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Electrochemical study of Pb anodes for zinc electrowinning Industry

机译:锌电解工业中铅阳极的电化学研究

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The corrosion resistance and electrochemical behaviour of recovery (recovery anodes are made of remelted alloys) Pb, Pb-0.4Ag (wt-%) and Pb-0.1Ag-O07Ca (wt-%), anode alloys in acidic zinc sulphate electrolyte were investigated. Their electrocatalytic activity towards oxygen evolution reaction (OER) and corrosion resistance were evaluated using potentiodynamic polarisation and electrochemical impedance spectroscopy (EIS) methods. The EIS data were approved by Kramers-Kroning transformation (KKT). Also the corrosion resistance of virgin (virgin anodes are made of freshly mined ore which cast from more than 60 ton molten alloy) pure lead anode was compared with recovery pure lead anode by their Tafel diagrams in acidic zinc sulphate electrolyte. Microstructures of the anode alloys were observed using scanning electron microscopy. The results point to that anode Pb-0.4Ag (wt-%) alloy had the lowest corrosion current among the three examined anodes followed by Pb and Pb-0.1Ag-0.07Ca (wt-%), alloys. Also, corrosion resistance the virgin Pb anode is more than recovery one.
机译:在酸性硫酸锌电解质中研究了回收率(回收阳极由重熔合金制成)Pb,Pb-0.4Ag(wt%)和Pb-0.1Ag-O07Ca(wt%)的耐腐蚀性和电化学行为。 。使用电位动力学极化和电化学阻抗谱(EIS)方法评估了它们对氧释放反应(OER)和耐腐蚀性的电催化活性。 EIS数据已通过Kramers-Kroning转换(KKT)批准。还通过纯酸阳极在酸性硫酸锌电解液中的Tafel图将纯净的铅阳极(纯净的阳极由60吨以上的熔融合金铸造的新鲜矿石制成)与回收的纯铅阳极进行了比较。使用扫描电子显微镜观察阳极合金的微观结构。结果表明,阳极Pb-0.4Ag(wt-%)合金具有最低的腐蚀电流,这是在三个被检测阳极中,其次是Pb和Pb-0.1Ag-0.07Ca(wt-%)合金。同样,纯铅阳极的耐蚀性比回收率高。

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