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Electrochemical reactors for CO2 reduction: From acid media to gas phase

机译:减少CO2的电化学反应器:从酸性介质到气相

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An electrochemical reactor, with a membrane-electrode-assembly technology, has been developed for the electrochemical reduction of CO2 in gas phase. The reactor was carefully designed to prevent the strong corrosion by the high overpotentials required for addressing CO2 reduction. In addition, electrodes based on Fe and Pt supported on Vulcan XC-72R (the commercial carbon black often used for electrochemical applications) were used as cathode. These electrodes favor the CO2 confinement in the nanoporous structure of the carbon support, resulting in higher pressures at the electrocatalytic surface, and consequently, enhancing the performance. The behavior of the electrodes for CO2 reduction was studied in both acid media (0.5 M H2SO4) and in gas phase using the designed reactor in order to establish a correlation of the results. A higher current density was developed for the Pt based electrode due to a significant formation of H-2 by the water reduction, whereas the CO2 conversion could be favored on the Fe electrode, in both acid media and gas phase. (C) 2016 Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:已开发出具有膜电极组装技术的电化学反应器,用于电化学还原气相中的CO2。反应器经过精心设计,以防止因减少CO2所需要的高过电势而导致强烈腐蚀。此外,Vulcan XC-72R(常用于电化学应用的商业炭黑)上负载的基于Fe和Pt的电极被用作阴极。这些电极有利于将CO2限制在碳载体的纳米孔结构中,从而在电催化表面产生较高的压力,从而提高性能。使用设计的反应器在酸性介质(0.5 M H2SO4)和气相中研究了电极还原CO2的行为,以建立结果的相关性。由于水的还原会显着形成H-2,因此Pt基电极的电流密度更高,而在酸性介质和气相中,Fe电极上的CO2转化率可能更高。 (C)2016由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

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