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Georgia Tech team develops simple, low-cost process for oxide nanowires; superior separators for Li-ion batteries

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Researchers at Georgia Tech have developed a simple technique for producing oxide nanowires directly from bulk materials under ambient conditions without the use of catalysts or any external stimuli. The process is believed to be the first to convert bulk powders to nanowires at ambient conditions. —Lei et al.

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ARPA-E announces $98M in funding for 40 OPEN projects; two opposed-piston engines projects receive $10M total

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Georgia Tech Research Corporation. Georgia Tech will develop a new approach to internally cool permanent magnet motors. Ecolectro is developing alkaline exchange ionomers (AEIs) to enable low-cost fuel cell and electrolyzer technologies. Superstrong, Low-cost Wood for Lightweight Vehicles – $3,600,000.

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DOE to award $118M to 17 projects to accelerate domestic biofuel production

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Made from widely available domestic feedstocks and advanced refining technologies, energy-dense biofuels provide a pathway for low-carbon fuels that can lower greenhouse gas emissions throughout the transportation sector and accelerate the bioeconomy. Comstock Inc., RTI International and partners at POET Research, Inc.

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DOE Awarding $4.4M to Six Projects for Carbon Capture and Conversion

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million to six research projects to help find ways of converting CO 2 captured from emissions of power plants and industrial facilities into useful products. Total value of the projects, including cost sharing, is approximately US$5.9 The US Department of Energy (DOE) is awarding US$4.4 million over two to three years.

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Renmatix unveils supercritical hydrolysis process for biomass sugars

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At Renmatix’s demonstration facility in Kennesaw, Georgia, the company has already scaled its process to convert three dry tons of woody biomass to sugars daily. The supercritical state of matter has long been utilized in industrial processes including coffee decaffeination and pharmaceutical applications. —John Melo.

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Roadmap shows how to improve lignocellulosic biofuel biorefining with high-value products from isolated lignin

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The resulting roadmap uses the integration of genetic engineering with analytical chemistry tools to tailor the structure of lignin and its isolation so it can be used for materials, chemicals and fuels, said lead author Arthur Ragauskas, a professor in the School of Chemistry and Biochemistry at the Georgia Institute of Technology.

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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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Today’s technologies for making biofuels all rely on photosynthesis—either indirectly by converting plants to fuels or directly by harnessing photosynthetic organisms such as algae. This process is less than 1% efficient at converting sunlight to stored chemical energy. of Georgia). Electrofuels: Biofuels from Electricity.

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