Lead-silver anode behavior for zinc electrowinning in sulfuric acid solution

Author:

Zhang Wei12,Haskouri Sanae2,Houlachi Georges3,Ghali Edward2

Affiliation:

1. School of Metallurgical Engineering, Hunan University of Technology, Zhuzhou, 412007 China

2. Department of Mining, Metallurgical and Materials Engineering, Laval University, Quebec, QC G1K 7P4, Canada

3. Hydro-Québec Research Institute, Shawinigan, QC G9N 7N5, Canada

Abstract

AbstractIn recent years, a renewed interest in studying the electrochemical corrosion behavior of lead anodes during zinc electrowinning is probably due to the particularly high sulfuric acid concentrations in zinc electrolyte where lead alloy anodes have high cell voltage and high corrosion rate of lead. The high corrosion rate of lead alloy resulted in Pb contamination on zinc deposit. In zinc electrometallurgy, the electrolyte from a zinc-rich ore contains a significant amount of Mn2+. Mn2+ in the zinc electrolyte results in forming an oxide film on lead anodes during electrolysis. Pb-0.7% Ag anode is generally used in the zinc industry. To improve the technical performance and decrease product cost, other anodes, such as Pb-Ca or Pb-Ag-Ca or Pb-Ag-Ti or Pb-Ag-Se alloys were tested. Till now, none of them has succeeded in the substitution of Pb-Ag anodes in the zinc electrowinning. As an alloying element, silver in small quantities is considered because of the benefits that generates on the anode during electrolysis. During zinc electrolysis, lead dissolution into the zinc electrolyte can be harmful to the quality of zinc deposit. However, the lead silver alloy anode can decrease the lead content in the zinc deposit by pre-treated methods such as blasting and preconditioning.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science,General Chemical Engineering,General Chemistry

Reference172 articles.

1. Influence of manganese (II) ions on the anodic oxidation of methanol;Electrochim Acta,1972

2. Influence of impurities in the electrolyte on zinc deposition;Miner Met Mater Soc,1995

3. Development and application of the preconditioned alloyed lead anode for zinc electrowinning. I. Theoretical basis of the preconditioning process;Hem Ind,1987

4. The performance of Pb-Ag anode in 2 Mn(II) – containing sulphuric acid electrolyte solutions.;Hydrometallurgy,2015

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