Bio-integrated carbon capture and utilization: at the interface between capture chemistry and archaeal CO2 reduction
Abstract
Carbon capture and utilization (CCU) covers an array of technologies for valorizing carbon dioxide (CO2). To date, most mature CCU technology conducted with capture agents operates against the CO2 gradient to desorb CO2 from capture agents, exhibiting high energy penalties and thermal degradation due to the requirement for thermal swings. This Perspective presents a concept of Bio-Integrated Carbon Capture and Utilization (BICCU), which utilizes methanogens for integrated release and conversion ...
Description / Details
Carbon capture and utilization (CCU) covers an array of technologies for valorizing carbon dioxide (CO2). To date, most mature CCU technology conducted with capture agents operates against the CO2 gradient to desorb CO2 from capture agents, exhibiting high energy penalties and thermal degradation due to the requirement for thermal swings. This Perspective presents a concept of Bio-Integrated Carbon Capture and Utilization (BICCU), which utilizes methanogens for integrated release and conversion of CO2 captured with capture agents. BICCU hereby substitutes the energy-intensive desorption with microbial conversion of captured CO2 by the methanogenic CO2-reduction pathway, utilizing green hydrogen to generate non-fossil methane. Existing carbon capture and utilization technologies are hindered by significant energy penalties. Here, the authors discuss the Bio-Integrated Carbon Capture and Utilization (BICCU) technology, which mitigates the energy penalties while generating valuable C1 and C2 products.
Source: Semantic Scholar - Nature Communications (48 citations) PDF: https://doi.org/10.1038/s41467-024-51700-3 Original Link: https://www.semanticscholar.org/paper/cafa3a22eaa2631c9c6c1df14c24cb9a779947dc
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Jul 30, 2026
Medicine
Peer Reviewed
0