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Cobalt-chrome activation of the nickel electrodes for the HER in alkaline water electrolysis - Part Ⅱ

机译:碱性水电解中用于HER的镍电极的钴铬活化-第二部分

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摘要

Catalyst based on cobalt and chrome was investigated as cathode material for hydrogen production process via water electrolysis. Electrocatalytic efficiency of proposed system was studied using quasi-potentiostatic, galvanostatic and impedance spectroscopy techniques of the catalyst obtained by in situ electrodeposition in an alkaline, 6 M KOH, elec-trolyser. In accordance to our previous studies, synergetic effect of cobalt complex and chrome salt is observed, with its maximum at high temperatures and for high current densities (industrial conditions). The Tafel slopes were found to be around 120 mV and exchange current densities in the range of 10~(-3) mA cm~(-2) up to 10~(-2) mA cm~(-2). Results are presented to show the Tafel slopes, the exchange current densities, the apparent energy of activation and the apparent electrochemical surface of in situ formed Co-Cr catalyst. This study shows that catalytic performance of Co-Cr was achieved not only from the increase of the real surface area of electrodes, but also from the true catalytic effect.
机译:研究了基于钴和铬的催化剂作为通过水电解制氢过程的阴极材料。使用准恒电位,恒电流和阻抗光谱技术研究了在6M KOH碱性电解器中原位电沉积制得的催化剂的电催化效率。根据我们先前的研究,观察到钴配合物和铬盐的协同作用,在高温和高电流密度(工业条件下)下达到最大。 Tafel斜率约为120 mV,交换电流密度范围为10〜(-3)mA cm〜(-2)至10〜(-2)mA cm〜(-2)。结果显示了原位形成的Co-Cr催化剂的Tafel斜率,交换电流密度,表观活化能和表观电化学表面。这项研究表明,Co-Cr的催化性能不仅是通过电极实际表面积的增加而获得的,而且是通过真正的催化作用而获得的。

著录项

  • 来源
    《International journal of hydrogen energy》 |2013年第4期|1758-1764|共7页
  • 作者单位

    University of Belgrade, Vinca Institute of Nuclear Sciences, Department of Physical Chemistry, 11001 Belgrade, POB 522, Serbia;

    University of Belgrade, Vinca Institute of Nuclear Sciences, Department of Physical Chemistry, 11001 Belgrade, POB 522, Serbia;

    University of Belgrade, Vinca Institute of Nuclear Sciences, Department of Physical Chemistry, 11001 Belgrade, POB 522, Serbia;

    University of Belgrade, Vinca Institute of Nuclear Sciences, Department of Physical Chemistry, 11001 Belgrade, POB 522, Serbia;

    University of Belgrade, Vinca Institute of Nuclear Sciences, Department of Physical Chemistry, 11001 Belgrade, POB 522, Serbia;

    University of Belgrade, Vinca Institute of Nuclear Sciences, Department of Physical Chemistry, 11001 Belgrade, POB 522, Serbia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electrolysis; hydrogen; catalysis; ionic activators; energy consumption;

    机译:电解;氢气;催化;离子活化剂;能耗;
  • 入库时间 2022-08-18 00:27:38

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