Kinetics of pyrite oxidation in sodium carbonate solutions

被引:50
|
作者
Ciminelli, VST [1 ]
OsseoAsare, K [1 ]
机构
[1] PENN STATE UNIV, DEPT MAT SCI & ENGN, UNIVERSITY PK, PA 16802 USA
关键词
D O I
10.1007/BF02660961
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The kinetics of pyrite oxidation in sodium carbonate solutions were investigated in a stirred vessel, under temperatures ranging from 50 degrees C to 85 degrees C, oxygen partial pressures from 0 to 1 atm, particle size fractions from -150 + 106 to -38 + 10 mu m (-100 + 150 Mesh to -400 Mesh + 10 mu m) and pH values of up to 12.5. The rate of the oxidation reaction is described by the following expression: -dN/dt = SbkpO(2)(0.5) [OH-](0.1) where N represents moles of pyrite, S is the surface area of the solid particles, b is a stoichiometric factor, k is an apparent rate constant, pO(2) is the oxygen partial pressure, and [OH-] is the hydroxyl ion concentration. The experimental data were fitted by a stochastic model for chemically controlled reactions, represented by the following fractional conversion (X) vs time (t) equation: (1 - X)(-2/3) - 1 = k(ST)t The assumption behind this model, i.e., surface heterogeneity leading to preferential dissolution, is supported by the micrographs of reacted pyrite particles, showing pits created by localized dissolution beneath an oxide layer. In addition to the surface texture, the magnitude of the activation energy (60.9 kJ/mol or 14.6 +/- 2.7 kcal/mol), the independence of rate on the stirring speed, the inverse relationship between the rate constant and the initial particle diameter, and the fractional reaction orders are also in agreement with a mechanism controlled by chemical reaction.
引用
收藏
页码:209 / 218
页数:10
相关论文
共 50 条
  • [21] The role of carbonate ions in pyrite oxidation in aqueous systems
    Caldeira, Claudia L.
    Ciminelli, Virginia S. T.
    Osseo-Asare, Kwadwo
    [J]. GEOCHIMICA ET COSMOCHIMICA ACTA, 2010, 74 (06) : 1777 - 1789
  • [22] Chemical oxidation kinetics of pyrite in bioleaching processes
    Boon, M
    Heijnen, JJ
    [J]. HYDROMETALLURGY, 1998, 48 (01) : 27 - 41
  • [23] KINETICS OF THE CRYSTALLIZATION OF SODIUM PERBORATE FROM CARBONATE-BICARBONATE SOLUTIONS.
    Shubin, A.S.
    Futoryanskii, A.Ya.
    Puchen'kina, N.A.
    Rassokhina, V.N.
    [J]. Journal of applied chemistry of the USSR, 1984, 57 (12 pt 1): : 2484 - 2488
  • [24] Effect of sodium oleate on inhibiting pyrite oxidation
    Jiang, CL
    Wang, XH
    Parekh, BK
    [J]. INTERNATIONAL JOURNAL OF MINERAL PROCESSING, 2000, 58 (1-4) : 305 - 318
  • [25] Effect of ionic strength on the kinetics of pyrite oxidation
    Chirita, P.
    [J]. GEOCHIMICA ET COSMOCHIMICA ACTA, 2010, 74 (12) : A176 - A176
  • [26] OXIDATION-KINETICS OF SEDIMENTARY PYRITE IN SEAWATER
    MORSE, JW
    [J]. GEOCHIMICA ET COSMOCHIMICA ACTA, 1991, 55 (12) : 3665 - 3667
  • [27] ANODIC-OXIDATION KINETICS OF AQUEOUS POTASSIUM CARBONATE POTASSIUM TETRABORATE SOLUTIONS
    TOROPTSEVA, NT
    KHOMUTOV, NE
    VINOGRADOVA, TV
    [J]. JOURNAL OF APPLIED CHEMISTRY OF THE USSR, 1979, 52 (10): : 2146 - 2151
  • [28] KINETICS OF THE OXIDATION OF GALENA IN SODIUM HYDROXIDE SOLUTIONS UNDER OXYGEN PRESSURE
    ANDERSEN, JE
    HALPERN, J
    SAMIS, CS
    [J]. JOURNAL OF METALS, 1953, 5 (04): : 554 - 558
  • [29] Kinetics and mechanism of diethyl sulfide oxidation by sodium peroxoborate in aqueous solutions
    Lobachev, V. L.
    Dyatlenko, L. M.
    Zubritskii, M. Yu.
    [J]. KINETICS AND CATALYSIS, 2016, 57 (06) : 742 - 749
  • [30] Kinetics and mechanism of diethyl sulfide oxidation by sodium peroxoborate in aqueous solutions
    V. L. Lobachev
    L. M. Dyatlenko
    M. Yu. Zubritskii
    [J]. Kinetics and Catalysis, 2016, 57 : 742 - 749