A Perspective on Electrochemical Point Source Utilization of CO<sub>2</sub> and Other Flue Gas Components to Value Added Chemicals.

Mondal, Soumi; Peter, Sebastian C · Adv Mater · 2024

basic_science · Level V

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Abstract

Electrochemical CO<sub>2</sub> reduction reaction (eCO<sub>2</sub>RR) has been explored extensively for mitigation of noxious CO<sub>2</sub> gas generating C<sub>1</sub> and C<sub>2+</sub> hydrocarbons and oxygenates as value-added fuels and chemicals with remarkable selectivity. The source of CO<sub>2</sub> being a pure CO<sub>2</sub> feed, it does not fully satisfy the real-time digestion of industrial exhausts. Besides the detrimental effect of noxious gas mixture leading to global warming, there is a huge capital investment in purifying the flue gas mixtures from industries. The presence of other impurity gases affects the eCO<sub>2</sub>RR mechanism and its activity and selectivity toward C<sub>2+</sub> products dwindle drastically. Impurities like NO<sub>x</sub>, SO<sub>x</sub>, O<sub>2</sub>, N<sub>2</sub>, and halide ions present in flue gas mixture reduce the conversion and selectivity of eCO<sub>2</sub>RR significantly. Instead of wiping out these impurities via separation processes, new strategies from material chemistry and electrochemistry can open new avenues for turning foes to friends! In this perspective, the co-electroreduction will vividly discussed and supporting role of different heteroatom-containing impurity gases with CO<sub>2</sub>, generating highly stable C─N, C─S, C─X bonds, and highlight the existing limitations and providing probable solutions for attaining further success in this field and translating this to industrial exhaust streams.