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ARPA-E Selects 37 Projects for $106M in Funding in Second Round; Electrofuels, Better Batteries and Carbon Capture

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of Delaware). The aerobic microbe has been engineered at MIT and is capable of converting a variety of organic compounds into oil, from which biodiesel may be produced. The critical barrier to wider deployment of electric vehicles is the high cost and low energy of today’s batteries. Harvard, Univ. Michigan State).

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ARPA-E awards $175M to 68 novel clean energy OPEN 2021 projects

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The MIT will develop a new generation of power electronics based on vertical gallium nitride (GaN) superjunction diodes and transistors that can vastly exceed the performance of today’s GaN power devices. University of Delaware. Massachusetts Institute of Technology. Stanford University. The Ohio State University. Pratt & Whitney.

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DOE ARPA-E awards $156M to projects to 60 projects to accelerate innovation in clean energy technologies

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High Performance, Low Cost Superconducting Wires and Coils. for High Power Wind Generators The University of Houston will develop a new, low-cost. Electric Vehicles, University of Delaware). Advanced Electric Vehicle Motors with Low or No Rare Earth. American Superconductor will develop a new, low-cost.

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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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This program aims to lower the cost of GTL conversion while enabling the use of low-cost, low-carbon, domestically sourced natural gas. If successful, LBNL’s process will enable low-cost, energy-efficient fuel production from natural gas. process intensification approaches for biological methane conversion.

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