Zeng Yanliang, Liao Chunfa, Liu Fupeng, Zhou Xun
Faculty of Metallurgy and Chemical Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China.
ACS Omega. 2023 Mar 10;8(11):10022-10029. doi: 10.1021/acsomega.2c07251. eCollection 2023 Mar 21.
Copper anode slime is the main raw material for the extraction of rare and precious metals. However, the recovery of rare and precious metals still faces great challenges due to the variety of impurities and the complex occurrence phase. In view of this, this research focuses on the occurrence mineral phases of arsenic, antimony, and bismuth in copper anode slime, and the process consisting of chloride leaching and selective precipitation of arsenic and bismuth is proposed. The results show that in copper anode slime, As mainly exists in the form of arsenate, while Sb and Bi exist in the form of oxides. The arsenate and oxides of Sb and Bi can be effectively leached by using the compound leaching process in the chloride system. The leaching efficiencies of As, Sb, Bi, and Cu can reach 92.72, 99.98, 89.13, and 90.31%, respectively, using a HSO concentration of 4 mol/L and a NaCl concentration of 120 g/L with a liquid-solid ratio of 10:1 at 70 °C for 2 h. After compound leaching, more than 98% of Sb and Bi can be separated by stepwise selective precipitation in the form of SbOCl and BiOCl by controlling the H concentration at 0.8 g/L and 0.2 g/L, respectively. After separation of Sb and Bi, the As-containing solution can be further treated by mature arsenic solidification technology. The copper-containing solution for removing arsenic, antimony, and bismuth can be returned to the electrolysis process for copper recovery. The proposed process realizes the effectively and environmentally friendly separation of As, Sb, Bi, and Cu from copper anode slime.
铜阳极泥是提取稀贵金属的主要原料。然而,由于杂质种类繁多且赋存相复杂,稀贵金属的回收仍面临巨大挑战。鉴于此,本研究聚焦于铜阳极泥中砷、锑、铋的赋存矿物相,并提出了氯化浸出及砷铋选择性沉淀的工艺。结果表明,在铜阳极泥中,砷主要以砷酸盐形式存在,而锑和铋以氧化物形式存在。在氯化体系中采用复合浸出工艺可有效浸出锑和铋的砷酸盐及氧化物。在70℃、液固比为10:1、硫酸浓度为4mol/L、氯化钠浓度为120g/L的条件下浸出2h,砷、锑、铋、铜的浸出率分别可达92.72%、99.98%、89.13%和90.31%。复合浸出后,通过分别控制氢离子浓度为0.8g/L和0.2g/L,以SbOCl和BiOCl形式分步选择性沉淀,可分离出98%以上的锑和铋。分离出锑和铋后,含砷溶液可采用成熟的固化技术进一步处理。脱除砷、锑、铋后的含铜溶液可返回电解工序回收铜。所提出的工艺实现了从铜阳极泥中有效且环保地分离砷、锑、铋和铜。