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某复杂铜铅锌多金属矿选矿试验
引用本文:黄建芬.某复杂铜铅锌多金属矿选矿试验[J].金属矿山,2012,41(11):76-79.
作者姓名:黄建芬
作者单位:西北矿冶研究院
摘    要:针对某复杂铜铅锌多金属矿的性质特点,采用弱磁选脱硫-铜铅混浮-混合精矿铜铅分离-混浮尾矿选锌的原则流程对该矿石进行选矿试验研究。在矿石磨矿细度为-0.074 mm占90%的情况下,采用1次弱磁选选硫、1粗2精2扫铜铅混浮、1粗2精1扫铜铅分离、1粗3精2扫选锌、中矿顺序返回流程处理该矿石,最终获得了铜品位为24.79%、铜回收率为55.78%的铜精矿,铅品位为51.34%、铅回收率为83.55%的铅精矿,锌品位为45.63%、锌回收率为62.71%的锌精矿,硫品位为35.12%、硫回收率为80.08%的硫精矿。铜精矿含银229.53 g/t,铅精矿含银196.20 g/t,铜、铅精矿中银的总回收率为50.29%。

关 键 词:铜铅锌多金属矿  脱硫磁选  铜铅混合浮选  铜铅分离  锌浮选  Tc-1  T-101

Experimental Study on Mineral Processing of a Complex Copper-Lead-Zinc Multi-Metal Minerals
Huang Jianfen.Experimental Study on Mineral Processing of a Complex Copper-Lead-Zinc Multi-Metal Minerals[J].Metal Mine,2012,41(11):76-79.
Authors:Huang Jianfen
Affiliation:Northwest Research Institute of Mining and Metallurgy;
Abstract:According to the characteristics of Copper-Lead-Zinc Multi-Metal Minerals, beneficiation tests is made by adopting the principle flow-sheet of desuphurization magnetic separation-copper-lead mixed beneficiation-copper-lead separation from rough mixed concentrate-zinc concentration from mixed tailings. Under the grinding fineness of -0.074 mm 90%, the final copper concentrate with Cu grade of 24.79% and recovery of 55.78%, lead concentrate with Pb grade of 51.34% and recovery of 83.55%, zinc concentrate with Zn grade of 45.63% and recovery of 62.71%, Sulfur concentrate with S grade of 35.12% and the recovery of 80.08%, were obtained respectively through the process of sulfur concentration by one low intensity magnetic separation, copper-lead mixed flotation by one-roughing, two-cleaning and two-scavenging, copper-lead separation by one-roughing, two-cleaning and one-scavenging, zinc concentration by one-roughing, three-cleaning and two-scavenging, and middles back to the flow sheet in order. Copper concentrate contains silver of 229.53 g/t, and lead concentrate contains silver of 196.20 g/t. Total silver recovery from copper and lead concentrates reached 50.29%.
Keywords:Copper-lead-zinc multi-metal minerals  Desuphurization magnetic separation  Copper-lead mixture floatation  Copper-lead separation  Zinc floatation  Tc-1  T-101
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