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UCLA engineers develop new metabolic pathway for more efficient conversion of glucose into biofuels; possible 50% increase in biorefinery yield

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The wasted CO 2 leads to a significant decrease in carbon yield, the researchers observed, which results in a major impact on the overall economy of biorefinery and the carbon efficiency of cell growth. Biomass Biorefinery Biotech Fuels Synthetic Biology' —Bogorad et al. Dr. Liao, the principle investigator, is UCLA’s Ralph M.

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DOE awards $35M to 15 projects in ARPA-E ECOSynBio program to reduce carbon footprint of biofuel production

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These fermentation processes create carbon as a byproduct, with some processes wasting more than 1/3 of this carbon as CO 2 emissions. The LT team will develop a gas fermentation process that leverages affordable, renewable hydrogen to capture and fix CO 2 directly into valuable fuels and chemicals. University of Wisconsin-Madison.

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