Combined microflotation effects in polymetallic ores beneficiation

被引:2
|
作者
Turysbekov, D. [1 ]
Tussupbayev, N. [1 ]
Narbekova, S. [1 ]
Kaldybayeva, Z. [1 ]
机构
[1] Satbayev Univ, Inst Met & Ore Beneficiat JSC, Alma Ata 050010, Kazakhstan
来源
SN APPLIED SCIENCES | 2023年 / 5卷 / 05期
关键词
Flotation; Copper-lead rough concentrate; Frother; Microbubbles; Water-air microemulsion; HYDRODYNAMIC CAVITATION; MICROBUBBLE GENERATION; FLOTATION PERFORMANCE; PARTICLE-SIZE; ATTACHMENT;
D O I
10.1007/s42452-023-05347-2
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Producing of heterogeneous concentrates with good recovery in the processing of polymetallic ores is a challenge. Many factors must be taken into account including ore grinding, reagent mode, water composition, pulp density and the volume of supplied bubbles when producing high-quality selective concentrates. Microbubbles smaller than 50 mu m in size were produced based on the frother oxal T-92 at different concentrations using a generator. The most optimal number of microbubbles smaller than 50 mu m was produced at a T-92 concentration of 0.5 g/dm3. Polymetallic ore of Kazakhstan deposit was used for flotation studies. The studies were conducted in the copper-lead rough concentrate producing cycle. Flotation active minerals chalcopyrite and galena pass into the foam product, while sphalerite and pyrite remain in the chamber product in this cycle. In this paper, the density of pulp (20, 30 and 50%) as one of the main factors that effects the selectivity of flotation is studied. The kinetics of ore flotation in the base mode and with the use of a microbubble generator has been studied at these densities. Test experiments have been performed at the optimum density. The use of a water-air microemulsion generator makes it possible to maintain the quality of the copper- lead concentrate and increase the extraction of copper into the rough concentrate by 7.41%, lead by 5.98%.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] Combined microflotation effects in polymetallic ores beneficiation
    D. Turysbekov
    N. Tussupbayev
    S. Narbekova
    Z. Kaldybayeva
    SN Applied Sciences, 2023, 5
  • [2] Case Study on Beneficiation of Cassiterite-Polymetallic Sulphide Ores
    Liu, Siqing
    Tong, Xiong
    Song, Baoxue
    Wang, Wanping
    ADVANCED RESEARCH ON ARCHITECTONICS AND MATERIALS, 2012, 511 : 28 - 31
  • [3] Review on the Beneficiation of Li, Be, Ta, Nb-Bearing Polymetallic Pegmatite Ores in China
    Li, Siyang
    Liu, Jie
    Han, Yuexin
    Zhang, Shumin
    MINERALS, 2023, 13 (07)
  • [4] BENEFICIATION OF BERYL ORES
    不详
    BRITISH CHEMICAL ENGINEERING, 1967, S : 103 - &
  • [5] BENEFICIATION OF IRON ORES
    FINE, MM
    SCIENTIFIC AMERICAN, 1968, 218 (01) : 28 - &
  • [6] BENEFICIATION OF AUTUNITIC ORES
    AITKENHEAD, WC
    JAEKEL, JA
    TRANSACTIONS OF THE AMERICAN INSTITUTE OF MINING AND METALLURGICAL ENGINEERS, 1959, 214 (01): : 66 - 67
  • [7] COMBINED METHOD OF BENEFICIATION OF LOW-GRADE CELESTITE ORES.
    Stachurski, Jozef
    Ociepa, Zofia
    Archiwum Gornictwa, 1985, 30 (01): : 149 - 159
  • [8] Dry Beneficiation of Kyanite Ores
    Urvantsev, A. I.
    Kashcheev, I. D.
    REFRACTORIES AND INDUSTRIAL CERAMICS, 2013, 54 (03) : 166 - 168
  • [9] ELECTROSTATIC BENEFICIATION OF GOLD ORES
    INCULET, II
    CASTLE, GSP
    QUIGLEY, RM
    HODGSON, KJ
    IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 1988, 24 (03) : 380 - 386
  • [10] Dry Beneficiation of Kyanite Ores
    A. I. Urvantsev
    I. D. Kashcheev
    Refractories and Industrial Ceramics, 2013, 54 : 166 - 168