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基于砷-碱高效分离的铜冶炼烟尘中砷的碱循环浸出

Alkali circulating leaching of arsenic from copper smelter dust based on arsenic-alkali efficient separation.

作者信息

Tian Jia, Zhang Xingfei, Wang Yufeng, Han Haisheng, Sun Wei, Yue Tong, Sun Jingtao

机构信息

School of Minerals Processing and Bioengineering, Central South University, Changsha, Hunan, 410083, China.

School of Minerals Processing and Bioengineering, Central South University, Changsha, Hunan, 410083, China.

出版信息

J Environ Manage. 2021 Jun 1;287:112348. doi: 10.1016/j.jenvman.2021.112348. Epub 2021 Mar 15.

Abstract

Leaching arsenic from solid waste selectively and removing arsenic from alkaline leachate efficiently are two key points in alkali treatment of copper smelter dust, and the latter is challenging. In this study, composite salt precipitation of magnesium ammonium arsenate (NHMgAsO·6HO), similar to magnesium ammonium phosphate (NHMgPO·6HO), was proposed to solve the difficult problem of separation arsenic from alkali. Based on the thermodynamic analysis, the selective leaching of arsenic from copper smelting dust was carried out in the NaOH-NaS system. In the alkali leaching system, more than 80% arsenic can be leached out from the dust with the diffusion-controlled type in the Avrami model, while the leaching rates of valuable metals are less than 0.5%. For the strong alkaline leachate containing arsenic obtained by alkali leaching, the selective removal of arsenic was achieved by adding magnesium salt and ammonium salt. With the change of the amount of magnesium salt and ammonium salt, the sedimentation performance and composition of the arsenic slag changed accordingly. At the mole ratio of NH: As = 8:1 and Mg: As = 1.5:1, 96.38% of arsenic was removed, and the content of arsenic in the arsenic slag composed of MgNHAsO·6HO reached 28.96%. On this basis, the circulating alkali leaching of copper smelter dust based on arsenic-alkali separation was successfully carried out. The whole scheme is not only economical and safe, but also achieves the reuse of wastewater without secondary pollution, which provides an alternative solution for the treatment of arsenic containing solid waste.

摘要

从固体废物中选择性浸出砷以及高效去除碱性浸出液中的砷是铜冶炼烟尘碱处理的两个关键点,而后者具有挑战性。本研究提出类似于磷酸铵镁(NH₄MgPO₄·6H₂O)的砷酸铵镁(NH₄MgAsO₄·6H₂O)复合盐沉淀法来解决从碱中分离砷的难题。基于热力学分析,在NaOH-Na₂S体系中对铜冶炼烟尘进行了砷的选择性浸出。在碱浸出体系中,采用阿弗拉米模型中扩散控制型,烟尘中80%以上的砷可被浸出,而有价金属的浸出率小于0.5%。对于碱浸出得到的含砷强碱性浸出液,通过添加镁盐和铵盐实现了砷的选择性去除。随着镁盐和铵盐用量的变化,砷渣的沉降性能和组成相应改变。在NH₄:As摩尔比为8:1、Mg:As摩尔比为1.5:1时,砷的去除率达到96.38%,由砷酸铵镁(NH₄MgAsO₄·6H₂O)组成的砷渣中砷含量达到28.96%。在此基础上,成功实现了基于砷碱分离的铜冶炼烟尘循环碱浸出。整个方案不仅经济安全,还实现了废水回用且无二次污染,为含砷固体废物的处理提供了一种替代解决方案。

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