Recovering carbon losses in CO2 electrolysis using a solid electrolyte reactor

被引:0
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作者
Jung Yoon ‘Timothy’ Kim
Peng Zhu
Feng-Yang Chen
Zhen-Yu Wu
David A. Cullen
Haotian Wang
机构
[1] Rice University,Department of Chemical and Biomolecular Engineering
[2] Center for Nanophase Materials Science,Department of Materials Science and NanoEngineering
[3] Oak Ridge National Laboratory,Department of Chemistry
[4] Rice University,undefined
[5] Rice University,undefined
来源
Nature Catalysis | 2022年 / 5卷
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摘要
The practical implementation of electrochemical CO2 reduction technology is greatly challenged by notable CO2 crossover to the anode side, where the crossed-over CO2 is mixed with O2, via interfacial carbonate formation in traditional CO2 electrolysers. Here we report a porous solid electrolyte reactor strategy to efficiently recover these carbon losses. By creating a permeable and ion-conducting sulfonated polymer electrolyte between cathode and anode as a buffer layer, the crossover carbonate can combine with protons generated from the anode to re-form CO2 gas for reuse without mixing with anodic O2. Using a silver nanowire catalyst for CO2 reduction to CO, we demonstrated up to 90% recovery of the crossover CO2 in an ultrahigh gas purity form (>99%), while delivering over 90% CO Faradaic efficiency under a 200 mA cm−2 current. A high continuous CO2 conversion efficiency of over 90% was achieved by recycling the recovered CO2 to the CO2 input stream.
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页码:288 / 299
页数:11
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