Quick Navigation

Topics

Quantum Chemistry

A Review of Electrochemical-Biological Coupling Systems for CO(2) Valorization: Catalytic Fundamentals, System Integration, and Industrial Outlook.

PubMed
Authors: Shi X, Li C, Guo F, Jing Y, Guo Y, Li H, Qiao M, Huang X, Chen X, Zhao C, Zhang W, Zhang X, Zeng J

Year

2026

Paper ID

75990

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

168

Citations

N/A

Abstract

To support dual-carbon goals and address the limitations of conventional CO valorization technologies, this review summarizes recent advances in electrochemical-biological coupling systems for high-value CO utilization, with emphasis on catalytic fundamentals, system integration, and industrial prospects. We discuss catalyst and reactor design for CO electroreduction to C/C liquid platform molecules, particularly formate, acetate, and methanol, and their subsequent biological conversion. The review further examines metabolic and engineering strategies by which microbial cell factories assimilate electro-generated substrates to produce high-value compounds, including amino acids, organic acids, polysaccharides, and polyhydroxybutyrate (PHB). Key bottlenecks in electrocatalyst stability, gas diffusion electrodes, reactor operation, carbonate accumulation, cathode flooding, metabolic compatibility, flux matching, and system-level coupling are analyzed. We also highlight the roles of artificial intelligence, multiscale modeling, smart control, techno-economic analysis, and life-cycle assessment in accelerating scale-up and industrial translation. Overall, electrochemical-biological coupling provides a "capture-convert-valorize" route that integrates renewable-electricity-driven electrocatalysis with biomanufacturing, enabling CO conversion into multicarbon, value-added products and offering a promising platform for sustainable carbon recycling and carbon-negative manufacturing.

Why This Paper Matters

  • This paper contributes to the Quantum Chemistry research area in the Quantum Articles archive.
  • It adds a 2026 reference point for readers tracking recent quantum research.
  • To support dual-carbon goals and address the limitations of conventional CO valorization technologies, this review summarizes recent advances in electrochemical-biological...

Paper Tools

Become a member to use research tools

Sign in to open papers, visit source links, share, cite, compare, copy DOI links, request category corrections, and build your reading list.

Publisher Share Cite This Paper Copy URL Compare Copy DOI Add to Reading List Category Correction Request

References & Citation Signals

Local Citation Graph (Related-Paper Links)

Current Paper #75990 #77848 Smart pH-Sensing Chitosan-Carbo... #77814 Quantum chemical modeling of zi... #77798 Molecular qubits: opportunities... #77795 Machine Learning‐Based Discover...

External citation index: OpenAlex citation signal

Community Reactions

Quick sentiment from readers on this paper.

Score: 0
Likes: 0 Dislikes: 0

Sign in to react to this paper.

Discussion & Reviews (Moderated)

Average Rating: 0.0 / 5 (0 ratings)

No written reviews yet.