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采用还原焙烧-水浸出-磁选法从氰化尾矿中回收铁。

Recovery of iron from cyanide tailings with reduction roasting-water leaching followed by magnetic separation.

机构信息

College of Chemical Engineering, Shandong University of Technology, 255081, Zibo, Shandong, China.

出版信息

J Hazard Mater. 2012 Apr 30;213-214:167-74. doi: 10.1016/j.jhazmat.2012.01.076. Epub 2012 Jan 30.

Abstract

Cyanide tailing is a kind of solid waste produced in the process of gold extraction from gold ore. In this paper, recovery of iron from cyanide tailings was studied with reduction roasting-water leaching process followed by magnetic separation. After analysis of chemical composition and crystalline phase, the effects of different parameters on recovery of iron were chiefly introduced. Systematic studies indicate that the high recovery rate and grade of magnetic concentrate of iron can be achieved under the following conditions: weight ratios of cyanide tailings/activated carbon/sodium carbonate/sodium sulfate, 100:10:3:10; temperature, 50 °C; time, 60 min at the reduction roasting stage; the liquid to solid ratio is 15:1 (ml/g), leaching at 60 °C for 5 min and stirring speed at 20 r/min at water-leaching; exciting current is 2A at magnetic separation. The iron grade of magnetic concentrate was 59.11% and the recovery ratio was 75.12%. The mineralography of cyanide tailings, roasted product, water-leached sample, magnetic concentrate and magnetic tailings were studied by X-ray powder diffraction (XRD) technique. The microstructures of above products except magnetic tailings were also analyzed by scanning electron microscope (SEM) and energy disperse spectroscopy (EDS) to help understand the mechanism.

摘要

氰化尾渣是从金矿中提取金的过程中产生的一种固体废物。本文采用还原焙烧-水浸-磁选工艺对氰化尾渣中的铁进行回收研究。通过化学成分和物相分析,主要介绍了不同参数对铁回收的影响。系统研究表明,在以下条件下可以实现铁的高回收率和磁选精矿品位:氰化尾渣/活性炭/碳酸钠/硫酸钠的重量比为 100:10:3:10;还原焙烧温度 50°C;时间 60min;水浸时液固比为 15:1(ml/g),浸出温度 60°C,浸出时间 5min,搅拌速度 20r/min;磁选时激磁电流 2A。磁选精矿的铁品位为 59.11%,回收率为 75.12%。采用 X 射线粉末衍射(XRD)技术对氰化尾渣、焙烧产物、水浸样品、磁选精矿和磁选尾矿的矿物学进行了研究。除磁选尾矿外,上述产品的微观结构还通过扫描电子显微镜(SEM)和能谱分析(EDS)进行了分析,以帮助理解其机理。

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