Study on the influence characteristics of multi-working condition parameters on membrane electrode type CO2 electrolyzer

IF 1.3 4区 化学 Q4 ELECTROCHEMISTRY
Xianwen Zhang , Hao Peng , Feiyue Cao , Yaoyi Cao , Qingxin Liu , Chizhou Tang , Taotao Zhou
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引用次数: 0

Abstract

The electrochemical conversion of carbon dioxide (CO2) into basic chemicals or carbon-based fuels is a promising new strategy for carbon resource utilization. Within this domain, solid-electrolyte CO2 electrolyzer demonstrate significant potential for the continuous production of pure formic acid solutions. This study, leveraging a 4 cm2 visualization electrolyzer, explores the impact of three working condition parameters on performance: working voltage, gas flow rate, and the intermediate chamber water flow rate. It compares the variations in current density, formic acid concentration, and the distribution of liquid water on the cathode side under different working conditions. The results indicate that the working voltage, current density, and formic acid yield are all positively correlated; overly low gas flow rates can lead to CO2 deficiency and diminished electrolyzer performance; concentration control of the formic acid solution is effectively achieved by adjusting the intermediate chamber water flow rate; and during the electrolyzer reaction process, almost all of the liquid water is positioned at the bends downstream of the cathode flow channel.
膜电极式二氧化碳电解槽多工况参数影响特性研究
通过电化学方法将二氧化碳(CO2)转化为基本化学品或碳基燃料,是一种前景广阔的碳资源利用新策略。在这一领域,固体电解质二氧化碳电解槽在连续生产纯甲酸溶液方面展现出巨大潜力。本研究利用 4 cm2 可视化电解槽,探讨了三个工作条件参数对性能的影响:工作电压、气体流速和中间室水流量。研究比较了不同工作条件下电流密度、甲酸浓度和阴极侧液态水分布的变化。结果表明,工作电压、电流密度和甲酸产量均呈正相关;过低的气体流速会导致二氧化碳缺乏和电解槽性能下降;通过调节中间室水的流速可有效控制甲酸溶液的浓度;在电解槽反应过程中,几乎所有的液态水都位于阴极流道下游的弯道处。
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来源期刊
CiteScore
3.00
自引率
20.00%
发文量
714
审稿时长
2.6 months
期刊介绍: International Journal of Electrochemical Science is a peer-reviewed, open access journal that publishes original research articles, short communications as well as review articles in all areas of electrochemistry: Scope - Theoretical and Computational Electrochemistry - Processes on Electrodes - Electroanalytical Chemistry and Sensor Science - Corrosion - Electrochemical Energy Conversion and Storage - Electrochemical Engineering - Coatings - Electrochemical Synthesis - Bioelectrochemistry - Molecular Electrochemistry
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