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Cu2O-loaded gas diffusion electrodes for the continuous electrochemical reduction of CO2 to methanol

机译:负载Cu2O的气体扩散电极,用于将CO2连续电化学还原为甲醇

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Gas-diffusion electrodes are prepared with commercial Cu2O and Cu2O-ZnO mixtures deposited onto carbon papers and evaluated for the continuous CO2 gas phase electroreduction in a filter-press electrochemical cell. The process mainly produced methanol, as well as small quantities of ethanol and n-propanol. The analysis includes the evaluation of key variables with effect in the electroreduction process: current density (j=10-40 mA cm(-2)), electrolyte flow/area ratio (11)1=1-3 ml min-1 cm-2) and CO2 gas flow/area ratio (Q.g/A = 10-40 ml min(-1) cm(-2)), using a 0.5 M KHCO3 aqueous solution. The maximum CO2CO2 conversion efficiency to liquid-phase products was 54.8% and 31.4% for Cu2O and Cu2O/ZnO-based electrodes at an applied potential of-1.39 and-1.16 V vs. Ag/AgC1, respectively. Besides, the Cu2O/ZnO electrodes are expected to catalyze the CO2 electroreduction for over 20 h. These results may provide new insights into the application of gas diffusion electrodes to alleviate mass transfer limitations in electrochemical systems for the transformation of CO2 to alcohols. (C) 2015 Elsevier Inc. All rights reserved.
机译:气体扩散电极的制备方法是将商业化的Cu2O和Cu2O-ZnO混合物沉积在碳纸上,并在压滤式电化学池中评估连续CO2气相电还原反应。该工艺主要生产甲醇,以及少量的乙醇和正丙醇。分析包括评估在电还原过程中具有影响的关键变量:电流密度(j = 10-40 mA cm(-2)),电解液流量/面积比(11)1 = 1-3 ml min-1 cm- 2)和使用0.5 M KHCO3水溶液的CO2气体流量/面积比(Qg / A = 10-40 ml min(-1)cm(-2))。对于Cu2O和基于Cu2O / ZnO的电极,施加的电势分别为1.39和1.16 V(相对于Ag / AgC1),最大的CO2CO2转化为液相产物的效率分别为54.8%和31.4%。此外,Cu2O / ZnO电极有望在20小时内催化CO2的电还原。这些结果可能为气体扩散电极的应用提供新的见解,以减轻电化学系统中从CO2转化为醇的传质限制。 (C)2015 Elsevier Inc.保留所有权利。

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