金精矿浮选药剂作用机理及脱药工艺研究现状与展望

    Research Status and Prospect of the Action Mechanism of Flotation Reagents for Gold Concentrate and De-reagent Process

    • 摘要: 【目的】为增大金矿的浮选效果,矿厂常在脱药体系中添加浮选药剂,这导致浮选金精矿常含有大量浮选药剂,尤其是捕收剂和起泡剂。捕收剂在矿物表面的吸附状态较为复杂,多数以化学吸附为主,不易自然解吸,而起泡剂与捕收剂两者的协同作用使得矿物表面存在的药剂的作用形式更为复杂,且较难除去,这些浮选药剂对后续的微生物预氧化作业、细磨氰化作业以及碳吸附作业都会产生不利影响。因此金精矿在微生物预氧化或氰化前进行脱药处理非常必要。【方法】依据脱药工艺的原理,脱药工艺可分为物理脱药工艺、化学脱药工艺以及物理-化学联合脱药工艺。物理脱药工艺绿色、普适性高,但效果较差、产生的废水较多;化学脱药工艺脱药彻底、效率较高,但存在污染、成本较高、后续需要废水处理;物理-化学联合脱药工艺结合两种脱药工艺的优点,可实现低污染、高效率脱药目的,但同时会增加脱药的工艺流程与设备成本。【结果&结论】绿色高效的脱药工艺是研究的重要方向,而完善脱药废水的循环处理与利用,同时实现脱药设备的短流程化和自动化,也是脱药工艺发展的一个趋势。

       

      Abstract: Objective In order to increase the flotation efficiency of gold mines, mining plants often add flotation reagents to the dereagent system, which results in a large amount of flotation reagents in the flotation gold concentrate, especially collectors and frothers. The adsorption state of collectors on mineral surface is relatively complex, with most of them mainly relying on chemical adsorption and difficult to naturally desorb. The synergistic effect of frothers and collectors makes the existence forms of reagents on mineral surface more complex and difficult to remove. Flotation gold concentrates often contain a large amount of flotation reagents. These reagents can have adverse effects on subsequent microbial preoxidation operations, fine grinding cyanidation operations and carbon adsorption operations. Therefore, it is necessary to undergo dereagent treatment of gold concentrate before microbial preoxidation or cyanidation. Method According to the principle of dereagent process, the dereagent process can be divided into the physical dereagent process, the chemical dereagent process, and the physical-chemical combined dereagent process. The physical dereagent process is green and has high universality, but it is inefficient and generates a lot of wastewater. The chemical dereagent process is complete and efficient, but it is pollution, high cost, and requires subsequent wastewater treatment. The physical-chemical combined dereagent process can achieve low-pollution and efficient dereagent by combining the advantages of two dereagent processes, while it will increase the process flow and equipment cost. Result&Conclusion Green and efficient dereagent processes are an important research direction, and improving the cyclic treatment and utilization of dereagent wastewater, while achieving short process and automation of dereagent equipment, are also a trend in the development of dereagent processes.

       

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