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DOE to award $118M to 17 projects to accelerate domestic biofuel production

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This project will demonstrate the conversion of gaseous carbon wood wastes (terpenes) to renewable Terpenes SAF blending components. RTI International and partners at POET Research, Inc. The ethanol will be converted to sustainable aviation fuel at LanzaJet’s Freedom Pines Fuels facility, in Soperton, Georgia.

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DOE to award up to $13M to four advanced biofuels projects

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Hydrocarbon-based biofuels made from non-food feedstocks, waste materials, and algae can directly replace gasoline and other fuels. Oak Ridge National Laboratory will use a microbial electrolysis process to efficiently remove the hydrogen from the water found in bio-oil.

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NRC approves rule to certify amended AP1000 reactor design; Chu: “an important milestone”

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The AP1000 is a 1,100 megawatt electric pressurized-water reactor that includes passive safety features that would cool down the reactor after an accident without the need for human intervention. additional waste-water monitor tanks. reactor internal changes (flow skirt addition). Earlier post.) The amended.

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DOE awarding $72M to 27 projects to develop and advance carbon capture technologies, including direct air capture

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Engineering-Scale Test of a Water-Lean Solvent for Post-Combustion Capture. aims to demonstrate the performance of a novel water-lean solvent for post-combustion removal of CO 2 from coal- and natural gas-derived flue gas. A Combined Water and CO 2 Direct Air Capture System. Electric Power Research Institute Inc. Susteon Inc.

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ARPA-E awards $130M to 66 “OPEN 2012” transformational energy technology projects

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Conventional large-scale gasto-liquid reactors produce waste-heat, reducing the energy. Capturing this energy would reduce both waste. areas to convert otherwise wasted gas into usable chemicals that. decrease water use compared to conventional algae reactors. engineered to use fertilizer and water more efficiently and.

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EPA honors winners of the 20th Annual Presidential Green Chemistry Challenge; advanced biofuels

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The algae uses CO 2 from air or industrial emitters with sunlight and saltwater to create fuel while reducing the carbon footprint, costs and water usage, with no reliance on food crops as feedstocks. This has led to improved biofuel productivity, higher economic returns, minimal waste production, and a lower carbon footprint.

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

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Heat exchangers are critical to efficient thermal energy use in a variety of applications, including electricity generation, nuclear reactors, transportation, petrochemical plants, waste heat recovery, and many more. Two different technologies will be used to smooth the heat exchanger components’ internal passages to minimize pressure drop.

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