Deep Processing of Dump Slag from the Copper-Nickel Industry

被引:3
|
作者
Kasikov, Alexandr G. [1 ]
Shchelokova, Elena A. [1 ]
Timoshchik, Olga A. [1 ]
Semushin, Vasilij V. [1 ]
机构
[1] Russian Acad Sci, Tananaev Inst Chem, Kola Sci Ctr, Subdiv,Fed Res Ctr Kola Sci Ctr, Apatity 184209, Russia
关键词
utilization; slag; sulfuric acid; dehydration; silica; ferric oxide; SMELTING SLAG; MINE DRAINAGE; SURFACE-AREA; REDUCTION; RECOVERY; SBA-15; TRANSFORMATION; MICROPORES; MESOPORES; HEMATITE;
D O I
10.3390/met13071265
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This work proposes an environmentally safe and economically feasible method of waste copper-nickel production slag utilization (Kola Mining-Metallurgical Company, Nornickel, Kola Peninsula, Russia). This process involves the decomposition of slag by diluted solutions of sulfuric acid (7-10 wt.% H2SO4) with a transfer in a solution of more than 70% silicon, 77% iron and 78% magnesium, and a concentration of non-ferrous metals in the residue (similar to 70%). Copper ions were used in the leaching stage to prevent the release of hydrogen sulfide into the working atmosphere. Dehydration of the solution, followed by washing of water-soluble sulphates from silica, was carried out to separate silica from the leaching solution. The dehydration temperature effect on the silica structural characteristics was determined. The possibility of recovering non-ferrous metals from solutions after silica extraction by precipitation, in the form of copper cementite, and the sum of nickel and cobalt sulfides, was evaluated. Pigment-grade iron dioxide, magnesium sulphate and aluminium hydroxide were obtained by dehydration of the solution after extraction of base metals, calcination and other operations. Sulfuric acid leaching resulted in the disclosure of sulfide grains encapsulated in ferrosilicate, which is a favorable factor for flotation. The depleted residue can be successfully used in the construction industry.
引用
收藏
页数:19
相关论文
共 50 条
  • [1] BEHAVIOR OF PLATINUM IN THE SYSTEM OF THE MATTE-SLAG IN THE PROCESSING OF COPPER-NICKEL MATERIALS
    Amdur, A.
    Selivanov, E.
    Fedorov, S.
    Pavlov, V
    Krasikov, S.
    JOURNAL OF MINING AND METALLURGY SECTION B-METALLURGY, 2021, 57 (02) : 209 - 215
  • [2] IMPROVED PROCESSING OF COPPER-NICKEL MATTES
    FRUEH, EL
    PARKER, PD
    JOURNAL OF METALS, 1983, 35 (09): : 81 - 81
  • [3] A NEW APPROACH TO COPPER-NICKEL ORE PROCESSING
    FLETCHER, AW
    HESTER, KD
    TRANSACTIONS OF THE SOCIETY OF MINING ENGINEERS OF AIME, 1964, 229 (03): : 282 - 291
  • [4] Decomposition of converter copper-nickel slag in solutions of sulfuric acid
    Kopkova, E. K.
    Gromov, P. B.
    Shchelokova, E. A.
    THEORETICAL FOUNDATIONS OF CHEMICAL ENGINEERING, 2011, 45 (04) : 505 - 510
  • [5] Mechanism of Alkali-Activated Copper-Nickel Slag Material
    Zhang, Tingting
    Jin, Haoliang
    Guo, Lijie
    Li, Wenchen
    Han, Junan
    Pan, Andrew
    Zhang, Dan
    ADVANCES IN CIVIL ENGINEERING, 2020, 2020
  • [6] Slag dump processing
    Larionov, V.S.
    Elanskij, G.N.
    Galkin, M.P.
    Stepanov, A.V.
    Stal', 2001, (11): : 88 - 91
  • [7] Decomposition of converter copper-nickel slag in solutions of sulfuric acid
    E. K. Kopkova
    P. B. Gromov
    E. A. Shchelokova
    Theoretical Foundations of Chemical Engineering, 2011, 45 : 505 - 510
  • [8] DETERMINATION OF OSMIUM IN A COPPER-NICKEL COLLECTOR FROM SMELTING OF SULFIDE COPPER-NICKEL ORES
    DANILOVA, FI
    OROBINSKAYA, VA
    KHUDOLEI, GN
    DMITRIEVA, GA
    JOURNAL OF ANALYTICAL CHEMISTRY OF THE USSR, 1974, 29 (11): : 1961 - 1963
  • [9] FLOTATION BEHAVIOR OF PYRRHOTITE IN THE PROCESSING OF COPPER-NICKEL ORES
    IWASAKI, I
    JOURNAL OF METALS, 1987, 39 (10): : A26 - A26
  • [10] Emissions from the copper-nickel industry on the Kola Peninsula and at Noril'sk, Russia
    Boyd, Rognvald
    Barnes, Sarah-Jane
    De Caritat, Patrice
    Chekushin, Victor A.
    Melezhik, Victor A.
    Reimann, Clemens
    Zientek, Michael L.
    ATMOSPHERIC ENVIRONMENT, 2009, 43 (07) : 1474 - 1480