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金属矿山 ›› 2018, Vol. 47 ›› Issue (10): 86-91.

• 矿物工程 • 上一篇    下一篇

微细粒辉钼矿疏水聚团及聚团浮选研究

杨丙桥1,黄鹏亮1,张汉泉1,贾菲菲2   

  1. 1. 武汉工程大学兴发矿业学院,湖北 武汉 430073;2. 武汉理工大学资源与环境工程学院,湖北 武汉 430070
  • 出版日期:2018-10-15 发布日期:2018-11-09
  • 基金资助:

    *:国家自然科学基金项目(编号:51704212,51704220),湖北省科技厅知识创新专项(编号:2017CFB280)。

Study on the Hydrophobic Agglomeration and Floc-flotation of Molybdenite Fines

Yang Bingqiao1,Huang Pengliang1,Zhang Hanquan1,Jia Feifei2,   

  1. 1. School of Xingfa Mining Engineering, Wuhan Institute of Technology, Wuhan 430073,China; 2. School of Resources and Environmental Engineering, Wuhan University of Technology, Wuhan 430070,China
  • Online:2018-10-15 Published:2018-11-09

摘要: 为了解决微细粒辉钼矿难以通过传统浮选回收的难题,以煤油为添加剂,以聚团粒度与规则度为表征手段,探讨微细粒辉钼矿疏水聚团过程中聚团的形成、破坏和重组形为,并在此基础上研究了聚团对微细粒辉钼矿浮选效果的影响。结果表明:聚团的形成与搅拌速度和煤油用量密切相关;搅拌速度越高,聚团形成越快;煤油用量可以显着提高聚团强度,以承受高应力剪切,煤油用量越高,使得聚团破碎和重组所需要的搅拌速度越大,时间越长;聚团规则度受搅拌速度和煤油用量影响非常明显,搅拌速度越大,煤油用量越大,聚团变得越规则。与常规浮选相比,聚团浮选使得微细粒辉钼矿的上浮率显著提高,聚团浮选效果与疏水聚团过程中搅拌强度紧密相关,搅拌速度越高,达到最大上浮率所需时间越短,添加煤油能够显著提高辉钼矿上浮率。

关键词: 微细粒辉钼矿, 疏水聚团, 聚团粒度, 聚团规则度, 聚团浮选

Abstract: In order to resolve the problem that molybdenite is difficult to be recovered through conventional flotation,The growth, breakage and restructuring of the agglomerates was investigated thoroughly through characterization of agglomerate size and fractal dimension,and based on hydrophobic agglomeration, the flotation of agglomerated molybdenite fines was conducted. The results shown that the growth of agglomerate depended on the stirring speed, the higher the stirring speed, the stronger was the stirring strength, more rapidly the agglomerate grown. In addition, kerosene dosage could increase the agglomerate strength remarkably to withstand high stress shear, the higher the kerosene dosage, stronger stirring strength and less time was need to cause the breakage and restructuring of the agglomerates. The average fractal dimension of agglomerates was strongly affected by stirring speed and kerosene dosage, the higher the stirring speed, the larger the kerosene dosage, more regular the agglomerates. Compared to conventional flotation, floc-flotation increased the floatability of molybdenite substantially. The floc-flotation of molybdenite fines closely correlated with the strength of mechanical conditioning in hydrophobic agglomeration, the higher the stirring speed, less time was needed to achieve the maximum floatability. Kerosene could increase the floatability of agglomerate significantly.

Key words: Micro-finemolybdenite, Hydrophobic agglomeration, Agglomerate size, Agglomerate fractal dimension, Floc-flotation