利用电生过程从硫代硫酸盐溶液中回收金离子

IF 6.9 2区 环境科学与生态学 Q1 ENGINEERING, CHEMICAL
Qike Zhang, Yanhe Nie, Qiang Wang, Xiaonan Feng
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引用次数: 0

摘要

从硫代硫酸盐溶液中回收金离子的传统锌粉固结法存在活性金属消耗量大、表面钝化和铜离子共沉积等缺点。解决这些问题的关键在于为 Au(S2O3)23- 的还原提供必要的电子,同时避免锌粉与浸出液直接接触。本研究开发了一种新型发电装置,其阳极和阴极之间采用离子交换膜隔开,用于从硫代硫酸盐溶液中回收金离子。锌电极的氧化反应发生在阳极室,而金离子的还原反应则发生在阴极室的铂电极上。金回收的最佳实验条件被确定为使用阳离子交换膜,阳极溶液为 0.08 M ZnSO4,pH = 6,阴极溶液为 0.10 M Na2S2O3、5 mM CuSO4、0.5 M NH3-H2O,pH = 10,初始金浓度为 10 mg/L。金的回收率为 99.59%。与金回收率相近的锌粉固结法相比,电生工艺减少了 67% 的锌消耗,并防止了铜、氧和硫在锌表面造成的钝化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recovery of gold ions from thiosulfate solution using an electrogenerative process
Traditional zinc powder cementation method for recovering gold ions from thiosulfate solution has the disadvantages such as high consumption of active metal, surface passivation, and co-deposition of copper ions. The key to solving these issues is providing the necessary electrons for the reduction of Au(S2O3)23- while avoiding direct contact between zinc powder and the leaching solution. In this study, a novel electrogenerative device with ion exchange membranes separating the anode and cathode is developed for the recovery of gold ions from thiosulfate solution. The oxidation reaction of zinc electrode occurs in the anode chamber, while the reduction reaction of gold ions occurs on a platinum electrode in the cathode chamber. The optimal experimental conditions for the gold recovery are determined to be using a cation exchange membrane, with the anode solution of 0.08 M ZnSO4, pH = 6, and the cathode solution of 0.10 M Na2S2O3, 5 mM CuSO4, 0.5 M NH3·H2O, pH = 10, with an initial gold concentration of 10 mg/L. It obtains the gold recovery of 99.59 %. Compared the zinc powder cementation method with the similar gold recovery, the electrogenerative process reduces zinc consumption by 67 % and prevents the passivation on the zinc surface caused by copper, oxygen, and sulfur.
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来源期刊
Process Safety and Environmental Protection
Process Safety and Environmental Protection 环境科学-工程:化工
CiteScore
11.40
自引率
15.40%
发文量
929
审稿时长
8.0 months
期刊介绍: The Process Safety and Environmental Protection (PSEP) journal is a leading international publication that focuses on the publication of high-quality, original research papers in the field of engineering, specifically those related to the safety of industrial processes and environmental protection. The journal encourages submissions that present new developments in safety and environmental aspects, particularly those that show how research findings can be applied in process engineering design and practice. PSEP is particularly interested in research that brings fresh perspectives to established engineering principles, identifies unsolved problems, or suggests directions for future research. The journal also values contributions that push the boundaries of traditional engineering and welcomes multidisciplinary papers. PSEP's articles are abstracted and indexed by a range of databases and services, which helps to ensure that the journal's research is accessible and recognized in the academic and professional communities. These databases include ANTE, Chemical Abstracts, Chemical Hazards in Industry, Current Contents, Elsevier Engineering Information database, Pascal Francis, Web of Science, Scopus, Engineering Information Database EnCompass LIT (Elsevier), and INSPEC. This wide coverage facilitates the dissemination of the journal's content to a global audience interested in process safety and environmental engineering.
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