Melting of Gold-Containing Concentrates with Copper Production Lead Slags

被引:0
|
作者
Mazulevskii, E. A. [1 ]
Kovzalenko, T. V. [1 ]
Seitkhanov, B. [1 ]
Dobryakova, O. P. [1 ]
机构
[1] Natl Ctr Complex Proc Mineral Raw Mat Kazakhstan, Alma Ata, Kazakhstan
关键词
gold-arsenic concentrate; lead osmium; rhenium-containing slag; melting;
D O I
10.1007/s11015-018-0599-9
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Results are presented for a study of the pyrometallurgical treatment of gold-arsenic concentrates with lead osmium-rhenium-containing slags. Conditions are found for preparing alloy ingots consisting of lead, or predominantly of lead sulfide, or both phases. It is shown that with gravitation deposition up to 65-68% osmium is concentrated in 17-25% matte. Gold is almost uniformly distributed over the height of ingots. For industrial application of the results obtained, it is recommended that molten products are poured into a mold heated to 500-550A degrees C, and after natural cooling the lower 25% of alloy is separated for osmium extraction, and gold is extracted from the rest of the alloy by well-known technology. Reduction kinetics are studied for gold, osmium, rhenium, and arsenic. According to kinetic curves, recovery of rhenium in slag proceeds rapidly; osmium recovery ceases in 20-25 min; gold is concentrated in the alloy in 10 min. arsenic is transferred into a gas phase in 10 min, and its concentration in alloy comprises 0.2% on average, and in slags 0.27-0.63%.
引用
收藏
页码:1001 / 1008
页数:8
相关论文
共 50 条
  • [31] Gold-Containing dendrimers: A new class of macromolecules
    Oriol Rossell
    Miquel Seco
    Anne-Marie Caminade
    Jean-Pierre Majoral
    Gold Bulletin, 2001, 34 : 88 - 94
  • [32] Viscosity of the Slags of the Autogenous Smelting of Copper–Zinc Concentrates
    E. N. Selivanov
    S. N. Tyushnyakov
    R. I. Gulyaeva
    Russian Metallurgy (Metally), 2020, 2020 : 959 - 963
  • [33] Development of the Processing Technology of a Gold-Containing Sulfide Concentrate
    Neta, V.
    Strizhko, L. S.
    RUSSIAN JOURNAL OF NON-FERROUS METALS, 2008, 49 (02) : 104 - 109
  • [34] Role of the Support in Gold-Containing Nanoparticles as Heterogeneous Catalysts
    Sankar, Meenakshisundaram
    He, Qian
    Engel, Rebecca, V
    Sainna, Mala A.
    Logsdail, Andrew J.
    Roldan, Alberto
    Willock, David J.
    Agarwal, Nishtha
    Kiely, Christopher J.
    Hutchings, Graham J.
    CHEMICAL REVIEWS, 2020, 120 (08) : 3890 - 3938
  • [35] GOLD-CONTAINING DRUGS AND THE CONTROL OF PROTEOLYTIC-ENZYMES
    ROHOZKOVA, D
    STEVEN, FS
    BRITISH JOURNAL OF PHARMACOLOGY, 1983, 79 (01) : 181 - 189
  • [36] Development of the processing technology of a gold-containing sulfide concentrate
    V. Neta
    L. S. Strizhko
    Russian Journal of Non-Ferrous Metals, 2008, 49 : 104 - 109
  • [37] HISTORY AND CURRENT STATUS OF GOLD-CONTAINING ANTIARTHRITIC DRUGS
    SUTTON, BM
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1983, 185 (MAR): : 10 - MEDI
  • [38] Investigations into extracting gold from gold-containing magnesium fraction by chlorination
    L. S. Strizhko
    R. I. Normurotov
    D. B. Kholikulov
    Russian Journal of Non-Ferrous Metals, 2009, 50 : 348 - 352
  • [39] GOLD-CONTAINING DERIVATIVES OF CYCLOPROPANECARBOXYLIC ACID-AMIDES
    PEREVALOVA, EG
    BOLESOV, IG
    KALYUZHNAYA, YS
    VOYEVODSKAYA, TI
    KUZMINA, LG
    KORSUNSKY, VI
    GRANDBERG, KI
    JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1989, 369 (02) : 267 - 280
  • [40] INVESTIGATION OF INTERACTION BETWEEN SULFIDES AND GOLD-CONTAINING SOLUTIONS
    SAKHAROVA, MS
    BATRAKOVA, YA
    RYAKHOVSKAYA, SK
    GEOKHIMIYA, 1975, (05): : 740 - 746