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Effect of Cobalt and Iron Concentration on the Potential for Oxygen Evolution from Pb-Ca-Sn Anodes in Synthetic Copper Electrowinning Electrolytes

机译:钴和铁浓度对合成铜电积电解质中Pb-Ca-Sn阳极释放氧气的潜力的影响

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It is well known that the addition of cobalt to copper sulfate-sulfuric acid electrolytes decreases the overpotential for oxygen evolution and decreases the rate of corrosion of Pb-Ca-Sn anodes. This effect, however, has not been adequately quantified in the presence of iron and manganese in this type of electrolyte. This work provides quantifiable data on the effect of cobalt concentration in the range of 0-0.6 g/L in synthetic electrowinning electrolytes with and without the presence of iron. The effect of cobalt on anode potential was determined using 2 and 24 h chronopotentiometry experiments. As expected, Pb-Ca-Sn potentials increased with decreasing cobalt concentration over the range of 0-0.6 g/L Co with and without the presence of Fe. Two regression models were developed to allow plant operations the ability to predict anode potentials as a function of cobalt concentration with or without iron in the electrolyte.
机译:众所周知,将钴添加到硫酸铜-硫酸电解液中可减少氧释放的过电势并降低Pb-Ca-Sn阳极的腐蚀速率。然而,在这种类型的电解质中,在铁和锰的存在下,这种作用还没有被充分量化。这项工作提供了在有铁和无铁的情况下,在合成电积电解质中钴浓度在0-0.6 g / L范围内的影响的可量化数据。钴对阳极电位的影响使用2和24小时计时电位法实验确定。如所预期的,在有和没有铁存在的情况下,在0-0.6 g / L Co范围内,随着钴浓度的降低,Pb-Ca-Sn势也随之增加。开发了两个回归模型,以使工厂运营部门能够根据电解质中有无铁而预测阳极电位随钴浓度的变化。

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