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现代矿业 ›› 2026, Vol. 42 ›› Issue (08): 227-231,238.

• 实用技术 • 上一篇    下一篇

某冶炼渣浮铜尾矿可选性试验研究

彭艳枚 袁 壮 彭泽友 李家林   

  1. 长沙矿冶研究院有限责任公司
  • 出版日期:2026-08-25 发布日期:2026-08-21

Experimental Study on Beneficiability of Copper Flotation Tailings from a Smelting Slag

  1. Changsha Research Institute of Mining & Metallurgy Co.,Ltd.
  • Online:2026-08-25 Published:2026-08-21

摘要: 某冶炼渣浮铜尾矿全铁品位为 47.61%,铁主要赋存于磁铁矿和硅酸铁中,其中磁铁 矿中铁分布率仅 34.60%,而磁铁矿连生体中,91.17% 与铁橄榄石和玻璃体连生。工艺矿物学分析 表明,磁铁矿嵌布粒度微细,-0.019 mm 粒级占比达 54.89%,单体解离难度大。基于矿石特性,制定 了阶段磨矿—阶段弱磁选原则工艺流程。粗磨条件下预先抛尾,粗精矿再磨再选逐步提高精矿品 位,避免了过磨泥化。在最终磨矿细度 P90=19.95 μm 条件下,全流程试验可获得精矿铁品位 62.12%、回收率 42.42% 的选矿指标,实现了该尾矿中磁性铁矿物的高效回收。

关键词: 冶炼渣, 浮铜尾矿, 磁铁矿, 阶段磨矿阶段弱磁选

Abstract: The total iron grade of a smelting slag floating copper tailings is 47.61%. Iron mainly oc⁃ curs in magnetite and iron silicate. The iron distribution rate in magnetite is only 34.60%,while the iron distribution rate in fayalite and vitreous body is as high as 63.74%. The process mineralogy analysis shows that the dissemination size of magnetite is fine,and the proportion of -0.019 mm particle size is 54.89%. About half of the particles are closely connected with fayalite and vitreous body,and it is difficult to dissoci⁃ ate the monomer. Based on the characteristics of the ore,the principle process of stage grindingstage low in⁃ tensity magnetic separation was developed. Under the condition of rough grinding,the tailings are discarded in advance,and the rough concentrate is reground and reselected to gradually increase the concentrate grade,avoiding over-grinding and mudding. Under the condition of final grinding fineness P90=19.95 μm, the whole process test can obtain the beneficiation index of concentrate iron grade 62.12% and recovery rate 42.42%. The efficient recovery of magnetic iron minerals in the tailings is realized.

Key words: smelting slag, copper flotation tailings, magnetite, stage grinding stage low intensity mag? netic separation