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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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This process is less than 1% efficient at converting sunlight to stored chemical energy. The project also includes a proprietary process to convert waste biomass into carbon dioxide and hydrogen to feed the bioreactor, allowing butanol production from waste feedstocks. NC State University. of Georgia).

Carbon 249
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Enzymatic Process Converts Cellulosic Materials and Water into Hydrogen at Low Temperature; Close to Theoretical Yield of H2 From Glucose

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Researchers at Virginia Tech, Oak Ridge National Laboratory (ORNL), and the University of Georgia have produced hydrogen gas in a spontaneous, “one-pot” process using an enzyme cocktail, cellulosic materials from non-food sources, and water. Hydrogen production from cellodextrin and water by a synthetic enzymatic pathway.

Water 150
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ARPA-E awards $130M to 66 “OPEN 2012” transformational energy technology projects

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The projects are based in 24 states, with approximately 47% of the projects led by universities; 29% by small businesses; 15% by large businesses; 7.5% Conventional large-scale gasto-liquid reactors produce waste-heat, reducing the energy. economical to store or transport. Capturing this energy would reduce both waste.

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Iowa State to manage biorefinery projects for new Manufacturing USA Institute

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Iowa State University will bring its expertise in biorenewable technologies and pilot plant operations to the country’s 10th Manufacturing USA Institute. Such process intensification could boost manufacturing productivity while cutting costs and reducing waste. Earlier post.) of Adel; and the Iowa Energy Center.

Iowa 150
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DOE ARPA-E awards $156M to projects to 60 projects to accelerate innovation in clean energy technologies

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The projects selected are located in 25 states, with 50% of projects led by universities, 23% by small businesses, 12% by large businesses, 13% by national labs, and 2% by non-profits. University of Massachusetts, Amherst. Development of a Dedicated, High-Value Biofuels Crop The University of Massachusetts, Amherst will develop an.

Energy 294
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Extensive materials genome modeling study suggests best adsosrbent materials for natural gas storage already designed; 70% of ARPA-E target

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We feel that future experimental efforts to improve this target will be a waste of time since the ARPA-E target is impossible to reach. A popular solution is to store natural gas inside materials with nano-sized pores, and the search for such is often propelled through governmental targets.

Gas 150
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ARPA-E Awards $151M to 37 Projects for Transformative Energy Research

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Waste Heat Capture (2 projects). Arizona State University, in partnership with Fluidic Energy Inc., Teaming with Ohio State University are PSRI, CONSOL Energy, Shell/CRI, and Babcock and Wilcox to accelerate this technology towards commercialization and deployment. Biomass Energy (5 projects). Carbon Capture (5 projects).

Energy 231