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Electrodeposition of lead–cobalt composite coatings electrocatalytic for oxygen evolution and the properties of composite coated anodes for copper electrowinning

机译:电沉积可析出氧的铅-钴复合涂层的电沉积以及用于铜电解沉积的复合涂层阳极的性能

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摘要

Metal-matrix composite coatings of lead–cobalt (Pb–Co) and lead–cobalt oxide (Pb–Co3O4) were electrodeposited onto the surface of a conventional PbCaSn anode in an effort to develop an improved anode for use in base metal electrowinning. The developed coated anodes were examined in terms of their electrochemical and physical stability over several days of polarisation for the evolution of oxygen under typical copper electrowinning conditions. Results from scanning electron microscopy have shown that fresh Pb–Co and Pb–Co3O4 composite coated anodes have rougher surface than conventional (uncoated) PbCaSn anodes but the apparent differences in surface area become insignificant after several days of polarisation under typical copper electrowinning conditions. The Tafel slope on the Pb–Co anode was 92 mV dec− 1 and on the Pb–Co3O4 it was 90 mV dec− 1, which is significantly less than the 122 mV dec− 1 measured on the conventional PbCaSn anodes. The composite anodes exhibited consistently lower oxygen evolution potentials than the conventional type and the potential remained relatively stable throughout the polarisation period. The reduction in the operating anode potential can be attributed to the presence of cobalt in the surface layer while the decrease in the Tafel slope shows that this reduction can be related to a change in the mechanism of the oxygen evolution reaction. Corrosion rates estimated from 16 h tests showed that the composite coated anodes are more stable than the conventional type during short periods of operation. It was also observed that for the Pb–Co coated anode, both the rate of corrosion and the overpotential for the oxygen evolution reaction can be further reduced by the addition of organic additives such as thiourea.
机译:铅-钴(Pb-Co)和氧化铅-钴氧化物(Pb-Co3O4)的金属基复合涂层被电沉积到常规PbCaSn阳极的表面上,以努力开发一种用于贱金属电积的改进阳极。对于在典型的铜电解沉积条件下放出氧气,在几天的极化过程中检查了发达的涂层阳极的电化学和物理稳定性。扫描电子显微镜的结果表明,新鲜的Pb-Co和Pb-Co3O4复合涂层阳极比常规的(未涂层)PbCaSn阳极具有更粗糙的表面,但是在典型的铜电解沉积条件下极化几天后,表面积的表观差异变得微不足道。 Pb-Co阳极上的Tafel斜率为92 mV dec-1,而Pb-Co3O4上的Tafel斜率为90 mV dec-1,这比常规PbCaSn阳极上测得的122 mV dec-1小得多。复合阳极表现出比常规类型一致的更低的析氧电势,并且该电势在整个极化期间保持相对稳定。工作阳极电势的降低可以归因于表面层中钴的存在,而塔菲尔斜率的降低表明这种降低可能与氧释放反应机理的改变有关。根据16小时试验估算的腐蚀速率表明,复合涂层阳极在短时间运行期间比传统类型阳极更稳定。还观察到,对于Pb-Co涂层阳极,通过添加有机添加剂(例如硫脲),可以进一步降低腐蚀速率和放氧反应的过电位。

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