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Georgia Tech team develops melt-infiltration technique for scalable production of solid-state batteries

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A new fabrication technique could allow all-solid-state automotive lithium-ion batteries (ASSLBs) to adopt nonflammable ceramic electrolytes using the same production processes as in batteries made with conventional liquid electrolytes. The standard electrode assemblies, including the polymer binder or glue, can be stable in these conditions.

Georgia 312
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Georgia Tech team develops highly efficient multi-phase catalyst for SOFCs and other energy storage and conversion systems

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Researchers at Georgia Tech, with colleagues in China and Saudi Arabia, have developed a rationally designed, multi-phase catalyst that significantly enhances the kinetics of oxygen reduction of the state-of-the-art solid oxide fuel cell cathode. This work demonstrates that a multi-phase catalyst coating (? —Chen et al.

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

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The US Department of Energy (DOE) will award some $118 million in funding for 17 projects to accelerate the production of sustainable biofuels. Topic Area 1: Pre-Pilot Scale-Up of Integrated Biorefineries Algenesis Corporation, “Pre-Pilot Scale Production of Algae-based Jet Fuel and Polyurethane Monomers”, $4,987,974.

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Waste Management and Renmatix to explore conversion of urban waste to low-cost cellulosic sugar via supercritical hydrolysis

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The strategic investment and alliance aims to expand the feedstock flexibility of Renmatix’s proprietary Plantrose process beyond rural biomass to include materials derived from cost-effective and readily available urban waste material such as that managed by Waste Management. The products from this reaction are then cooled and filtered.

Waste 274
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UGA-led team engineers bacterium for the direct conversion of unpretreated biomass to ethanol

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A team led by Dr. Janet Westpheling at the University of Georgia has engineered the thermophilic, anaerobic, cellulolytic bacterium Caldicellulosiruptor bescii , which in the wild efficiently uses un-pretreated biomass—to produce ethanol from biomass without pre-treatment of the feedstock. Whereas wild-type C. —Chung et al.

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

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Innovation and optimization of the Szego Mill for reliable, efficient, and successful up-scaling of the deacetylation and mechanical refining process for biofuel production. Scale-Up of the Primary Conversion Reactor to Generate a Lignin-Derived Cyclohexane Jet Fuel. Microchannel Reactor for Ethanol to n-Butene Conversion.

Waste 186
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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 Tags: Carbon Capture and Conversion (CCC) Emissions. million over two to three years.