Toward economical application of carbon capture and utilization technology with near-zero carbon emission.

Langie, Kezia Megagita Gerby; Tak, Kyungjae; Kim, Changsoo; Lee, Hee Won; Park, Kwangho; Kim, Dongjin; Jung, Wonsang; Lee, Chan Woo et al. · Nat Commun · 2022

basic_science · Level V

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Abstract

Carbon capture and utilization technology has been studied for its practical ability to reduce CO<sub>2</sub> emissions and enable economical chemical production. The main challenge of this technology is that a large amount of thermal energy must be provided to supply high-purity CO<sub>2</sub> and purify the product. Herein, we propose a new concept called reaction swing absorption, which produces synthesis gas (syngas) with net-zero CO<sub>2</sub> emission through direct electrochemical CO<sub>2</sub> reduction in a newly proposed amine solution, triethylamine. Experimental investigations show high CO<sub>2</sub> absorption rates (>84%) of triethylamine from low CO<sub>2</sub> concentrated flue gas. In addition, the CO Faradaic efficiency in a triethylamine supplied membrane electrode assembly electrolyzer is approximately 30% (@-200 mA cm<sup>-2</sup>), twice higher than those in conventional alkanolamine solvents. Based on the experimental results and rigorous process modeling, we reveal that reaction swing absorption produces high pressure syngas at a reasonable cost with negligible CO<sub>2</sub> emissions. This system provides a fundamental solution for the CO<sub>2</sub> crossover and low system stability of electrochemical CO<sub>2</sub> reduction.