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IIT researchers develop electrolyzer that converts CO2 to propane

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Researchers at Illinois Institute of Technology (IIT), with colleagues at the University of Pennsylvania and the University of Illinois at Chicago have developed an electrolyzer capable of converting carbon dioxide into propane in a manner that is both scalable and economically viable. —Esmaeilirad et al.

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Penn team proposes liquid-organic hydrogen carriers as endothermic fuels for hypersonic aircraft

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A team at the University of Pennsylvania is proposing the use of a liquid-organic hydrogen carrier (LOHC)—specifically, 1,2,3,4 -tetrahydroquinoline (THQ)—for use as an endothermic fuel for thermal protection of hypersonic aircraft engines. 1 were obtained, with conversions greater than 80% at 600 °C.

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Researchers propose reason for capacity loss in metal-oxide battery materials

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Magnetite, among other conversion-type electrode materials (i.e., materials that get converted into entirely new products when they react with lithium), can store more energy than today’s electrode materials because they can accommodate more lithium ions.

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Pennsylvania Awards Axion Power $800,000 to Demonstrate PbC Batteries in Hybrids, PHEVs and EVs

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The Pennsylvania Alternative Fuels Incentive Grant (AFIG) program has awarded Axion Power International, Inc. The Pennsylvania Alternative Fuels Incentive Grant (AFIG) program has awarded Axion Power International, Inc. and Penn State University. Temple University. Ettline Foods Corp. Middletown Biofuels LLC.

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DOE Awards $377 Million in Funding for 46 Energy Frontier Research Centers

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US Energy Secretary Steven Chu announced the delivery of $377 million in funding for 46 new multi-million-dollar Energy Frontier Research Centers (EFRCs) ( earlier post ) located at universities, national laboratories, nonprofit organizations, and private firms across the nation. Pennsylvania State University. Purdue University.

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US DOE Awards $37 Million for Marine and Hydrokinetic Energy Technology Development

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The Department of Energy is working with industry, universities, national laboratories, and other groups to develop technologies capable of harnessing these resources to generate environmentally sustainable, cost-competitive power. The goal is to develop an optimal generator for current energy conversion. DOE Funding: $160,000.

Mariner 210
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PNAS study finds Vertimass CADO efficient way to convert ethanol to biohydrocarbons; 40 to 96% reduction in GHGs, based on feedstock

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Unlike prior processes for converting alcohols into hydrocarbons with multiple steps for dehydration, oligomerization, and hydrogenation, the Vertimass consolidated alcohol dehydration and oligomerization (CADO) conversion is accomplished in a single reactor system using a metal exchanged zeolite catalyst. Hannon et al.

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