Promising methods for hydrometallurgical processing of copper slag

IF 0.8 Q4 METALLURGY & METALLURGICAL ENGINEERING Kompleksnoe Ispolzovanie Mineralnogo Syra Pub Date : 2022-05-23 DOI:10.31643/2022/6445.39
D. Kurmangaliyev, S. Abdulina, S. Mamyachenkov
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Abstract

Metals are important in many modern industries. Due to the depletion of their natural resource base, it is necessary to adapt, which means developing new and optimizing existing methods of extraction of valuable components from ore materials. Only comprehensive processing of copper metallurgical slags will solve the problem of resource recovery and the creation of low-waste technology, which has great economic, environmental, and social importance. Hydrometallurgical technologies take into account the specific conditions of the system and the physical and chemical properties of metals when developing and selecting the method of extraction. This article provides a review of the current state and prospects of development technologies used for base metal extraction by leaching with the use of inorganic acids and environmentally safe reagents, the methods are conditionally divided into two groups. The listed studies have made a significant contribution to solving the problem of processing metallurgical slags, however, none of the technologies has gone beyond the scope of laboratory and semi-industrial tests. Noted a tendency to reduce the concentrations of leaching agents by certain pre-treatment of raw material, as well as the transition to ubiquitously use "green technologies": such as bioleaching and organic acid leaching. Directions are suggested to solve the problem of rational use of raw materials and increase the sustainability of the future material cycle.
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湿法冶金处理铜渣的新方法
金属在许多现代工业中都很重要。由于其自然资源基础的枯竭,有必要进行适应,这意味着开发新的和优化现有的从矿石材料中提取有价值成分的方法。只有对铜冶炼渣进行综合处理,才能解决资源回收和创造低废技术的问题,具有重大的经济、环境和社会意义。湿法冶金技术在开发和选择提取方法时,考虑到系统的具体条件和金属的物理化学性质。本文综述了无机酸和环境安全试剂浸提贱金属技术的现状和发展前景,并有条件地将其分为两类。所列的研究对解决冶金渣的处理问题作出了重大贡献,但没有一项技术超出了实验室和半工业试验的范围。注意到通过对原料进行某些预处理来降低浸出剂浓度的趋势,以及向普遍使用“绿色技术”的过渡:如生物浸出和有机酸浸出。提出了解决原材料合理使用问题,提高未来材料循环可持续性的方向。
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