General Techno-Economic Analysis of CO 2 Electrolysis Systems

Общий технико-экономический анализ систем электрохимического восстановления CO2
Wesley Luc, Matthew Jouny, Feng Jiao
2018-01-19

CO2 electrolysisFaradaic efficiencyelectrocatalytic performance targetsnet present value (NPV)techno-economic analysis
The electrochemical reduction of carbon dioxide (CO 2 ) has received significant attention in academic research, although the techno-economic prospects of the technology for the large-scale production of chemicals are unclear. In this work, we briefly reviewed the current state-of-the-art CO 2 reduction figures of merit, and performed an economic analysis to calculate the end-of-life net present value (NPV) of a generalized CO 2 electrolyzer system for the production of 100 tons/day of various CO 2 reduction products. Under current techno-economic conditions, carbon monoxide and formic acid were the only economically viable products with NPVs of $13.5 million and $39.4 million, respectively. However, higher-order alcohols, such as ethanol and n -propanol, could be highly promising under future conditions if reasonable electrocatalytic performance benchmarks are achieved (e.g., 300 mA/cm 2 and 0.5 V overpotential at 70% Faradaic efficiency). Herein, we established performance targets such that if these targets are achieved, electrochemical CO 2 reduction for fuels and chemicals production can become a profitable option as part of the growing renewable energy infrastructure.
1
Established specific performance targets indicating that achieving those benchmarks would make electrochemical CO2 reduction profitable for fuels and chemicals within renewable energy infrastructure.
2
Higher-order alcohols (ethanol, n-propanol) could become highly promising if future electrocatalytic benchmarks are met (e.g., 300 mA/cm2, 0.5 V overpotential, 70% Faradaic efficiency).
3
Techno-economic analysis computed end-of-life NPV for a generalized CO2 electrolyzer producing 100 tons/day of various products.
4
Under current conditions, only carbon monoxide (CO) and formic acid are economically viable, with NPVs of $13.5 million and $39.4 million respectively.

Generalized CO2 electrolyzer system for production of chemicals (100 tons/day scale)

Techno-economic performance and viability (end-of-life NPV, product-specific economic viability) and required electrocatalytic performance targets (current density, overpotential, Faradaic efficiency) for making CO2 electroreduction profitable for fuels and chemicals

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2018-01-19
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Wesley Luc
Matthew Jouny
Feng Jiao
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