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ADDITION OF COBALT TO LEAD ANODES USED FOR OXYGEN EVOLUTION-A LITERATURE REVIEW

机译:钴对铅用于氧演化的阳极的添加-文献综述

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A review of the literature dealing with the effect of cobalt on lead-based anodes for oxygen evolution during electrolysis of sulfuric acid solutions verifies that the presence of cobalt at the anode-electrolyte interface, either as constituent of the anode material or as ions in the electrolyte, catalyzes the evolution of oxygen and reduces the corrosion of the anodes and the contamination by lead of metal cathodes produced during electrowinning. However, due to harmful effects of cobalt ions on the cathodic reaction in some processes, these benefits are limited to the electrowinning of copper. Efforts to develop a way of introducing cobalt at the anode-electrolyte interface without interfering with the cathodic reactions are reviewed in this paper. The use of lead-cobalt alloy anodes has had limited success due to issues arising from the low solubility of cobalt in lead, segregation during casting of the alloys, and nonuniform distribution of cobalt which affects the integrity of the anodes. This has been overcome in part lately by inclusion of cobalt into only the surface layer of a lead or lead alloy substrate, by thermal treatment of a cobalt salt to form a catalytic cobalt oxide surface species, or by electrodeposition of composite lead-cobalt oxide anodes. The last approach in particular has been actively investigated by several groups, but to our knowledge it is yet to find application in the industry. The review also critically examines the likely reaction mechanisms involved.
机译:一篇有关硫酸对电解过程中钴在铅基阳极上析出氧的影响的文献的综述验证了,钴在阳极-电解质界面处的存在,既可以作为阳极材料的组成部分,也可以作为离子形式存在于阳极中。电解质,催化氧气的释放并减少阳极腐蚀以及电解沉积过程中产生的金属阴极的铅污染。然而,由于钴离子在某些过程中对阴极反应的有害影响,这些益处仅限于铜的电积。本文综述了开发在阳极-电解质界面引入钴而不干扰阴极反应的方法的努力。由于钴在铅中的溶解度低,合金铸造过程中的偏析以及影响阳极完整性的钴分布不均,导致使用铅钴合金阳极的成功有限。最近已通过仅将钴仅包含在铅或铅合金基材的表面层中,通过热处理钴盐以形成催化氧化钴表面物种或通过电沉积复合式铅-钴氧化物阳极来部分克服了这一问题。特别是最后一种方法已被多个小组积极研究,但据我们所知,尚未在业界中找到应用。审查还严格审查了可能涉及的反应机制。

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