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Pall Awarded Contract by NREL for Filtration and Separation Processes for Biomass-Based Hydrocarbon Fuels; Part of the National Advanced Biofuels Consortium Initiative

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The company will be an engineering partner on each of six processes for biofuel production being evaluated under the program: fermentation, catalytic conversion, catalytic fast pyrolysis, hydropyrolysis, hydrothermal liquefaction, and a low-cost, one-step syngas-to-distillates process.

Fuel 186
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DOE Investing Up to $78M Investment in Two Consortia Targeting Algae-Based and Biomass-Based Bio-Hydrocarbon Fuels and Infrastructure; $1.6M for Ethanol Blends Fueling Infrastructure

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It will develop and demonstrate the science and technology necessary to significantly increase production of algal biomass and lipids, efficiently harvest and extract algae and algal products, and establish valuable certified co-products that scale with renewable fuel production. Low-cost one-step syngas to distillates.

St. Louis 199
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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.

Hydrogen 150
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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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coli as an electrofuels chassis for isooctane production. coli; Product: Isooctane. Novel Biological Conversion of Hydrogen and Carbon Dioxide Directly into Biodiesel. Reducing equivalent: Hydrogen; Organism: Cupriavidus necator; Product: Biodiesel. Reducing equivalent: Electrons; Organism: N/A; Product: Octanol.

Carbon 249
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Novel pathway for aviation fuel from food waste–derived volatile fatty acids (VFA) could lead to 70% blends, up to 165% reduction in GHG

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Wet waste is a low-cost, prevalent feedstock with the energy potential to displace over 20% of US jet fuel consumption; however, its complexity and high moisture typically relegates its use to methane production from anaerobic digestion. Tifft, Davis R. C7 ketones being converted to naphtha. —Derek Vardon.

Waste 243
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DOE announces more than $65M in public and private funding to commercialize promising energy technologies

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Application of Advanced Materials Processing to Enable Direct Production of Fast Reactor Fuel Alloys, $1,000,000. Highly Efficient Electrocatalysts for Direct Conversion Of CO2 To Chemicals, $250,000. Highly Efficient Low-Thermal-Budget Hydrogen and Chemical Co-Production via an Electrochemical Activation of Propane, $100,000.

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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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While chemically converting natural gas to liquid fuels (GTL) is a proven technology that increases volumetric energy density, the current conversion approach through Fischer-Tropsch (FT-GTL) is challenged by both high capital costs and low conversion efficiencies. Enzyme Engineering for Direct Methane Conversion.

Gas 259