Direct Electrochemical Conversion of CO<sub>2</sub> from Industrial Flue Gases
Xiaojuan Wen, Dunfeng Gao, Guoxiong Wang
Abstract
Abstract Electrochemical CO 2 conversion to high‐value chemicals and fuels has been extensively investigated as a promising carbon‐neutrality technology. To date, most studies are generally performed with pure or highly concentrated CO 2 feeds, however, the composition of industrial flue gases is very complex, with a low CO 2 concentration and impurities like O 2 , CO, NO x , and SO x . Direct utilization of industrial flue gases can bypass the capture and purification steps, yet it suffers from multiple challenges. In this Concept article, we discuss scientific challenges and innovation strategies towards direct electrochemical conversion of CO 2 from industrial flue gases. Selected examples on rationally designing catalytic materials and electrode structures for promoting electrochemical reduction of CO 2 in the presence of N 2 and impurity gases are highlighted. We end up the article with perspectives on the research opportunities and future directions in this emerging yet practical field.