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DOE to award $35M to 24 projects to support early-stage, innovative technologies and solutions in advanced manufacturing

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The team will apply atomic layer deposition technology to fabricate and modify the catalyst at the atomic level, with the goal of more than doubling catalyst lifetime, improving selectivity and conversion efficiency at reduced costs. University of California, Los Angeles (UCLA). Bio2Electric, LLC d.b.a. Zyvex Labs, LLC.

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ARPA-E awards $33M to 13 intermediate-temp fuel cell projects; converting gaseous hydrocarbons to liquid fuels

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The US Advanced Research Projects Agency - Energy (ARPA-E) is awarding $33 million to 13 new projects aimed at developing transformational fuel cell technologies for low-cost distributed power generation. The University of California Los Angeles. Georgia Tech Research Corporation. Lead organization. Description.

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

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plans to develop a novel membrane system from Osmoses’ proprietary polymer composition that can produce enriched oxygen from air for integration into modular gasification systems for low-cost hydrogen production. The team intends to demonstrate high-purity (greater than 98% by volume, preferably above 99.5%

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

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Highly Efficient Electrocatalysts for Direct Conversion Of CO2 To Chemicals, $250,000. Bio-based Insecticides from Thermochemical Conversion of Biomass, $100,000. Alumina Energy, LLC (Los Angeles, California). Reducing Protein Production Costs to Enable Cell Free Biocatalysis, $400,000. Framatome Inc.

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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.

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ARPA-E announces $36M for high-temperature materials projects

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Durable and affordable higher-temperature heat exchangers could make energy conversion much more efficient, which in turn could reduce fuel consumption, system footprint, capital and operational cost, and emissions. Additively Manufactured High Efficiency and Low-Cost sCO 2 Heat Exchangers – $1,500,000.

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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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Energy Plant Design The University of California, Los Angeles, will re-engineer. streamline the process by which green plants convert carbon. production of oil, which is stored in seeds and is convertible to. plants, and it is a liquid that can be extracted readily, separated, and converted into biodiesel fuel.

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