Separation of sulfide lead-zinc-silver ore under low alkalinity condition

被引:34
|
作者
Sun Wei [1 ]
Su Jian-fang [1 ]
Zhang Gang [1 ]
Hu Yue-hua [1 ]
机构
[1] Cent S Univ, Sch Minerals Proc & Bioengn, Changsha 410083, Peoples R China
基金
中国国家自然科学基金;
关键词
lead-zinc-silver sulfide; low alkalinity; new flotation reagents; lead-zinc separation; silver recovery; GRINDING CONDITIONS; FLOTATION; SPHALERITE; PYRITE; ACTIVATION;
D O I
10.1007/s11771-012-1276-y
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
A complex lead-zinc-silver sulfide ore containing 2.98% Pb, 6.49% Zn and 116.32x10(-4) % Ag (mass fraction) from Yunnan Province, China, was subjected to this work. Research on mineral processing was conducted according to the properties of the lead-zinc-silver ore. Under low alkalinity condition, the lead minerals are successfully separated from the zinc minerals with new reagent YZN as zinc depressant, new reagent BPB as lead collector, CuSO4 as zinc activator and ethyl xanthate as zinc collector. The associated silver is mostly concentrated to the lead concentrate. With the process utilized in this work, a lead concentrate of 51.90% Pb with a recovery of 82.34% and a zinc concentrate of 56.96% Zn with a recovery of 81.98% are produced. The silver recovery in the lead concentrate is 80.61%. Interactions of flotation reagents with minerals were investigated, of which the results indicate that the presence of proper amount of Na2S can precipitate Pb2+ and has a sulfidation on oxidized lead minerals. The results also show that Na2CO3 and YZN used together as combined depressants for sphalerite can signally improve the depressing effect of new reagent YZN on sphalerite.
引用
收藏
页码:2307 / 2315
页数:9
相关论文
共 50 条
  • [21] Whole tailings cement filing test and system transformation at Nanjing Lead-zinc-silver Mine
    Wang, Fanghan
    Cao, Weiqin
    Kang, Ruihai
    Jinshu Kuangshan/Metal Mine, 2003, (10):
  • [22] PRECAMBRIAN MICROFOSSILS FROM MCARTHUR RIVER LEAD-ZINC-SILVER DEPOSIT NORTHERN TERRITORY, AUSTRALIA
    HAMILTON, LH
    MUIR, MD
    MINERALIUM DEPOSITA, 1974, 9 (01) : 83 - 86
  • [23] Flotation Separation of High Sulfur Lead-zinc Ore
    Yuan, Zhitao
    Yu, Xiaolong
    Liu, Liping
    Wang, Chengliang
    POWDER TECHNOLOGY & APPLICATIONS IV, 2012, 454 : 205 - +
  • [24] Rational Separation of Complex Copper-Zinc Concentrates of Sulfide Ore
    Bocharov, V. A.
    Ignatkina, V. A.
    Kayumov, A. A.
    JOURNAL OF MINING SCIENCE, 2016, 52 (04) : 793 - 801
  • [25] BENEFICIATION OF A HIGH LEAD LOW COPPER SULFIDE ORE OF SARGIPALI
    KUNDA, MR
    RAO, KBV
    MATHUR, CS
    RAVINDRANATH, K
    RAO, AP
    TRANSACTIONS OF THE INDIAN INSTITUTE OF METALS, 1985, 38 (01): : 8 - 16
  • [26] Pressure leaching of a lead-zinc-silver concentrate with nitric acid at moderate temperatures between 130 and 170 °C
    Zarate-Gutierrez, R.
    Lapidus, G. T.
    Morales, R. D.
    HYDROMETALLURGY, 2010, 104 (01) : 8 - 13
  • [27] Selective and Efficient Extraction of Zinc from Mixed Sulfide-oxide Zinc and Lead Ore
    Jia, Nannan
    Wang, Hui-gang
    Zhang, Mei
    Guo, Min
    MINERAL PROCESSING AND EXTRACTIVE METALLURGY REVIEW, 2016, 37 (06): : 418 - 426
  • [28] BALL WEAR AND ITS CONTROL IN THE GRINDING OF A LEAD-ZINC SULFIDE ORE
    NATARAJAN, KA
    INTERNATIONAL JOURNAL OF MINERAL PROCESSING, 1992, 34 (1-2) : 161 - 175
  • [29] Separation test of refractory lead-zinc ore from Myanmar
    Hu, Ting
    Liu, Quanjun
    Deng, Rongdong
    Ye, Fenghong
    MATERIAL SCIENCES AND TECHNOLOGY, PTS 1 & 2, 2012, 560-561 : 447 - 455
  • [30] SUPERGENE PROCESSES IN ZINC-LEAD-SILVER SULFIDE ORES IN CARBONATES
    SANGAMESHWAR, SR
    BARNES, HL
    ECONOMIC GEOLOGY, 1983, 78 (07) : 1379 - 1397