蒋京航, 叶国华, 张新民, 张爽, 林佩佳. 某低品位难选硫化铜矿的浮选回收[J]. 矿产综合利用, 2016, 37(4).
    引用本文: 蒋京航, 叶国华, 张新民, 张爽, 林佩佳. 某低品位难选硫化铜矿的浮选回收[J]. 矿产综合利用, 2016, 37(4).
    Jiang Jinghang, Ye Guohua, Zhang Xinmin, Zhang Shuang, Lin Peijia. Recovery of a low-grade refractory copper sulfide ore by flotation in Dongchuan, Yunnan province[J]. Multipurpose Utilization of Mineral Resources, 2016, 37(4).
    Citation: Jiang Jinghang, Ye Guohua, Zhang Xinmin, Zhang Shuang, Lin Peijia. Recovery of a low-grade refractory copper sulfide ore by flotation in Dongchuan, Yunnan province[J]. Multipurpose Utilization of Mineral Resources, 2016, 37(4).

    某低品位难选硫化铜矿的浮选回收

    Recovery of a low-grade refractory copper sulfide ore by flotation in Dongchuan, Yunnan province

    • 摘要: 云南东川某铜矿,含Cu仅0.65%,其中次生硫化铜占有率达85.6%,铜氧化率9.6%;矿石中黄铁矿含量较高,铜硫分离难度较大,并含有较多的易泥化脉石矿物,属低品位难选硫化铜矿。针对该矿石的性质特点,对其进行了浮选回收研究,结果表明:以CaO作pH调整剂和铜硫分离时的抑制剂、Na2SiO3作分散剂和抑制剂,磨矿细度选择80%-74um较为合适,Na2S一物多用,用量600g/t时可达到较好的沉淀、分散与活化效果,捕收剂优选为PAC,其最佳用量为120g/t。在最佳条件下,采用“一粗-二精-二扫”的闭路流程,获得了较好的技术指标,最终精矿Cu品位和回收率分别达20.12%和90.39%。

       

      Abstract: A certain copper ore in Dongchuan, Yunnan province, with the copper content of only 0.65%, the distribution rate of secondary copper sulfide reaching as high as 85.6% and the copper oxidation rate of 9.6%, having the high content of pyrite which could lead to a difficulty in copper-sulfur separation, containing some easily-sliming gangue minerals, belongs to the low-grade refractory copper sulfide ore. Flotation recovery study based on the ore’s properties shows that, grinding fineness is more appropriate to be chose as 80%-74um, Na2S, at the mount 600g/t, has the better multi-function including precipitation, dispersion and activation, PAC should be chose as collector with optimal amount of 120g/t when CaO is chose as pH regulator and depressant of copper-sulfur separation, meanwhile, Na2SiO3is used as depressant and dispersant. Finally, by adopting the closed-circuit flowsheet of “one roughing - two cleaning - two scavenging”, the better technical index that copper grade and recovery of the final concentrate can reach up to 20.12% and 90.39% respectively, was obtained under the optimum condition.

       

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