A direct coupled electrochemical system for capture and conversion of CO<sub>2</sub> from oceanwater.

Digdaya, Ibadillah A; Sullivan, Ian; Lin, Meng; Han, Lihao; Cheng, Wen-Hui; Atwater, Harry A; Xiang, Chengxiang · Nat Commun · 2020

basic_science · Level V

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Abstract

Capture and conversion of CO<sub>2</sub> from oceanwater can lead to net-negative emissions and can provide carbon source for synthetic fuels and chemical feedstocks at the gigaton per year scale. Here, we report a direct coupled, proof-of-concept electrochemical system that uses a bipolar membrane electrodialysis (BPMED) cell and a vapor-fed CO<sub>2</sub> reduction (CO<sub>2</sub>R) cell to capture and convert CO<sub>2</sub> from oceanwater. The BPMED cell replaces the commonly used water-splitting reaction with one-electron, reversible redox couples at the electrodes and demonstrates the ability to capture CO<sub>2</sub> at an electrochemical energy consumption of 155.4 kJ mol<sup>-1</sup> or 0.98 kWh kg<sup>-1</sup> of CO<sub>2</sub> and a CO<sub>2</sub> capture efficiency of 71%. The direct coupled, vapor-fed CO<sub>2</sub>R cell yields a total Faradaic efficiency of up to 95% for electrochemical CO<sub>2</sub> reduction to CO. The proof-of-concept system provides a unique technological pathway for CO<sub>2</sub> capture and conversion from oceanwater with only electrochemical processes.