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金属矿山 ›› 2016, Vol. 45 ›› Issue (01): 97-100.

• 矿物工程 • 上一篇    下一篇

某多金属矿重选中矿分选试验

韩聪,魏德洲,刘文刚   

  1. 东北大学资源与土木工程学院,辽宁 沈阳 110819
  • 出版日期:2016-01-15 发布日期:2016-03-11
  • 基金资助:

    * “十一五”国家科技支撑计划项目(编号:2008BAB34B01),中央高校基本科研业务费专项(编号:N130301003)。

Separation Test on Gravity Concentration Middlings from a Multi-metal Mine

Han Cong,Wei Dezhou,Liu Wengang   

  1. College of Resource and Civil Engineering,Northeastern University,Shenyang 110819,China
  • Online:2016-01-15 Published:2016-03-11

摘要: 为开发利用某多金属矿山选矿厂重选中矿中的铜铋硫铁等有价元素,对参照现场选矿工艺制备出的重选中矿试样进行了选矿试验。结果表明:试样经过铜、铋、硫混浮,混浮精矿摇床重选选铋,选铋尾矿抑硫浮铜,混浮尾矿弱磁选选铁流程处理,获得了铋品位为41.59%、回收率为29.13%的铋精矿,铜品位为21.03%、回收率为66.31%的铜精矿,硫品位为42.87%、回收率为90.25%的硫精矿,以及铁品位为68.06%、回收率为21.11%的铁精矿。各精矿产品指标较好,因此,铜铋硫混浮—摇床重选选铋—抑硫浮铜铜硫分离-弱磁选选铁工艺是该中矿高效开发利用的合理工艺。

关键词: 重选中矿, 铜铋硫, 混合浮选, 摇床重选, 抑硫浮铜, 弱磁选

Abstract: For development and utilization of valuable element of copper,bismuth,sulfur and iron containing in gravity concentration middlings,which produced by dressing plant of a multi-metal mine,the beneficiation test was carried out on middlings of gravity separation consult on-sile process.The results showed that bismuth concentrate with bismuth grade of 41.59% and bismuth recovery of 29.13%,and copper concentrate with copper grade of 21.03% and copper recovery of 66.31%,and sulfur concentrate with sulfur grade of 42.87 and sulfur recovery of 90.25%,and iron concentrate with iron grade of 68.06% and iron recovery of 21.11% were obtained respectively by the process of Cu-Bi-S bulk flotation,flotation concentrate by gravity concentration using shaking table for bismuth separation,tailing of gravity concentration by inhibiting sulfur for copper flotation,and tailing of bulk flotation by low intensity magnetic separation for iron concentrate.All concentrate products obtained by the mentioned process have good indicator.Therefore,the process tested above is available for the middlings.

Key words: Gravity middlings, Copper-Bismuth-Sulfur, Bulk flotation, Shaking-table concentration, Inhibiting sulfur and floating copper, Low intensity magnetic separation