Raw data of the article 'Conversion of a CO-CO2 co-feed with a porous tubular copper catalyst at low potential’
收藏4TU.ResearchData2022-01-19 更新2026-04-23 收录
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The research behind this dataset revolves around the electrochemical conversion of CO<sub>2</sub> at ambient conditions, using a novel copper based tubular electrode. Main reaction of interest is the formation of CO from CO<sub>2</sub>. <br><br>This particular dataset involves the study of the effect of co-feeding CO and CO<sub>2</sub> on the CO<sub>2</sub> conversion rate of the tubular porous electrodes. Chronoamperometry experiments are performed at -1.1 V vs Ag/AgCl while purging the gaseous reactant through the porous catalyst wall. A Zirfon anion exchange membrane is used to separate the catholyte and anolyte (both 0.3 M KHCO<sub>3</sub>). A platinum on titanium mesh is used as counter electrode. <br><br>The dataset supplements to the next publication: ‘Conversion of a CO-CO<sub>2</sub> co-feed with a porous tubular copper catalyst at low potential’<br>
本数据集依托的研究围绕常温常压条件下的二氧化碳(CO₂)电化学转化展开,采用了一款新型铜基管状电极。本研究关注的核心反应为二氧化碳还原生成一氧化碳(CO)。
本数据集聚焦于探究一氧化碳(CO)与二氧化碳(CO₂)共进料对管状多孔电极二氧化碳转化率的影响。实验采用计时电流法(Chronoamperometry),设置相对于银/氯化银(Ag/AgCl)参比电极的-1.1 V工作电位,将气态反应物经多孔催化剂壁面吹扫通入反应体系。实验中使用Zirfon阴离子交换膜分隔阴极电解液与阳极电解液,二者均为0.3 M碳酸氢钾(KHCO₃)溶液;以钛网负载铂作为对电极。
本数据集为下述学术论文提供补充数据:《低电位下多孔管状铜催化剂用于CO-CO₂共进料转化》。
提供机构:
Mul, Guido
创建时间:
2022-01-19



