Dualistic distribution coefficients of elements in the system mineral-hydrothermal solution. II. Gold in magnetite

被引:0
作者
V. L. Tauson
D. N. Babkin
T. M. Pastushkova
V. V. Akimov
T. S. Krasnoshchekova
S. V. Lipko
O. Yu. Belozerova
机构
[1] Russian Academy of Sciences,Vinogradov Institute of Geochemistry, Siberian Branch
来源
Geochemistry International | 2012年 / 50卷
关键词
distribution coefficient; hydrothermal solution; gold; nonautonomous phase; surface;
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摘要
The system magnetite-Au-hydrothermal solution was employed to continue studying the distribution coefficients of trace elements in system with real crystals. The role of surface nonautonomous phase (NP) is elucidated. The distribution coefficient of an Au structural admixture between magnetite and hydrothermal solution at the experimental conditions [450°C, 1 kbar (100 MPa), and fluid sampling by a trap] is, according to the most representative data, 1.0 ± 0.3, and Au is thus not an incompatible element in magnetite, in contrast to pyrite and arsenopyrite [1], minerals for which this coefficient is much lower than one. The NP is enriched in Au with respect to the rest of the crystal by a factor of more than 4000, and this results in an one order of magnitude increase in the bulk distribution coefficient. Similar to pyrite, the reason for the dualistic nature of the distribution coefficient is the presence of an NP, which contains ∼2000 ± 500 ppm Au. The NP occupies the approximately 330-nm surface layer of the crystal, and the chemically bound Au [Au(III), according to XPS data] admixture is evenly distributed with depth within the layer, which is the reason for the strongly determinate dependences of the concentrations of the evenly distributed Au admixture on the size and specific surface area of the crystal. The occurrence of an NP is controlled by the chemistry of the system. The partial substitution of Fe for Mn and the synthesis of a phase close to jacobsite MnFe2O4 results in the disappearance of both the NP itself and the size dependence of the Au concentration. The XPS spectra of O 1s and Fe 2p are used to analyze two models: (i) a single goethite-like (O2−/OH−∼ 1) phase of variable composition and Fe in more than one valence state and (ii) a heterogeneous structure of alternating domains of wuestite- and goethite-like NP. The reason for the “excess” admixture in the former instance can be vacancies at Fe sites, whereas that in the latter one is the interaction of the admixture with nanometer-in-size nanometer in-size strained domains on the surface of the crystal.
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页码:227 / 245
页数:18
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  • [11] Heinrich Ch. A.(1975)Calculation of Multiplet Structure of Core P-Vacancy Levels. II Phys. Rev. B. Condens. Mat. 12 15-19
  • [12] Smagunov N. V.(1974)Calculation of Multiplet Structure of Core P-Vacancy Levels Phys. Rev. B. Condens. Mat. 11 71-77
  • [13] Tauson V. L.(2008)The Effect of Crystal-Melt Partitioning on the Budgets of Cu, Au, and Ag Am. Mineral. 93 1437-1448
  • [14] Tauson V. L.(2007)The Partitioning of As and Au in S-Free and S-Bearing Magmatic Assemblages Geochim. Cosmochim. Acta 71 1764-1782
  • [15] Tauson V. L.(2009)The Principle of Continuity of Phase Formation at Mineral Surfaces Dokl. Earth Sci. 425 471-475
  • [16] Lustenberg E. E.(2000)SIMS Studies of Oxidation Mechanisms and Polysulfide Formation in Reacted Sulfide Surfaces Miner. Engineering 13 857-870
  • [17] Allen G. C.(2003)A Comparison of the Dissolution Behavior of Troilite with Other Iron(II) Sulfides; Implications of Structure Geochim. Cosmochim. Acta 67 831-843
  • [18] Curtis M. T.(1997)Introduction to the Theory of Forced Equilibria: General Principles, Basic Concepts, and Definitions Geochim. Cosmochim. Acta 61 4935-4943
  • [19] Hooper A. J.(2005)Surface Enthalpy of Goethite Clays Clay Miner. 53 113-122
  • [20] Tucker Ph.M.(2005)Morphology of Nanomagnetite Crystals: Implications for Formation Conditions Am. Mineral. 90 1793-1800