The Dissolution Behavior of Pyrite and Chalcopyrite During Low-Temperature Pressure Oxidation: Chalcopyrite Influence on Pyrite Oxidation

被引:1
|
作者
Karimov, Kirill [1 ]
Tretiak, Maksim [1 ]
Rogozhnikov, Denis [1 ]
Dizer, Oleg [1 ]
机构
[1] Ural Fed Univ, Inst New Mat & Technol, Lab Adv Technol Nonferrous & Ferrous Met Raw Mat P, Ekaterinburg 620002, Russia
基金
俄罗斯科学基金会;
关键词
pressure leaching; pyrite; chalcopyrite; sulfuric acid; pressure oxidation; sulfide; elemental sulfur; electrochemical couple; ELECTROCHEMICAL CHARACTERIZATION; LEACHING KINETICS; SILVER ION; COPPER; SURFACE; GALVANOX(TM); CONCENTRATE; MECHANISM; FE3+; ORE;
D O I
10.3390/ma17205132
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The research of this paper was carried out on the low-temperature (100 +/- 2 degrees C) pressure (0.2-0.8 MPa) leaching of pyrite, chalcopyrite and their mixture. According to experiments on chalcopyrite dissolution, increasing the oxygen pressure from 0.2 up to 0.8 MPa had a slight effect on chalcopyrite dissolution. Oxygen pressure and initial sulfuric acid concentration in the range of 10-50 g/L had the greatest positive effect on the pyrite oxidation. The SEM and EDX mappings indicate the chalcopyrite and pyrite surfaces to be passivated by elemental sulfur. The oxidation degree of pyrite in its mixture with chalcopyrite increased significantly from 54.5 up to 80.3% in 0-240 min. The reaction time is relative to the dissolution of the individual mineral, while the dissolution of chalcopyrite remained virtually unchanged. The addition of Cu (II) and Fe (III) ions does not influence pyrite dissolution when chalcopyrite is added in a leaching process, which can be explained by the formation of an electrochemical link between the minerals. The positive effect of chalcopyrite addition is associated with a decreased formation of elemental sulfur on the surface of pyrite. The described method can be used for the hydrometallurgical processing of copper raw materials with increased pyrite content, as well as for the pretreatment of copper concentrates with gold-rich pyrite concentrates to increase the recovery of gold and silver.
引用
收藏
页数:18
相关论文
共 50 条
  • [22] Influence of differential stress on the galvanic interaction of pyrite–chalcopyrite
    Qingyou Liu
    Yanqing Zhang
    Heping Li
    Ionics, 2013, 19 : 77 - 82
  • [23] Analysis of community composition during moderately thermophilic bioleaching of pyrite, arsenical pyrite, and chalcopyrite
    Dopson, M
    Lindström, EB
    MICROBIAL ECOLOGY, 2004, 48 (01) : 19 - 28
  • [24] Influence of differential stress on the galvanic interaction of pyrite-chalcopyrite
    Liu, Qingyou
    Zhang, Yanqing
    Li, Heping
    IONICS, 2013, 19 (01) : 77 - 82
  • [25] Analysis of Community Composition during Moderately Thermophilic Bioleaching of Pyrite, Arsenical Pyrite, and Chalcopyrite.
    M. Dopson
    E.B. Lindström
    Microbial Ecology, 2004, 48 : 19 - 28
  • [26] Study of bacterial attachment during the bioleaching of pyrite, chalcopyrite, and sphalerite
    Rodríguez, Y
    Ballester, A
    Blázquez, ML
    González, F
    Muñoz, JA
    GEOMICROBIOLOGY JOURNAL, 2003, 20 (02) : 131 - 141
  • [27] THE EFFECT OF POLYTETRAFLUOROETHYLENE ON THE PRESSURE OXIDATION OF CHALCOPYRITE
    Jin, Nuo
    Guerra, Eduard
    T.T. CHEN HONORARY SYMPOSIUM ON HYDROMETALLURGY, ELECTROMETALLURGY AND MATERIALS CHARACTERIZATION, 2012, : 207 - 215
  • [28] Flotation separation of chalcopyrite and pyrite via Fenton oxidation modification in a low alkaline acid mine drainage (AMD) system
    Ding, Zhan
    Bi, Yunxiao
    Li, Jie
    Yuan, Jiaqiao
    Dai, Huixin
    Bai, Shaojun
    MINERALS ENGINEERING, 2022, 187
  • [29] OXIDATION OF PYRITE IN LOW-TEMPERATURE ACIDIC SOLUTIONS - RATE LAWS AND SURFACE TEXTURES
    MCKIBBEN, MA
    BARNES, HL
    GEOCHIMICA ET COSMOCHIMICA ACTA, 1986, 50 (07) : 1509 - 1520
  • [30] Effect of Grinding Media on Grinding-Flotation Behavior of Chalcopyrite and Pyrite
    Liao, Ningning
    Wu, Caibin
    Xu, Jindong
    Feng, Bo
    Wu, Ji
    Gong, Yuan
    FRONTIERS IN MATERIALS, 2020, 7