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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 new pathway is intended to replace the natural metabolic pathway known as glycolysis, a series of chemical reactions that nearly all organisms use to convert sugars into the molecular precursors that cells need. NOG can be a nice platform with different sugars for a 100 percent conversion to acetyl-CoA. —Bogorad et al.

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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 carbon-optimized conversion technology developed under this project can be integrated with multiple CO 2 sources, such as corn grain ethanol refining (near-term) and direct air capture (mid-long term).

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