Authors
Heng Li, Yuliang Hao, Dong Xia, Xin He, Yuanpeng Wang
Published in
Bioresource technology. Pages 135996. Oct 02, 2026. Epub Oct 02, 2026.
Abstract
Carbon dioxide (CO2) utilization contributes to carbon mitigation and sustainable production, but its practical application is constrained by the high thermodynamic stability of CO2, sluggish activation kinetics, limited C-C coupling efficiency, as well as the high demand for electrons and reducing power. Coupling CO2 conversion with waste-derived resources provides an effective way to address these limitations. Strategically, biomass, organic solid waste, and wastewater can supply reduced carbon, hydrogen, nutrients, electron donors, sacrificial oxidation substrates, and microbial growth media, thereby enabling more efficient carbon and electron redistribution. As such, this review holistically summarizes CO2 co-utilization with biomass, organic solid waste, and wastewater from the perspectives of mechanisms, technologies, and prospects. Therefore, this review specifically emphasizes the coupled redistribution of electrons and carbon between CO2 and these waste-derived resources. The mechanistic basis is first discussed in terms of electron flow, carbon flow, and metabolic coupling. Afterwards, representative CO2 valorization routes are reviewed, including thermochemical conversion, electrochemical and photochemical co-conversion, microalgal and algal-bacterial wastewater treatment, bioelectrochemical transformation, and coupled catalytic-microbial relay upgrading. Finally, performance metrics, key bottlenecks, and future directions are discussed. Overall, the co-utilization of CO2 and waste shall be not regarded only as a simple combination of CO2 conversion and waste treatment, but also as an integrated carbon-electron management strategy.
PMID:
42826804
Bibliographic data and abstract were imported from PubMed on 03 Oct 2026.
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