Remove Conversion Remove Li-ion Remove Polymer Remove Waste
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Circa Group providing bio-based solvent Cyrene to UK EV battery recycling project

Green Car Congress

Australia-based biotechnology company Circa Group, which produces its bio-based solvent Cyrene from waste cellulose, is participating in a project to develop the first UK industrial scale capability to reclaim and reuse the most valuable components of end-of-life electrical vehicle (EV) batteries. straw, bagasse, sawdust).

Batteries 186
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DOE awarding $72M in 73 Phase II SBIR/STTR grants

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Production of C 5 hydrocarbons from waste biomass. Obtaining sustainable sources of chemicals and processing organic waste in an environmentally responsible manner remains a challenge. This proposal aims to solve these problems by converting organic waste into chemicals with widespread use in polymer and transportation industries.

Grant 150
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DOE announces $26.6M SBIR/STTR FY15 Phase 1 Release 2 awards; fuel cells, batteries, power electronics and efficient combustion engines

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This quality control device will help to drive down the costs of fuel cells by reducing waste and improving the process efficiency of roll-to-roll manufacturing of polymer electrolyte membranes. High Loading Lithium-Ion Electrode Architecture for Low Cost Electric Vehicle Batteries Ballast Energy, Inc. 149,871.44. 148,393.82.

Li-ion 150
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US DOE awards more than $175M to 40 projects for advanced vehicle research and development

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This project will develop a novel low cost route to carbon fiber using a lignin/PAN hybrid precursor and carbon fiber conversion technologies leading to high performance, low-cost carbon fiber. Increased availability of magnesium can enable vehicle weight reduction and improvement in fuel efficiency. Zoltek Companies, Inc. Amprius, Inc.

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DOE issues $10M incubator FOA for batteries, power electronics, engines, materials, fuels and lubricants

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ion batteries is approximately four times too high on a kWh basis; current batteries are two to three times too heavy and large, and high? ion batteries are not intrinsically tolerant to abusive conditions. competitive waste heat recovery technologies. based systems for waste?heat energy batteries. energy lithium?ion

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DOE to award up to $184M for advanced vehicle research and development in 8 areas of interest

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Alloy or Li metal anodes. High voltage and solid polymer composite electrolytes. Li/air and Li/S systems. Technologies that reduce the time needed for Li-ion cell formation and improved Li-ion coating process through the use of either dry processing techniques or more environmentally benign solvents, such as water.

Li-ion 231
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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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Electrofuels approaches will use organisms able to extract energy from other sources, such as solar-derived electricity or hydrogen or earth-abundant metal ions. Novel Biological Conversion of Hydrogen and Carbon Dioxide Directly into Biodiesel. This process is less than 1% efficient at converting sunlight to stored chemical energy.

Carbon 249