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上房沟高滑石型钼铁矿石工艺矿物学研究
引用本文:王守敬,卞孝东,马驰.上房沟高滑石型钼铁矿石工艺矿物学研究[J].金属矿山,2011,40(8):94.
作者姓名:王守敬  卞孝东  马驰
作者单位:1.中国地质科学院郑州矿产综合利用研究所;2.国家非金属矿资源综合利用工程技术研究中心
基金项目:“十一五”国家科技支撑计划项目
摘    要:为促进河南上房沟高滑石型难选钼铁矿石选矿技术水平的提高,对其进行了工艺矿物学研究。研究结果表明:矿石中主要有用矿物为辉钼矿和磁铁矿;有害矿物滑石含量高、辉钼矿和磁铁矿粒度细是矿石难选的主要原因;矿石中磁铁矿与滑石关系紧密而与辉钼矿几乎没有毗邻关系,因此在选矿过程中可以考虑先通过粗粒磁选将滑石随同磁铁矿分离出来,然后再对非磁性产物进行辉钼矿浮选。

关 键 词:上房沟  高滑石型钼铁矿石  工艺矿物学

Study on Process Mineralogy of High-talcose Kamiokate Ore in Shangfanggou
Wang Shoujing,Bian Xiaodong,Ma Chi.Study on Process Mineralogy of High-talcose Kamiokate Ore in Shangfanggou[J].Metal Mine,2011,40(8):94.
Authors:Wang Shoujing  Bian Xiaodong  Ma Chi
Affiliation:1.Zhengzhou Institute of Multipurpose Utilization of Mineral Resources CAGS;2.China National Engineering Research Center for Utilization of Industrial Minerals;
Abstract:To promote beneficiation level of high-talc-based refractory kamiokate ore of Shangfanggou in Henan, the paper studied its process mineralogy. The results showed that the main valuable minerals are molybdenite and magnetite; High level of harmful talcum and fine grain of molybdenite and magnetite are the main reasons of being difficult to separate. There are closely relationship between magnetite and talcum, while nearly none of magnetite border on molybdenite. Therefore, in beneficiation process, talc accompanying with magnetite are firstly considered to be separated by rough magnetic separation, and then non-magnetic minerals are separated from molybdenite by flotation. 
Keywords:Shangfanggou  High-talcose kamiokate ore  Process mineralogy
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