Institute of Multipurpose Utilization of Mineral Resources, Chinese Academy of Geological SciencesHost
2022 No. 1
Article Contents

Yan Junning. Production Practice to Improve the Flotation Process Index of Shuiyindong Gold Mine in Guizhou Province[J]. Multipurpose Utilization of Mineral Resources, 2022, (1): 164-167. doi: 10.3969/j.issn.1000-6532.2022.01.022
Citation: Yan Junning. Production Practice to Improve the Flotation Process Index of Shuiyindong Gold Mine in Guizhou Province[J]. Multipurpose Utilization of Mineral Resources, 2022, (1): 164-167. doi: 10.3969/j.issn.1000-6532.2022.01.022

Production Practice to Improve the Flotation Process Index of Shuiyindong Gold Mine in Guizhou Province

  • The gold ore of Shuiyindong Gold Mine in Guizhou province is a micro-fine disseminated refractory gold ore, which contains gold-bearing minerals such as pyrite and arsenopyrite with fine particle size and a large number of gangue minerals that are easy to be argillated. For the process of floating these raw materials, fineness should be α -74 µm 90%. The gold bearing minerals can be fully dissociated, but in the grinding process it is easy to "over-grind". The whole process of rough and cleaning operations in flotation plant were explored in details through sampling, concentration, fineness inspection, screening analysis and laboratory analysis. It was found that there were problems such as "slime", complex flotation reagents, low concentration of cleaning flotation and poor recovery effect of gold in tailings at coarse and fine particle fraction. For those problems, on the basis of experimental study of the reagents optimization system in laboratory, through methods such as adjusting the ball mill with reduce "over-grinding", adjusting the concentration of pulp in processing, optimizing the reagents system and reducing the number of cleaning flotation we started to have better results. After all that we managed to increase the rate of fine mineral, reduce the cycle of middlings, strengthen the rough and cleaning flotaion of operation efficiency, reduce the tailings grade and raise the index of flotation. Finally, the recovery of gold is increased from 5.76% to over 91%.

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  • [1] 刘坤, 王婷霞, 李健民, 等. 天水某金矿工艺矿物学及选矿试验研究[J]. 矿产综合利用, 2020(5):101-104. doi: 10.3969/j.issn.1000-6532.2020.05.014

    CrossRef Google Scholar

    LIU K, WANG T X, LI J M, et al. Process mineralogy and mineral processing of a gold mine in Tianshui[J]. Multipurpose Utilization of Mineral Resources, 2020(5):101-104. doi: 10.3969/j.issn.1000-6532.2020.05.014

    CrossRef Google Scholar

    [2] 明平田, 李飞. 某微细粒蚀变岩型金矿高效浮选新工艺研究[J]. 矿产综合利用, 2019(4):73-78. doi: 10.3969/j.issn.1000-6532.2019.04.015

    CrossRef Google Scholar

    MING P T, LI F. Study on a new high efficiency flotation process for a microgranular altered rock gold mine[J]. Multipurpose Utilization of Mineral Resources, 2019(4):73-78. doi: 10.3969/j.issn.1000-6532.2019.04.015

    CrossRef Google Scholar

    [3] 卢臣, 杨聪仁, 张仕奇, 等. 内蒙古某金矿磨矿分级产物离心重选实验研究[J]. 矿产综合利用, 2021(3):152-157.

    Google Scholar

    LU C, YANG C R, ZHANG S Q, et al. Experimental study on the centrifugal separation of grinding classification products for a gold mine in Inner Mongolia[J]. Multipurpose Utilization of Mineral Resources, 2021(3):152-157.

    Google Scholar

    [4] 郭运鑫, 肖庆飞, 黄胤淇, 等. 提高永平铜矿一段球磨磨矿效率的研究[J]. 矿产综合利用, 2019(4):135-138. doi: 10.3969/j.issn.1000-6532.2019.04.029

    CrossRef Google Scholar

    GUO Y X, XIAO Q F, HUANG Y Q, et al. Research on raising the efficiency of ball grinding in one section of Yongping copper mine[J]. Multipurpose Utilization of Mineral Resources, 2019(4):135-138. doi: 10.3969/j.issn.1000-6532.2019.04.029

    CrossRef Google Scholar

    [5] 夏国进. 某卡林型低品位难选金矿浮选试验[J]. 现代矿业, 2019, 599(3):128-131. doi: 10.3969/j.issn.1674-6082.2019.03.035

    CrossRef Google Scholar

    XIA G J. Flotation test of a Carlin-type low-grade refractory gold ore[J]. Modern Mining, 2019, 599(3):128-131. doi: 10.3969/j.issn.1674-6082.2019.03.035

    CrossRef Google Scholar

    [6] 朴正杰, 魏德洲, 吕宪俊, 等. 铜铅硫化矿浮选分离抑制剂研究进展[J]. 矿产综合利用, 2018(4):13-16. doi: 10.3969/j.issn.1000-6532.2018.04.003

    CrossRef Google Scholar

    PU Z J, WEI D Z, LV X J, et al. Research progress of inhibitors for flotation separation of copper-lead sulfide ore[J]. Multipurpose Utilization of Mineral Resources, 2018(4):13-16. doi: 10.3969/j.issn.1000-6532.2018.04.003

    CrossRef Google Scholar

    [7] 张博, 张雁生, 张家明, 等. 某微细粒难处理金矿石选矿试验研究[J]. 黄金, 2017(7):47-60.

    Google Scholar

    ZHANG B, ZHANG Y S, ZHANG J M, et al. Experimental study on the beneficiation of a fine-grained refractory gold ore[J]. Gold, 2017(7):47-60.

    Google Scholar

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