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金属矿山 ›› 2026, Vol. 55 ›› Issue (5): 206-214.

• 矿物工程 • 上一篇    下一篇

滑石型钼矿反浮选时黄原胶对辉钼矿的抑制作用机理

任雨强,印万忠,范宇轩,马英强,张西山,张运鑫   

  1. 福州大学紫金地质与矿业学院,福建 福州 350108
  • 出版日期:2026-05-15 发布日期:2026-06-03
  • 通讯作者: 印万忠(1970—),男,教授,博士,博士研究生导师。
  • 作者简介:任雨强(1999—),男,硕士研究生。
  • 基金资助:
    国家自然科学基金项目(编号:52374259)。

Inhibition Mechanism of Xanthan Gum on Molybdenite During Reverse Flotation of Talc-Type Molybdenum Ore

REN Yuqiang,YIN Wanzhong,FAN Yuxuan,MA Yingqiang,ZHANG Xishan,ZHANG Yunxin   

  1. Zijin School of Geology and Mining,Fuzhou University,Fuzhou 350108,China
  • Online:2026-05-15 Published:2026-06-03

摘要: 针对辉钼矿与滑石因表面性质相似难以浮选分离的难题,构建以黄原胶(XG)为抑制剂、十二胺(DDA)
为捕收剂的反浮选体系,以实现二者的选择性分离。采用单矿物及人工混合矿浮选试验评估分离效果;结合Zeta 电
位、接触角测试、傅里叶变换红外光谱(FTIR)、SEM-EDS 及X 射线光电子能谱(XPS)等界面表征手段,系统分析XG
对辉钼矿和滑石的抑制机理。单矿物浮选结果表明,未添加DDA 时,XG 对辉钼矿和滑石均产生显著抑制;添加DDA
后,滑石的可浮性得以恢复,而辉钼矿仍被抑制。人工混合矿浮选结果进一步证实,XG 与DDA 联合作用可实现辉钼
矿与滑石的有效分离。机理研究表明:在单一XG 体系中,XG 通过物理吸附同时覆盖2 种矿物表面;在XG+DDA 体
系中,XG 在辉钼矿表面形成致密亲水屏障,阻断DDA 的静电吸附,使其保持亲水抑制状态;而在滑石表面,XG 的吸
附不影响DDA 通过静电作用进一步吸附,从而使滑石恢复疏水可浮性。XG 与DDA 构成的反浮选体系可通过选择性
吸附机制实现辉钼矿与滑石的高效分离,为滑石型钼矿的浮选分离提供了一种可行方案。

关键词: 黄原胶 , 辉钼矿 , 滑石 , 静电吸附 , 反浮选

Abstract: To address the challenge in the flotation separation of molybdenite and talc due to their similar surface properties,
a reverse flotation system using xanthan gum (XG) as a depressant and dodecylamine (DDA) as a collector was developed
to achieve selective separation. The separation efficiency was evaluated through flotation tests on single minerals and artificially
mixed ores. The depression mechanism of XG on molybdenite and talc was systematically investigated using Zeta potential
measurements,contact angle tests,Fourier transform infrared spectroscopy (FTIR),SEM-EDS,and X-ray photoelectron
spectroscopy (XPS). Single-mineral flotation results showed that without DDA,XG significantly depressed both molybdenite
and talc. However,after the addition of DDA,the floatability of talc was restored,while molybdenite remained depressed. The
artificially mixed ore flotation results further confirmed that the combined action of XG and DDA enables effective separation of
molybdenite from talc. Mechanism studies revealed that in the system with XG alone,XG covered the surfaces of both minerals
through physical adsorption. In the XG+DDA system,XG formed a dense hydrophilic barrier on the molybdenite surface,blocking
the electrostatic adsorption of DDA and maintaining molybdenite in a hydrophilic,depressed state. In contrast,on the talc
surface,the pre-adsorption of XG did not hinder the further electrostatic adsorption of DDA,thereby restoring the hydrophobic
floatability of talc. The reverse flotation system composed of XG and DDA achieves efficient separation of molybdenite from talc
through a selective adsorption mechanism,providing a feasible approach for the flotation separation of talc-bearing molybdenum
ores.

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