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Production of methanol from CO2 electroreduction at Cu2O and Cu2O/ZnO-based electrodes in aqueous solution

机译:在水溶液中以Cu2O和基于Cu2O / ZnO的电极通过CO2电解还原生产甲醇

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In this study, we examine the performance of Cu2O and Cu2O/ZnO surfaces in a filter-press electro-chemical cell for the continuous electroreduction of CO2 into methanol. The electrodes are prepared by airbrushing the metal particles onto a porous carbon paper and then are electrochemically characterized by cyclic voltammetry analyses. Particular emphasis is placed on evaluating and comparing the methanol production and Faradaic efficiencies at different loadings of Cu2O particles (0.5, 1 and 1.8 mg cm(-2)), Cu2O/ZnO weight ratios (1:0.5, 1:1 and 1:2) and electrolyte flow rates (1, 2 and 3 ml min(-1) cm(-2)). The electrodes including ZnO in their catalytic surface were stable after 5 h, in contrast with Cu2O-deposited carbon papers that present strong deactivation with time. The maximum methanol formation rate and Faradaic efficiency for Cu2O/ZnO (1:1)-based electrodes, at an applied potential of -1.3Vvs. Ag/AgCI, were r=3.17 x 10(-5) mol m(-2) s(-1) and FE = 17.7%, respectively. Consequently, the use of Cu2O-ZnO mixtures may be of application for the continuous electrochemical formation of methanol, although further research is still required in order to develop highly active, selective and stable catalysts the electroreduction of CO2 to methanol. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们检查了压滤式电化学电池中将CO2连续电还原为甲醇的Cu2O和Cu2O / ZnO表面的性能。通过将金属颗粒喷到多孔碳纸上来制备电极,然后通过循环伏安法进行电化学表征。特别强调评估和比较不同负载Cu2O颗粒(0.5、1和1.8 mg cm(-2)),Cu2O / ZnO重量比(1:0.5、1:1和1时)的甲醇生产和法拉第效率2)和电解液流速(1、2和3 ml min(-1)cm(-2))。与沉积时间长后会出现强烈失活的Cu2O沉积碳纸相反,在催化表面上包含ZnO的电极在5 h后是稳定的。在-1.3Vvs的施加电势下,基于Cu2O / ZnO(1:1)的电极的最大甲醇形成速率和法拉第效率。 Ag / AgCl分别为r = 3.17 x 10(-5)mol m(-2)s(-1)和FE = 17.7%。因此,使用Cu2O-ZnO混合物可用于甲醇的连续电化学形成,尽管仍需要进一步的研究以开发高活性,选择性和稳定的催化剂,将CO2电还原为甲醇。 (C)2015 Elsevier B.V.保留所有权利。

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