铜阳极泥定向脱除砷锑铋研究
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江西理工大学 材料冶金化学学部, 江西 赣州 341000

作者简介:

廖春发(1965—),男,博士,教授,主要从事稀有金属分离提取研究。

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TF811;TF803.2+7;X758

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国家自然科学基金项目资助(U1802251)


Study on arsenic, antimony, bismuth removal from copper anode slime
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    摘要:

    铜阳极泥是提取稀贵金属的重要原料,现有的工艺技术均不理想。本文采用盐酸、硫酸与氯化钠的不同组合浸出体系对铜阳极泥进行了浸出试验,结果表明:单一盐酸、硫酸、氯化钠为浸出剂时,Au、Ag、Se、Pb、As、Sb、Bi无法得到有效分离;当浸出剂为盐酸、硫酸、氯化钠的两两组合时,只有以盐酸-硫酸为浸出剂时,定向脱除砷锑铋的效果较好,但含酸太高,易造成设备腐蚀且后续处理成本增加;当浸出剂为盐酸-硫酸-氯化钠时,As、Sb、Bi进入酸浸液,Au、Ag、Pb、Se进入酸浸渣中,实现了铜阳极泥定向脱除砷锑铋的目的,且降低了浸出液的酸度。通过XRD、SEM-EDS分析盐酸-硫酸-氯化钠浸出铜阳极泥前后固相中物相的变化,结果表明:浸出前后Ag、Se主要以Ag2Se、AgCl形式存在,部分Se转变为硒酸盐;Pb主要以PbSO4形式存在。

    Abstract:

    Copper anode slime is an important raw material for extracting rare and precious metals, and the separation of impurities arsenic, antimony and bismuth has always been a research hotspot. In this paper, different combined leaching systems of hydrochloric acid, sulfuric acid and sodium chloride were used to carry out leaching tests on copper anode slime. The results showed that Au, Ag, Se, Pb, As, Sb and Bi could not be separated effectively when single hydrochloric acid, sulfuric acid and sodium chloride were used As leaching agents. When the leach agent is a combination of hydrochloric acid, sulfuric acid and sodium chloride, the directional removal of arsenic-antimony bismuth is better when hydrochloric-sulfuric acid is the leach agent, but the acid content is too high, which will easily cause equipment corrosion and increase the cost of subsequent treatment. When the leaching agent is hydrochloric acid, sulfuric acid and sodium chloride, As, Sb and Bi enter the acid leaching solution, and Au, Ag, Pb and Se enter the acid leaching residue, realizing the goal of directional removal of arsenic, antimony and bismuth from copper anode slime, and reducing the acidity of the leaching solution. By XRD and SEM-EDS, the changes of the solid phase before and after the copper anode slime leaching with hydrochloric acid, sulfuric acid and sodium chloride were analyzed. The results showed that Ag and Se existed in the form of Ag2Se and AgCl before and after the leaching, and part of Se was converted into selenate. Pb mainly exists in the form of PbSO4.

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廖春发,邹建柏,徐振鑫,等. 铜阳极泥定向脱除砷锑铋研究[J]. 中国有色冶金,2021, 50(3): 21-27.

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  • 收稿日期:2020-11-20
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  • 在线发布日期: 2025-12-24
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