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Georgia Tech named winner of DOE/GM/Mathworks EcoCAR Mobility Challenge

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The Ohio State University finished in second place and University of Alabama came in third. The Ohio State University finished in second place and University of Alabama came in third.

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Ford and Georgia Tech partner on hydraulic hybrid school bus conversion

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The Ford Motor Company Fund and the Georgia Institute of Technology are partnering on the US’ first conversion of a traditional school bus to a hydraulic hybrid vehicle that runs on recycled biofuel. Atlanta Public Schools (APS) donated the bus for the project.

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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. Georgia Institute of Technology.

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NASEM announces provisional committee for new study on life cycle analyses of low-carbon fuels

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The committee will include these considerations: Direct GHG emissions over the entire lifecycle of a given transportation fuel, including feedstock generation or extraction, feedstock conversion to a finished fuel or blendstock, distribution, storage, delivery, and use of the fuel in vehicles. Dunn, PhD, Northwestern University.

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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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UGA team develops method for genetic engineering of Caldicellulosiruptor thermophilic bacteria; another pathway for efficient conversion of biomass to fuels and chemicals

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Researchers at the University of Georgia, who are also members of Department of Energy’s BioEnergy Science Center (BESC), have developed a method for the genetic manipulation of members of bacterial genus Caldicellulosiruptor , a group of anaerobic thermophiles with optimum growth temperatures between 65 °C and 78 °C (149–172 °F).

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Phase 1 of DOE-funded ABBA Integrated Biorefinery project begins; renewable jet, gasoline, diesel and nanocellulose

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Phase 1 of the ABBA Integrated Biorefinery project, to be built at the AVAPCO Thomaston Georgia site, has begun. The project, which will co-produce full replacement renewable jet fuel, gasoline, diesel and Bioplus nanocellulose from woody biomass in an integrated biorefinery at AVAPCO’s site in Thomaston, Georgia, has received a $3.7-million

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