Cu <sub>2</sub> ZnSnS <sub>4</sub> – <i>Sporomusa ovata</i> photobiohybrids coupled with <i>Clostridium kluyveri</i> fermentation for CO <sub>2</sub> conversion to C <sub>4</sub> –C <sub>6</sub> fatty acids
Muhammed Rishan, Prabeesh Punathil, Cathal Burns, Elisabetta Arca, J. do Nascimento, Vlado K. Lazarov, Guillaume Zoppi, Martin Hayes, Elizabeth A. Gibson, Shafeer Kalathil
原始摘要(英文原文)· Original abstract
(2.4 ± 0.4 µmol). This integrated photocatalysis-fermentation strategy showcases a sustainable route for solar-to-chemical energy conversion, offering a promising solution for carbon valorisation through the convergence of materials science and biotechnology.
Cu <sub>2</sub> ZnSnS <sub>4</sub> – <i>Sporomusa ovata</i> photobiohybrids coupled with <i>Clostridium kluyveri</i> fermentation for CO <sub>2</sub> conversion to C <sub>4</sub> –C <sub>6</sub> fatty acids — 科研速览 Science Skim