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DOE announces $139M in funding for 55 projects to advance innovative vehicle technologies

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The Research Foundation for The SUNY Stony Brook University. University of Delaware. University of Maryland. Structurally and Electrochemically Stabilized Silicon-rich Anodes for Electric Vehicle (EV) Applications. AOI 02: Low Cost Electric Traction Drive Systems Using No Heavy Rare Earth Materials.

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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. Purdue University, West Lafayette, Ind. Extension of Core Restrain Design Code NUBOW-3D to Lead Cooled Fast Reactor Systems, $75,000 Westinghouse Electric Company, Cranberry Township, Pa. Louis , Mo.

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DOE awards $100M in 2nd funding round for 32 Energy Frontier Research Centers

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Twenty-three of the projects receiving funding are headed by universities, eight are led by the Energy Department’s National Laboratories and one project is run by a non-profit organization. University of California, Berkeley. Center for Gas Separations Relevant to Clean Energy Technologies (CGS). Northwestern University.

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ARPA-E awards $43M to 19 energy storage projects to advance electric vehicle and grid technologies

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This latest round of ARPA-E projects seek to address the remaining challenges in energy storage technologies, which could revolutionize the way Americans store and use energy in electric vehicles, the grid and beyond, while also potentially improving the access to energy for the US. measurement capabilities and lowering the cost of electric.

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ARPA-E selects 33 projects for $66M in awards; advanced biocatalysts for gas-to-liquids and lightweight metals

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One program, Reducing Emissions using Methanotrophic Organisms for Transportation Energy (REMOTE, earlier post ), provides $34 million to 15 projects to find advanced biocatalyst technologies that can convert natural gas to liquid fuel for transportation. process intensification approaches for biological methane conversion. Lead organization.

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DOE reports progress on development of hydrogen storage technologies

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For light-duty vehicles this means providing a driving range of more than 300 miles (500 km), while meeting packaging, cost, safety, and performance requirements to be competitive with current vehicles. Reducing the cost of high-pressure compressed hydrogen. kWh/kg system (7.5 kWh/L system (0.070 kg H 2 /L). $8/kWh Source: DOE.

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