Song Dewen, Zhang Shipeng, Zhou Minjun, Wang Mingwang, Zhu Ruirui, Ning Hui, Wu Mingbo
State Key Laboratory of Heavy Oil Processing, College of Chemical Engineering, College of New Energy, Institute of New Energy, China University of Petroleum, East China, Qingdao, 266580.
ChemSusChem. 2024 Jul 22;17(14):e202301719. doi: 10.1002/cssc.202301719. Epub 2024 Mar 19.
The electroreduction of CO to high-value products is a promising approach for achieving carbon neutrality. Among these products, formic acid stands out as having the most potential for industrialization due to its optimal economic value in terms of consumption and output. In recent years, the Faraday efficiency of formic acid from CO electroreduction has reached 90~100 %. However, this high selectivity cannot be maintained for extended periods under high currents to meet industrial requirements. This paper reviews excellent work from the perspective of catalyst stability, summarizing and discussing the performance of typical catalysts. Strategies for preparing stable and highly active catalysts are also briefly described. This review may offer a useful data reference and valuable guidance for the future design of long-stability catalysts.
将CO电还原为高价值产品是实现碳中和的一种很有前景的方法。在这些产品中,甲酸因其在消耗和产出方面具有最佳经济价值而在工业化方面最具潜力。近年来,CO电还原制甲酸的法拉第效率已达到90%~100%。然而,在高电流下,这种高选择性无法长时间维持以满足工业需求。本文从催化剂稳定性的角度综述了相关优秀工作,总结并讨论了典型催化剂的性能。还简要描述了制备稳定且高活性催化剂的策略。本综述可为未来长稳定性催化剂的设计提供有用的数据参考和有价值的指导。