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Recovery of metals from the roasted lead-zinc tailings by magnetizing roasting followed by magnetic separation

机译:通过磁化焙烧然后磁选从焙烧的铅锌尾矿中回收金属

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摘要

To comprehensively reuse lead-zinc tailings and avoid environmental pollution, the enrichment of valuable metals and the recovery of iron from the roasted lead-zinc tailings (RM), the cinder after the oxidation roasting of lead-zinc tailings, were performed using magnetizing roasting followed by magnetic separation. The transformation of iron in the RM during the magnetizing roasting was investigated by studying the effects of roasting temperature and ratio of coal to RM on the iron recovery. The results showed that most of iron in the RM was transformed from Fe2O3 to Fe3O4 at the roasting temperature of 720 degrees C and the ratio of coal to RM of 7:100. The iron recovery rate reached 82.16%, and the iron content in the magnetic concentrate reached 62.14%. The investigation of the enrichment characteristics of the metals in the magnetizing showed that Ag, Ga, Pb and Mn could be enriched in the magnetic tailing, with enrichment ratios of 1.64, 1.39, 1.35 and 1.24, respectively, under the conditions of a roasting temperature of 720 degrees C and a ratio of coal to RM of 7:100. Furthermore, the transformation of metals during magnetizing roasting was investigated by analyzing the microstructure and mineralogical changes during the magnetizing roasting process. With this method, the processes of iron recovery and other metals enrichment from RM using magnetizing roasting followed by magnetic separation was proposed for the comprehensive utilization of lead-zinc tailings. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了全面利用铅锌尾矿并避免对环境的污染,使用磁化焙烧进行了铅锌尾矿的氧化焙烧后的煤渣,从焙烧的铅锌尾矿(RM)中富集了有价值的金属并回收了铁。然后进行磁分离。通过研究焙烧温度和煤与RM的比例对铁回收率的影响,研究了磁化焙烧过程中RM中铁的转化。结果表明,在720℃的焙烧温度下,RM与煤的比例为7:100,RM中的大部分铁都从Fe2O3转变为Fe3O4。铁的回收率达到82.16%,磁性精矿中的铁含量达到62.14%。对磁化过程中金属富集特性的研究表明,在焙烧温度条件下,Ag,Ga,Pb和Mn可以在磁尾矿中富集,富集比分别为1.64、1.39、1.35和1.24。 720摄氏度,煤与RM之比为7:100。此外,通过分析磁化焙烧过程中的微观结构和矿物学变化,研究了磁化焙烧过程中金属的转变。提出了利用磁化焙烧-磁选法从RM中回收铁和其他金属的方法,以综合利用铅锌尾矿。 (C)2017 Elsevier Ltd.保留所有权利。

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