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Researchers develop earth-abundant photocatalyst for conversion of ammonia into hydrogen

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and Princeton University’s Andlinger Center for Energy and the Environment have created a scalable photocatalyst that can convert ammonia into hydrogen fuel. This result demonstrates the potential for highly efficient, electrically driven production of hydrogen from an ammonia carrier with earth-abundant transition metals.

Hydrogen 273
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Univ. Houston, Caltech team develops new earth-abundant, cost-effective catalyst for water-splitting

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A team of researchers from the University of Houston and the California Institute of Technology has developed an active and durable earth-abundant transition metal dichalcogenide-based hybrid catalyst for water-splitting that exhibits high hydrogen evolution activity approaching the state-of-the-art platinum catalysts.

Houston 150
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DOE awarding >$24M to 77 projects through Technology Commercialization Fund

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Concentric Ring Gas Atomization Die Design for Optimized Particle Production, $150,000 Praxair, Indianapolis, Ind. Quanex Building Products Corporation, Houston, Texas SCP SYS LLC, San Francisco, Calif. Hydrogen Contaminant Detector, $150,000 Skyre, Inc., Selected Labs and Partners. Ames Laboratory. Argonne National Laboratory.

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New pilot plant for GTI IH2 biomass-to-liquids process

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The Gas Technology Institute (GTI) in Des Plaines, IL, recently added a new Pilot-Scale IH 2 Plant to broaden biomass-to-liquid hydrocarbon fuel conversion. GTI has licensed the IH2 technology to CRI Catalyst Company (CRI), an international company headquartered in Houston, TX, for worldwide deployment. Earlier post.).

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Rice team develops plasmonic photocatalyst for one-step light-driven conversion of H2S to hydrogen and sulfur

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Rice University researchers and colleagues at Princeton and Syzygy Plasmonics have developed a plasmonic photocatalyst for the direct decomposition of hydrogen sulfide gas into hydrogen and sulfur, as an alternative to the industrial Claus process. A paper on the work appears in ACS Energy Letters.

Light 243
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NREL researchers report on two approaches to upgrading biomass pyrolysis oil for hydrocarbon fuels

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NREL researcher Richard French found that partial hydrogenation of bio-oil to produce a liquid with acceptable physical and chemical properties and then completing the upgrading in a petroleum refinery where economies of scale and existing infrastructure can be used to advantage can reduce cost of upgrading.

Oil 246
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IH2 technology licensed for demonstration plant to convert woody biomass into drop-in hydrocarbon transportation fuels

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Hydrodeoxygenation of the volatilized biomass to produce a raw hydrocarbon product over proprietary CRI catalysts in the presence of low–pressure hydrogen. Hydrogen production, converting light gases generated in the first stage to hydrogen in sufficient quantity to supply all process needs. Click to enlarge.

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