol as fuels.

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Alstom and MOL to explore use of hydrogen technologies for rail transport in Hungary

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Alstom and MOL, Hungary’s leading oil and gas company, have signed a Memorandum of Understanding to structure cooperation in examining the use of hydrogen technology in rail transportation. Coradia iLint hydrogen trains are electric trains with a hydrogen-powered fuel cell for onboard electricity generation.

Hungary 334
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Iwatani, SG H2 & City of Lancaster to launch green hydrogen transportation eco-system

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Energy company SG H2 Energy; the City of Lancaster, California; and Iwatani, Japan’s leading hydrogen industrial gas company and a developer of hydrogen refueling stations (HRS) in California, are launching California’s first closed-loop green hydrogen ecosystem for transportation.

Hydrogen 307
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Kawasaki, Subaru, Toyota, Mazda, and Yamaha partner on producing, transporting, and using carbon-neutral fuels, including hydrogen

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jointly announced that, toward the achievement of carbon neutrality, they will take on the challenge of expanding fuel options through the use of internal combustion engines at the (three-hour) Super Taikyu Race in Okayama on 13-14 November. Kawasaki Heavy Industries, Ltd., MAZDA SPIRIT RACING Bio concept DEMIO.

Mazda 387
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U Delaware team develops prototype efficient direct ammonia fuel cell for transportation

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However, most air transport, military, shipping, and long-distance freight applications remain challenging for batteries because of their limited energy density. Together, these applications leave a substantial fraction of transportation energy usage dependent on chemical fuels. —Zhao et al. Zhao et al.

Delaware 278
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ANL: life-cycle water consumption of fuel cell vehicles can be cut in half compared to that of conventional ICE vehicles

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The life-cycle water consumption of fuel cell electric vehicles using hydrogen produced from natural gas with steam methane reforming is almost 50% less than the life-cycle water consumption of conventional internal combustion engine vehicles using gasoline, according to a study by researchers at Argonne National Laboratory (ANL).

Water 225
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Semcon, Hystar working to boost electrolyzer hydrogen output 150% without increased energy consumption

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International technology company Semcon is collaborating with Hystar , a Norwegian company that has developed a novel PEM electrolysis technology, to increase the amount of hydrogen gas that can be produced through electrolysis by more than 150% compared to current electrolyzer technology without using more energy.

Hydrogen 305