黑龙江某低品位铜铅锌多金属硫化矿选矿试验

    Beneficiation test of a low grade copper-lead-zinc polymetallic sulfide ore in Heilongjiang Province

    • 摘要: 以黑龙江某低品位铜铅锌多金属硫化矿为研究对象,进行工艺矿物学及选矿试验研究。原矿中主要可回收元素为铜、铅、锌、硫,其中,铜、铅、锌均以硫化物的形式存在,硫主要以磁黄铁矿形式存在。试验首先进行了部分混合优先浮选和优先浮选流程对比试验,通过数据对比,最终采用优先浮选工艺流程,开展了粗选条件试验及开路试验,对浮选条件及流程结构进行优化。在此基础上进行了闭路试验,结果表明:在磨矿细度−0.074 mm占80%条件下,铜浮选经“2次粗选4次精选”,铅浮选经“1次粗选4次精选1次扫选”,锌浮选经“1次粗选3次精选”,硫浮选经“3次精选”,可获得铜精矿铜品位24.90%、铜回收率85.62%;铅精矿铅品位61.84%、铅回收率87.93%;锌精矿锌品位55.11%、锌回收率87.52%;硫精矿硫品位37.65%、硫回收率74.06%。研究可为该矿石开发利用提供合理的工艺流程及参数,实现多种有价金属元素的综合回收,同时也为同类型低品位铜铅锌多金属硫化矿开发和利用提供参考和依据。

       

      Abstract: A low grade copper-lead-zinc polymetallic sulfide ore is taken as the research object. The process mineralogy and beneficiation experiments are carried out. The main recyclable elements in raw ore are copper, lead, zinc and sulfur. Among them, copper, lead and zinc exist in the form of sulfide, and sulfur mainly exists in the form of pyrrhotite. Firstly, comparative tests of partial mixed preferential flotation and preferential flotation processes are carried out. Through data comparison, the roughing condition test and open circuit test are carried out to optimize the flotation conditions and process structure using the preferential flotation process. On this basis, closed-circuit tests are carried out, and the results show that: under the condition of grinding fineness of −0.074 mm accounting for 80%, copper concentrate with copper grade of 24.90% and copper recovery of 85.62% can be obtained by “2 times roughing and 4 times cleaning”, lead flotation with “1 times roughing and 4 times cleaning and 1 sweeping”, zinc flotation with “1 times roughing and 3 times cleaning” and sulfur flotation with “3 times cleaning”. Lead concentrate with lead grade of 61.84% and recovery rate of 87.93%; zinc concentrate zinc grade of 55.11%, zinc recovery of 87.52%; The sulfur concentrate has a sulfur grade of 37.65% and a sulfur recovery rate of 74.06%. The research can provide reasonable process flow and parameters for the development and utilization of the ore, realize the comprehensive recovery of various valuable metal elements, and also provide reference and basis for the development and utilization of the same type of low-grade copper-lead-zinc polymetallic sulfide ore.

       

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