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- W2103301092 abstract "Ethanol distillation in the biofuel industry is energetically expensive because ethanol is completely miscible in water. Upgrading ethanol into a hydrophobic chemical that is easier to separate would circumvent current fossil-fuel consumption for distillation. Here, we shaped a reactor microbiome to sequentially elongate carboxylic acids with 2-carbon units from dilute ethanol in yeast-fermentation beer. Our continuous bioprocess produced n-caproic acid, a 6-carbon-chain carboxylic acid that is more valuable than ethanol. No antimicrobials to inhibit methanogens were necessary. In-line product extraction achieved an n-caproic acid production rate exceeding 2 grams per liter of reactor volume per day, which is comparable to established bioenergy systems with microbiomes. Incorporation of other organics found in beer increased the mass of carbon in n-caproic acid by 10% compared to ethanol." @default.
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- W2103301092 date "2012-01-01" @default.
- W2103301092 modified "2023-10-05" @default.
- W2103301092 title "Chain elongation with reactor microbiomes: upgrading dilute ethanol to medium-chain carboxylates" @default.
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- W2103301092 doi "https://doi.org/10.1039/c2ee22101b" @default.
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