首页> 外文期刊>International journal of hydrogen energy >Overvoltage reduction in membrane Bunsen reaction for hydrogen production by using a radiation-grafted cation exchange membrane and porous Au anode
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Overvoltage reduction in membrane Bunsen reaction for hydrogen production by using a radiation-grafted cation exchange membrane and porous Au anode

机译:通过使用辐射接枝阳离子交换膜和多孔Au阳极对氢气产生的过电压降低氢气产生的反应

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An electrochemical membrane Bunsen reaction using a cation exchange membrane (CEM) is a key to achieving iodine-sulfur (IS) thermochemical water splitting for the mass-production of hydrogen. In this study, we prepared a radiation-grafted CEM with a high ion exchange capacity (IEC) and a highly-porous Au-electroplated anode, and then used them for the membrane Bunsen reaction to reduce cell overvoltage. The high ionic content of our CEM led to low resistivity for proton transport, while the high porosity of the electrode led to a large effective surface area for anodic SO2 oxidation. The cell overvoltage for the membrane Bunsen reaction was significantly reduced to 0.21 V at 200 mA/cm(2), one-third of that achieved using a commercial CEM and non-porous anode. From the analysis of the current-voltage characteristics, the grafted CEM was demonstrated to play a dominant role in the overvoltage reduction compared to the porous Au anode. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用阳离子交换膜(CEM)的电化学膜Bunsen反应是实现碘 - 硫(IS)热化学水分裂的关键,用于氢的大规模生产。在这项研究中,我们制备了具有高离子交换能力(IEC)和高多孔Au-Electroplated阳极的辐射接枝CEM,然后用它们用于膜Bunsen反应以减少细胞过电压。我们的CEM的高离子含量导致质子传输的低电阻率,而电极的高孔隙率导致了用于阳极SO2氧化的大有效表面积。膜Bunsen反应的电池过电压明显减少至200mA / cm(2)的0.21V,其中三分之一使用商业CEM和无多孔阳极实现。根据电流电压特性的分析,与多孔Au阳极相比,嫁接的CEM在过电压降低中发挥显着作用。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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