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An alkaline water electrolyzer with nickel electrodes enables efficient high current density operation

机译:带有镍电极的碱性水电解槽可实现高电流密度高效运行

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Low-temperature industrial water electrolysis is typically conducted using either liquid alkaline electrolytes or acidic polymer electrolyte membranes (PEMs). The latter approach is considered to be more efficient but also more expensive as it requires Pt and Ir based catalysts. This study reports on an alkaline water electrolyzer with Ni electrodes that operates at a current density of 2 A/cm(2) with a cell voltage of 1.85 V, which provides a comparable voltage-current characteristic to the state-of-the-art PEM water electrolyzers. Thin Ni mesh electrodes with surface areas that are thousand times higher than the geometric area were manufactured by an easily scalable and cheap process, i.e. metallurgical hot dip galvanization with subsequent de-alloying. With a thin porous polymer of approximately 140 mu m as the diaphragm a low cell resistance of 0.11 Omega cm(-2) was obtained. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:低温工业用水电解通常使用液态碱性电解质或酸性聚合物电解质膜(PEM)进行。后一种方法被认为更有效,但也更昂贵,因为它需要基于Pt和Ir的催化剂。这项研究报告了一种带有Ni电极的碱性水电解槽,该电解槽的电流密度为2 A / cm(2),电池电压为1.85 V,可提供与最新技术相当的电压-电流特性PEM水电解槽。表面积比几何面积大千倍的薄镍网状电极是通过易于扩展和廉价的工艺制造的,即冶金热浸镀锌和随后的脱合金工艺。用大约140微米的薄多孔聚合物作为隔膜,可以获得0.11Ωcm(-2)的低电池电阻。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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