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STUDY OF ANODIC SLIME FROM CHILEAN COPPER ELECTROWINNING PLANTS

机译:智利铜电缠绕植物阳极胶的研究

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摘要

The slime formation with several metallic impurities from acidic electrolytes of copper has been studied. On fresh Pb-Ca-Sn anode surface firstly the formation of PbSO_4 takes place, then, it is transformed in the conducting PbO_2, which covers the anode surface. It has been experimentally established the formation of a manganese dioxide double layer at the anode; this double layer was always composed of a thick external layer of non-adhering and easily removable scales, and of a thin internal layer, which adheres relatively well to the surface of the electrode. It was found that manganese dioxides present in the slime were of different nature: a non-adhering layer produced by electrolysis (ε-MnO_2) on the PbO_2 surface and a pure chemical precipitation in the solution (β-MnO_2). When iron is present in the electrolyte on this last layer of manganese, lead sulfate was found. In the case of arsenic and antimony in the electrolyte the slime generated was found to be lead sulfate and amorphous compounds of those ions. The lower slime generation in Chilean EW plants could be due to the lower contents of iron and manganese in the electrolytes. It was found that this slime formation rate not only is due to the electrolyte composition but also to the poor control of operational parameters at EW plants.
机译:已经研究了由铜的酸性电解质与几种金属杂质形成的煤泥。首先在新鲜的Pb-Ca-Sn阳极表面上形成PbSO_4,然后在导电的PbO_2中转化,PbSO_2覆盖阳极表面。已经通过实验确定了在阳极处形成二氧化锰双层。该双层总是由不粘附且易于去除的水垢的厚外层和较薄的内层组成,该内层相对较好地粘附在电极表面上。发现粘液中存在的二氧化锰具有不同的性质:通过电解在PbO_2表面上产生的非粘附层(ε-MnO_2)和在溶液中的纯化学沉淀(β-MnO_2)。当锰的最后一层电解质中存在铁时,会发现硫酸铅。在电解液中的砷和锑的情况下,发现产生的煤泥是硫酸铅和那些离子的无定形化合物。智利EW工厂的煤泥生成量较低可能是由于电解质中铁和锰的含量较低。已经发现,这种粘液的形成速率不仅是由于电解质的组成,而且还因为电子战工厂对操作参数的控制不良。

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