王普蓉, 徐国印, 苏刚. 昌宁含铁低品位高泥锡石矿重-磁选工艺研究[J]. 矿产综合利用, 2022, (1): 156-162.
    引用本文: 王普蓉, 徐国印, 苏刚. 昌宁含铁低品位高泥锡石矿重-磁选工艺研究[J]. 矿产综合利用, 2022, (1): 156-162.
    Wang Purong, Xu Guoyin, Su Gang. Study on Gravity and Magnetic Separation Process of an Iron-containing Low-grade and High Slime Tin Ore in Changning[J]. Multipurpose Utilization of Mineral Resources, 2022, (1): 156-162.
    Citation: Wang Purong, Xu Guoyin, Su Gang. Study on Gravity and Magnetic Separation Process of an Iron-containing Low-grade and High Slime Tin Ore in Changning[J]. Multipurpose Utilization of Mineral Resources, 2022, (1): 156-162.

    昌宁含铁低品位高泥锡石矿重-磁选工艺研究

    Study on Gravity and Magnetic Separation Process of an Iron-containing Low-grade and High Slime Tin Ore in Changning

    • 摘要: 云南昌宁锡矿石主要有用金属矿物为锡石,其次为褐铁矿等,主要脉石矿物为石英,锡主要以锡石及酸溶锡形式存在。原矿Sn品位为0.166%,−0.074 mm矿泥含量为24.61%(其中−0.019 mm矿泥含量为14.27%),属低品位、高泥、含铁难选锡石矿。本文在对该矿石进行原矿性质研究的基础上,开展了该矿的重-磁选工艺研究。结果表明:原矿破碎至−12 mm按0.212 mm粒度洗矿分级,洗矿+0.212 mm粗粒破碎至−3 mm后磨矿至−0.074 mm 55.85%与洗矿细粒−0.212 mm合并,采用螺旋溜槽预先抛尾-溜槽精矿摇床分选-摇床精矿强磁选除铁的选矿工艺流程,可以获得产率为0.21%、Sn品位为41.32%、Sn回收率为52.27%的锡精矿,及产率为0.75%、Sn品位为4.750%、Sn回收率为21.46%的锡富中矿,锡精矿与锡富中矿Sn累计回收率为73.73%,锡精矿质量达到了YS/T339-2011标准中一类VII品级精矿质量要求,较好地实现了该锡矿的分选。

       

      Abstract: The main useful metal mineral in the tin ore from Changning is cassiterite, followed by limonite, the main gangue mineral is quartz, and tin mainly exists in the form of cassiterite and acid soluble tin. The tin ore with tin grade of 0.166% and yield of −0.074 mm fine slime of 24.61% (−0.019 mm fine slime of 14.27%) belongs to an iron-containing, low grade, high slime and refractory tin ore. Based on the study of the properties of a refractory tin ore from Yunnan, the beneficiation process of the ore was studied. Test results showed that: the raw ore was crushed to −12 mm and classified by washing with 0.212 mm particle size. After the + 0.212 mm coarse grains were crushed to −3 mm and ground to −0.074 mm occupying 55.85% and then merged with −0.212 mm fine grains as raw ore, separation flowsheet of pre-discarding tailings by spiral chute - separation of chute concentrate by shaking table -iron removal from shaker concentrate by high intensity magnetic separator was adopted to separate the raw ore .Tin concentrate with yield of 0.21%, tin grade of 41.32%, tin recovery of 52.27%, tin rich middling with yield of 0.75%, tin grade of 4.750%, tin recovery of 21.46%, and cumulative recovery of tin concentrate and tin rich middling of 73.73% was obtained. The quality of tin concentrate, which realized separation of tin from the raw ore, meets the concentrate level of grade VII category I of YS/T 339-2011 standard.

       

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