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ARPA-E awards $42M to 12 projects for advanced EV batteries; EVs4ALL program

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Projects selected for the Electric Vehicles for American Low-Carbon Living (EVs4ALL) program ( earlier post ) aim to expand domestic EV adoption by developing batteries that last longer, charge faster, perform efficiently in freezing temperatures and have better overall range retention. Award amount: $3,425,000).

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DOE awards $60M to 24 R&D projects to accelerate advancements in zero-emissions vehicles

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Clemson University will develop a lightweight, multi-material passenger vehicle body structure, addressing challenges in joining dissimilar materials. SUNY University @ Stony Brook. Extending the operating range and safety of Lithium-ion batteries with new fluorinated electrolytes. Penn State University. AOI 6: Low?cost

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DOE awarding $35M to 11 projects for hydrokinetic turbine development; ARPA-E SHARKS

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Projects will work to reduce the LCOE through multiple approaches, including increasing generation efficiency, increasing rotor area per unit of equivalent mass, lowering operation and maintenance costs, minimizing potential impacts on the surrounding environment, and maximizing system reliability. The University of Michigan.

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DOE selects 15 projects for $32M to advance lower-cost fusion concepts; ARPA-E BETHE

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Winning BETHE projects are: Category A: Development of Lower-Cost Concepts. University of Wisconsin-Madison. An HTS Axisymmetric Magnetic Mirror on a Faster Path to Lower Cost Fusion Energy - $5,000,000. University of Maryland, Baltimore County. University of Washington.

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DOE awarding up to $3.5M to 3 projects for nuclear-compatible high-temperature electrolysis for H2 production

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Using electricity and heat generated at nuclear energy facilities to produce hydrogen via extremely efficient high temperature electrolysis (HTE) is one promising integration approach for generating low-cost hydrogen. FuelCell Energy will receive $1.5

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DOE to award $10.2M to 16 solid oxide fuel cell projects

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The prototype SOFC power system will incorporate current technologies and operate under a range of environmental conditions for at least 5,000 hours to assess progress of system durability, performance, and operating cost. Boston University. Boston University. Case Western Reserve University. Lead organization.

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DOE to award ~$13.5M to 16 R&D projects for solid-oxide fuel cell technologies

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SOFC technologies enable efficient, cost-effective electricity generation from abundant domestic coal and natural gas resources, with minimal use of water and near-zero atmospheric emissions of carbon dioxide and pollutants. Sputtered Thin Films for Very High Power, Efficient, and Low-Cost Commercial SOFCs.

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