Pachamuthu S, Gao J, Ozden A, Legrand U, Favaro M, Isaacs M, García de Arquer FP, Azenha C, Mendes A, Sargent EH, Janáky C, Grätzel M, Jiménez-Calvo P, Jiménez-Calvo P (2026)
Publication Type: Journal article, Review article
Publication year: 2026
Book Volume: 11
Pages Range: 4813-4836
Journal Issue: 7
URI: https://pubs.acs.org/aelccp/article/11/7/4813/5115949/Scaling-Low-Temperature-CO2-to-Syngas
DOI: 10.1021/acsenergylett.6c00886
Open Access Link: https://pubs.acs.org/aelccp/article/11/7/4813/5115949/Scaling-Low-Temperature-CO2-to-Syngas
Low-temperature CO2 electroreduction (CO2eR) to syngas offers tunable H2:CO ratios and a renewable route to decarbonized syngas production, yet catalyst-level advances rarely translate to scalable, durable systems. This review addresses that disconnect with a systems-engineering perspective. We first establish the component foundations, electrolytes, membranes, and cell architectures of flow cells and zero-gap membrane electrode assembly (MEA) electrolyzers, together with integrated versus decoupled syngas production modes, then analyze the engineering failure modes that dominate at scale: non-uniform current distribution, localized hotspots, electrode flooding, salt precipitation, and thermal gradients. Single-pass CO2 conversion efficiency (SPCE) is introduced as a co-equal metric alongside Faradaic and energy efficiency (FE/EE). Original contributions include a standardized accelerated stress test (AST) protocol, a lifecycle sustainability assessment (LCSA) framework with quantitative carbon footprint benchmarking, a mitigation strategy compatibility matrix, and three-benchmark design pathways targeting high EE, high stability, and high SPCE, providing an actionable systems-engineering roadmap toward CO2eR systems sustaining >5000 h at industrially relevant current densities.
APA:
Pachamuthu, S., Gao, J., Ozden, A., Legrand, U., Favaro, M., Isaacs, M.,... Jiménez-Calvo, P. (2026). Scaling Low-Temperature CO2-to-Syngas Electroreduction: Failure Modes, Engineering Bottlenecks, and Mitigation Strategies. ACS Energy Letters, 11(7), 4813-4836. https://doi.org/10.1021/acsenergylett.6c00886
MLA:
Pachamuthu, Senthilkumar, et al. "Scaling Low-Temperature CO2-to-Syngas Electroreduction: Failure Modes, Engineering Bottlenecks, and Mitigation Strategies." ACS Energy Letters 11.7 (2026): 4813-4836.
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