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DOE OSTI · 2998360

CO2 upgrading into bioproducts using a two-step abiotic–biotic system

Abstract

The valorization of CO2 to chemicals beyond C1-2 products is receiving significant interest; however, the direct electrosynthesis of Cn molecules (n > 4) remains a challenge. Here, we present a two-step abiotic-biotic system for upgrading CO2 into the biopolymer, poly(3-hydroxybutyrate). In the electrolysis system, CO2 is converted into C2 oxygenates using a Cu-Ag tandem electrocatalyst. The electrolysis process generates a liquid stream containing ~ 200 mM acetate in a bio-compatible electrolyte. This electrosynthesized acetate is then fed to a bioreactor, where the substrate is upgraded by Cupriavidus necator to biopolymer with a maximum rate of 32 ± 3.5 mg L-1 h-1. We further demonstrate the purification of the resulting biopolymer into a powder. The high productivity of the abiotic-biotic system demonstrates its feasibility for sustainable chemical manufacturing.

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BibTeXRIS

Lee, Geonhui, Jo, Hye-Jin, Choi, Jihoon, Guzman, Maria Fonseca, Shan, Yu, Le, Han K D, Feijoo, Julian, Soland, Nathan, Clark, Douglas S, Yang, Peidong. 2025-08-26. CO2 upgrading into bioproducts using a two-step abiotic–biotic system. https://doi.org/10.1073/pnas.2512565122

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