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 ›› 2022, Vol. 38 ›› Issue (11): 108-.

• 矿物加工工程 • 上一篇    下一篇

青海某多金属硫化矿工艺矿物学研究

彭贵熊1 皇甫明柱2 巩明辉1 张发军3 张慧婷4 冯媛媛4   

  1. 1. 西北矿冶研究院;2. 安徽工业大学冶金工程学院;3. 西部矿业股份有限公司锡铁山分公司; 4. 西部矿业集团科技发展有限公司
  • 出版日期:2022-11-25 发布日期:2023-05-17

Study on Process Mineralogy of a Polymetallic Sulfide Ore in Qinghai

PENG Guixiong1 HUANGFU Mingzhu2 GONG Minghui1 ZHANG Fajun3 ZHANG Huiting4 FENG Yuanyuan4#br#   

  1. 1. Northwest Institute of Mining and Metallurgy;2. School of Metallurgical Engineering, Anhui University of Technology;3. Xitieshan Branch of Western Mining Co.,Ltd.; 4. Western Mining Group Technology Development Co.,Ltd.
  • Online:2022-11-25 Published:2023-05-17

摘要: 为了高效综合利用青海某复杂多金属硫化矿,查明矿石性质,制定合理的选矿工艺流 程,进行了工艺矿物学研究。研究结果表明:矿石中的铅和锌主要以硫化物为主,硫化物中的铅分 布率为95.78%,硫化物中的锌分布率为92.37%;矿石中方铅矿多呈不规则块状分布,粒度分布不均, 嵌布粒度较铁闪锌矿嵌布粒度较细,-0.074 mm粒级含量占96.95%,-0.038 mm粒级含量占62.82%; 铁闪锌矿多呈粒状分布,粒度分布较为均匀,平均粒径为0.062 mm,其中铁闪锌矿-0.074 mm粒级含 量占67.68%,-0.038 mm粒级含量占39.95%;矿石中的有用矿物主要为硫化物,较易回收。

关键词: 矿物组成, 单体解离度, 结晶嵌布粒度, 赋存状态

Abstract: In order to efficiently and comprehensively utilize a complex polymetallic sulfide ore in Qinghai,find out its ore properties and formulate a reasonable beneficiation process,the process mineralo⁃ gy of the ore was studied. The results show that the lead and zinc in the ore are mainly sulfide. The distribu⁃ tion rate of lead in sulfide is 95.78%,and the distribution rate of zinc in sulfide is 92.37%. The galena in the ore is mostly irregularly distributed in blocks,and the particle size distribution is uneven. The dissemi⁃ nated particle size is finer than that of marmatite. The content of -0.074 mm particle size accounts for 96.95%,and the content of -0.038 mm particle size accounts for 62.82%. The marmatite is mostly granu⁃ lar,and the particle size distribution is relatively uniform. The average particle size is 0.062 mm,of which the content of marmatite -0.074 mm is 67.68%,and the content of-0.038 mm is 39.95%. The useful miner⁃ als in ore are mainly sulfides,which are easy to recover.

Key words: mineral composition, monomer dissociation degree, crystallite dissemination size, occur? rence state