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DOE awarding more than $50M to 15 projects to advance critical material innovations

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Critical materials are used in many products important to the US economy and energy technologies, such as rare-earth elements used to manufacture high-strength magnets for offshore wind-turbine generators and lithium and cobalt in lithium-ion batteries for electric vehicles. Topic 2, Area of Interest 1: Rare Earth Element Separation.

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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. Extension of Core Restrain Design Code NUBOW-3D to Lead Cooled Fast Reactor Systems, $75,000 Westinghouse Electric Company, Cranberry Township, Pa. Austin, Texas First Solar Inc., Selected Labs and Partners.

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DOE awards $34M to 19 projects to advance clean hydrogen

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The US Department of Energy (DOE) awarded nearly $34 million to 19 industry- and university-led research projects that will advance technology solutions to make clean hydrogen a more available and affordable fuel for electricity generation, industrial decarbonization, and transportation. Earlier post.)

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

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The centers selected for the second round of funding will help lay the scientific groundwork for fundamental advances in solar energy, electrical energy storage, carbon capture and sequestration, materials and chemistry by design, biosciences, and extreme environments. Light-Material Interactions in Energy Conversion (LMI).

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DOE announces more than $65M in public and private funding to commercialize promising energy technologies

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Hot Shot Coanda-Stabilized Free Stream Gas Atomization (Hot CoSA) of Powders of Refractory Multi-Principle Element Alloys (RMPEA) for Extreme Environments, $250,000. Enhancement of PyARC for Westinghouse Electric Company’s Lead Fast Reactor design and modeling, $450,000. Westinghouse Electric Company (Cranberry Township, Pennsylvania).

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Mattershift scales up CNT membranes; potential for zero-carbon fuels for less than fossil

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Ideal gas selectivity was found to deviate significantly from that predicted by both viscous and Knudsen flow, suggesting that surface diffusion effects may begin to dominate gas selectivity at this size scale. Freeman, Professor of Chemical Engineering at UT Austin. Images of the membranes tested in the study. (A) Background.

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Tesla Q1 2024 Earnings Call Transcript: April 23, 2024

Teslarati

We believe this is not the right strategy, and electric vehicles will ultimately dominate the market. And we’re really headed for an electric vehicle, and an autonomous future. In fact, if we exclude Cybertruck and Fremont Model 3 ramp costs, the revenue from Autopark auto margins improved slightly. Martin Viecha: Okay.

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