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

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University of Alabama. University of North Dakota. Scale-Up of the Primary Conversion Reactor to Generate a Lignin-Derived Cyclohexane Jet Fuel. North Carolina State University. Oregon State University. Microchannel Reactor for Ethanol to n-Butene Conversion. University of Cincinnati.

Waste 186
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DOE awarding more than $50M to 15 projects to advance critical material innovations

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Phinix,LLC; Rare Earth Element Separation Using Gas-Assisted Micro-Flow Extraction with Task-Specific Ionic Liquids Partners: NICHE Industrial Chemicals, Virginia Polytechnic Institute and State University DOE share:$500,000; Cost share $225,000; Total costs: $725,000. 525 Solutions, Inc.;

Li-ion 321
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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. Viridos, Inc., “Pre-pilot

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DOE awarding $19.4M to 22 advanced vehicle technologies projects; Mercedes-Benz, GM Li-S battery projects

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Two projects will research, develop, and use integrated computation materials engineering (ICME) techniques to develop low cost carbon fiber from a variety of feedstocks and precursors that can be used to make carbon fiber with less energy and lower cost. University of Maryland: College Park. Penn State University Park.

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US DOE Awards $37 Million for Marine and Hydrokinetic Energy Technology Development

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The Department of Energy is working with industry, universities, national laboratories, and other groups to develop technologies capable of harnessing these resources to generate environmentally sustainable, cost-competitive power. The goal is to develop an optimal generator for current energy conversion. DOE Funding: $160,000.

Mariner 210
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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
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DOE awards $7.4M to 4 projects for advanced components for wave and tidal energy systems

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In combination with unique power electronics, the new PTO will improve energy conversion efficiency and the reliability of ocean wave-energy harvesting. ADVANCED CONTROLS. the Wave Carpet developed at CalWave (UC Berkeley). INNOVATIVE STRUCTURES.

Energy 150