光催化
选择性
光化学
烟气
催化作用
化学
产量(工程)
无机化学
化学工程
选择性催化还原
可见光谱
还原(数学)
降级(电信)
工作(物理)
氧化还原
作者
Jian Zhang,Junyi Wang,Zhuo Xiong,Yongchun Zhao,Junying Zhang,Jeffrey C.S. Wu
标识
DOI:10.1021/acssuschemeng.5c08650
摘要
Industrial flue gas is a major source of CO 2 emissions, but the effects of its contaminants on CO 2 photoreduction remain unclear. Here, we investigated the influence of SO 2 on the photocatalytic performance of CO 2 photoreduction using Pt/TiO 2 as a model photocatalyst. SO 2 enhanced the yield of CO 2 photoreduction within 2.5 h, accompanied by a selectivity change from 100% CH 4 to predominantly CO, followed by a gradual deactivation of the catalyst. Gaseous SO 2 hindered the proton supply for CH 4 generation by suppressing H 2 O adsorption. SO 2 was oxidized into SO 4 2–, which occupied the step sites of Pt NPs and formed a new Pt–O–SO 3 species, weakening the π-electron back-bonding in the Pt(5d)-Co(2π*) bonds and thus facilitating *CO desorption. Lastly, the excessive accumulation of SO 4 2– led to catalyst poisoning. This work sheds light on the role of SO 2 during the photoreduction of CO 2 and provides a theoretical foundation for the direct photocatalytic conversion of CO 2 from industrial flue gas.
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