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DOE awards $97M to 33 bioenergy research and development projects

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These projects will improve the performance and lower the cost and risk of technologies that can be used to produce biofuels, biopower, and bioproducts from biomass and waste resources. Scale-Up of the Primary Conversion Reactor to Generate a Lignin-Derived Cyclohexane Jet Fuel. Oregon State University. Project title.

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USDA provides $91M loan guarantee to Cool Planet for biogasoline blendstock plant; biomass pyrolysis and catalytic conversion

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Cool Planet has devised a biomass-to-liquids thermochemical conversion process that simultaneously produces liquid fuels and sequesterable biochar useful as a soil amendment. One of the catalytic conversion processes creates the high-octane gasoline blendstock. Earlier post.). Earlier post.).

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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. USDA’s Agricultural Research Laboratory (ARS) in Corvallis, Oregon will assess biochar quality for soil uses, including returning carbon to forest. Viridos, Inc., “Pre-pilot

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Joule and Red Rock Biofuels intend to merge; solar fuels plus biomass F-T

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The company is poised to begin construction of its first refinery located in Lakeview, Oregon in early 2016. Joule pioneered a direct CO 2 -to-fuel production platform that applies engineered catalysts for the continuous conversion of CO 2 directly into renewable fuels such as ethanol or hydrocarbons for diesel, jet fuel, and gasoline.

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Study shows uncovers how beetle gut microbes serve as reactor for fuel production

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This wood passes through the beetle’s complex digestive tract and is finally excreted as its waste product, politely termed frass. Understanding how evolution has solved the complex lignocellulose to fuel conversation process can help us design better industrial mimics and find novel enzymes or pathways. —Jennifer Pett-Ridge.

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U Oregon team advances effectiveness of catalytic water dissociation in bipolar membranes

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Researchers at the University of Oregon have advanced the effectiveness of the catalytic water dissociation reaction in bipolar membranes. Boettcher, a professor in the UO’s Department of Chemistry and Biochemistry and founding director of the Oregon Center for Electrochemistry.

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USDA approves $99M, 80% loan guarantee to Chemtex to support development of cellulosic ethanol from energy grasses

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Conversion from Coastal Bermuda to high yielding energy grasses, including miscanthus and switchgrass, will provide Chemtex a cost-effective biomass feedstock for cellulosic ethanol production and area swine farmers with increased economic opportunity as well as the land stewardship benefits of enhanced effluent management.