欢迎访问《现代矿业》杂志官方网站,今天是 分享到:
×

扫码分享

现代矿业 ›› 2026, Vol. 42 ›› Issue (01): 110-115,119.

• 矿物加工工程 • 上一篇    下一篇

广东大宝山铜硫尾矿综合回收钨工艺试验

黄春福1 王 龙2,3 胡文英1 钟国建1 祁忠旭2,3 杨 浩2,3   

  1. 1. 广东省大宝山矿业有限公司;2. 长沙矿山研究院有限责任公司; 3. 湖南省矿山固废综合利用工程技术研究中心
  • 出版日期:2026-01-25 发布日期:2026-02-05

Process Test of Comprehensive Recovery of Tungsten from Copper-sulfur Tailings of Dabaoshan Concentrator in Guangdong

  1. 1. Guangdong Dabaoshan Mining Co.,Ltd.;2. Changsha Institute of Mining Research Co.,Ltd.;3. Hunan Provincial Engineering Technology Research Center for Comprehensive Utilization of Mine Solid Waste
  • Online:2026-01-25 Published:2026-02-05

摘要: 广东大宝山选厂为了高效回收铜硫尾矿中的微细粒低品位钨资源,针对钨回收中存在 的技术难题,进行了直接浮选、全重选及重选—浮选联合3种不同工艺的对比试验研究。试验结果表 明:通过传统全浮选工艺,可获得 WO3品位 16.80%、WO3回收率 56.00% 的钨精矿;通过全重选工艺, 可获得 WO3品位 44.10%、WO3回收率 24.20% 的钨精矿;使用重选预富集—尾矿浮选联合新工艺,在 显著降低浮选处理量的同时,得到了钨精矿 WO3品位 25.17%、WO3回收率 55.85% 的优异指标,同时 大幅度降低了药剂成本,为同类尾矿中钨资源的高效回收提供了可行参考。

关键词: 铜硫尾矿, 微细粒钨, 重选—浮选联合工艺, 资源回收, 工艺优化

Abstract: In order to efficiently recover fine-grained low-grade tungsten resources from copper�sulfur tailings of Dabaoshan Concentrator in Guangdong,a comparative study of three different processes of direct flotation,full gravity separation and gravity-flotation combination is carried out in view of the technical problems in tungsten recovery.The results show that the tungsten concentrate with WO3 grade of 16.80% and WO3 recovery of 56.00% can be obtained by the traditional full flotation process. Tungsten concentrate with WO3 grade of 44.10% and WO3 recovery of 24.20% can be obtained by full gravity sepa⁃ ration process. Using the combined new process of gravity pre-concentration and tailings flotation,the ex⁃ cellent indexes of WO3 grade of tungsten concentrate of 25.17% and WO3 recovery of 55.85% are ob⁃ tained while the flotation treatment capacity is significantly reduced,and the cost of reagents is greatly reduced,which provides a feasible reference for the efficient recovery of tungsten resources in similar tailings.

Key words: copper-sulfur tailings, micro-fine tungsten, gravity separation-flotation combined pro? cess, resource recovery, process optimization