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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. University of Alabama. University of North Dakota. Scale-up and Qualification of Net-Zero Sustainable Aviation Fuels from Wet Waste.

Waste 186
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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. University of California Riverside, “Scale-up Demonstration of Hybrid Catalytic Biorefining of Biomass to Sustainable Aviation and Marine Fuels”, $2,000,000.

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ARPA-E announces $11M for innovations in energy-water processing and agricultural sensing technologies; fourth, fifth OPEN+ cohorts

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Energy-Water cohort teams will develop new, energy-efficient processing technologies for industrial (particularly oil and gas) and municipal wastewater. Columbia University, Expanding the Boundaries of Autotrophic Nitrogen Removal for Energy-Efficient Clean Water Production – $1,620,136. Energy-Water Technologies cohort.

Water 170
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Univ of Washington team working to make poplar coppice viable cheap, high-volume biofuel feedstock

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A University of Washington team is trying to make poplar an economically viable biofuel feedstock by testing the production of younger poplar trees that could be harvested more frequently—after only two or three years—instead of the usual 10- to 20-year cycle. Chang Dou/University of Washington. Click to enlarge.

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2016 Billion Ton Report shows US could sustainably produce at least 1B tons biomass by 2040 for bioeconomy

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New to the 2016 report is novel assessments of potential biomass supplies from algae, from new energy crops (miscanthus, energy cane, eucalyptus), and from municipal solid waste. These renewable resources include agricultural, forestry, and algal biomass, as well as waste. and Allegheny Science and Technology).

2016 150
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Daimler Trucks NA SuperTruck achieves 115% freight efficiency improvement over 2009 baseline; 50.2% engine BTE

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To measure freight efficiency, DTNA ran vehicle testing on highway routes in Oregon and Texas; one city route in Portland, Ore.; liter engine, a hybrid system, a Waste Heat Recovery (WHR) system, along with a number of other upgrades. and anti-idle testing in both a cold chamber and hot chamber. DTNA SuperTruck technology elements.

2009 150
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LA-based SMLC to lead new DOE Smart Manufacturing Innovation Institute; ~$800M for 5 new hub competitions

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Process intensification breakthroughs can dramatically shrink the footprint of equipment needed on a crowded factory floor or eliminate waste by using the raw input materials more efficiently. quadrillion BTU of energy annually, equivalent to 280 million barrels of oil, or a month’s worth of that nation’s oil imports.