烟气
法拉第效率
格式化
电解
电化学
杂质
工艺工程
天然气
化学
化学工程
材料科学
无机化学
废物管理
催化作用
电极
有机化学
电解质
工程类
物理化学
作者
Sam Van Daele,Lieven Hintjens,Saskia Hoekx,Barbara Bohlen,Sander Neukermans,Nick Daems,Jonas Hereijgers,Tom Breugelmans
标识
DOI:10.1016/j.apcatb.2023.123345
摘要
The electrochemical CO2 reduction offers a promising solution to convert waste CO2 into valuable products like CO and formate. However, CO2 capture and purification remains an energy intensive process and therefore the direct usage of industrially available waste CO2 streams containing SO2, NO and O2 impurities becomes more interesting. This work demonstrates an efficient (Faradaic efficiency > 90%) and stable performance over 20 hours with 200 ppm SO2 or NO in the feed gas stream. However, the addition of 1% O2 to the CO2 feed causes a significant drop in Faradaic efficiency to C-products due to the competitive oxygen reduction reaction. A potential mitigation strategy is to operate at higher total current density to firstly reduce most O2 and achieve sufficient product output from CO2 reduction. These results aid in understanding the impact of flue gas impurities during CO2 electrolysis which is crucial for potentially bypassing the CO2 purification step.
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