1887
ASEG2006 - 18th Geophysical Conference
  • ISSN: 2202-0586
  • E-ISSN:

Abstract

Graphitic and iron-rich rocks commonly are considered to be efficient sites for deposition of gold in lode-gold systems, and are given special attention in exploration programs. In this work, thermodynamic modelling methods are used to clarify the mechanisms and efficiency of deposition of native gold in graphite- and iron-bearing wallrocks of lode-gold deposits under greenschist facies conditions. In all of the models, a fully equilibrated “lode-gold-type” mineralising fluid is initially generated by reaction of a simplified CO-HS-NaCl-Au-bearing fluid with granodiorite at middle greenschist facies conditions (P=300MPa, T=420°C), followed by reaction of the fluid with a specified rock composition at lower greenschist facies conditions (P=200MPa, T=320°C) reflecting uprise of the mineralising fluid to a higher crostai level. Effects of variable graphite and iron on gold deposition are evaluated by calculating mineral alteration assemblages (including native gold) where graphite and iron are allowed to vary across specified ranges, and effects of increasing amounts of mineralising fluid are evaluated by allowing fluid/rock (F/R) ratio to range widely. The results reveal that no gold is deposited where graphite and iron are absent from the wallrock, only a small amount of graphite is required in a graphite-bearing rock to achieve maximum deposition of native gold, only a moderate amount of Fe is required in an Fe-bearing rock to achieve maximum deposition of native gold, and Fe-bearing rocks deposit gold much more efficiently than graphite-bearing rocks. These results confirm the known importance of redox conditions for deposition of native gold, but elevate the importance of sulphidation reactions over graphite oxidation reactions in efficiency of gold deposition from lode-gold mineralising fluids.

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/content/journals/10.1071/ASEG2006ab106
2006-12-01
2026-01-13
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References

  1. Berman, R.G., 1988, Internally-consistent thermodynamic data for minerals in the system Na2O - K2O - CaO - MgO -FeO - Fe2O3 - Al2O3 - SiO2 - TiO2 - H2O - CO2: Journal of Petrology 29, 445-522.
  2. Bierlein, F.P., Cartwright, I. and McKnight S., 2001, The role of carbonaceous “indicator” slates in the genesis of lode gold-mineralization in the Western Lachlan Orogen, southeastern Australia. Economic Geology 96, 431-451.
  3. Groves, D.I., Goldfard, R.J., Gebre-Mariam, M., Hagemann, S.G. and Robert, F., 1998: Orogenic gold deposits: A proposed classification in the context of their crustal distribution and relationship to other gold deposit types.: Ore Geology Reviews 13, 7-27.
  4. Le Maitre, R.W., 1976, The chemical variability of some igneous rocks: Journal of Petrology 17, 589-637.
  5. McCuaig, T. C. & Kerrich, R., 1998, P-T-t-deformation-fluid characteristics of lode gold deposits: evidence from alteration systematics: Ore Geology Reviews 12, 381-453.
  6. Mikucki, E. J., 1998, Hydrothermal transport and depositional processes in Archean lode-gold systems: A review: Ore Geology Reviews 13, 307-321.
  7. Phillips, G. N. and Groves, D. I., 1983, The nature of Archaean gold-bearing fluids as deduced from gold deposits of Western Australia: Journal of the Geological Society of Australia 30, 25-39.
  8. Shvarov, Y. and Bastrakov E., 1999, HCh: a software package for geochemical equilibrium modelling. User’s Guide, Australian Geological Survey Organisation Record 1999/25.
  9. Zhou, T., Phillips, G. N., Derm, S. and Burke, S., 2003, Woodcutters goldfield: gold in an Archaean granite, Kalgoorlie, Western Australia: Australian Journal of Earth Sciences 50, 553-569.
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  • Article Type: Research Article
Keyword(s): graphite; iron; lode-gold; thermodynamic modelling
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