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Geochemistry and statistical analyses of porphyry system and epithermal veins at Hizehjan in northwestern Iran Cover

Geochemistry and statistical analyses of porphyry system and epithermal veins at Hizehjan in northwestern Iran

Open Access
|Jan 2018

References

  1. Barnes, H.L., 1979. Solubilities of ore minerals. [In:] H.L, Barnes (Ed). Geochemistry of hydrothermal ore deposits, 2nd ed. John Wiley & Sons, New York. pp 404-410.
  2. Bodnar, R.J., 1993. Revised equation and table for determining the freezing point depression of H2O-NaCl solutions. Geochimca et Cosmochimica Acta 57, 683-684.10.1016/0016-7037(93)90378-A
  3. Browne, P.R.L., 1978. Hydrothermal alteration in active geothermal fields. Annual Reviews of Earth and Planetary Science 6, 229-250.10.1146/annurev.ea.06.050178.001305
  4. Browne, P.R.L. & Ellis., A.J., 1970. The Ohaki-Broadlands hydrothermal area, New Zealand: Mineralogy and related geochemistry. American Journal of Science 269, 97-131.10.2475/ajs.269.2.97
  5. Buchanan, L.J., 1981. Precious Metal Deposits Associated with Volcanic Environments in the Southwest: In Relations of Tectonics to Ore Deposits in the Southern Cordillera. Geological Society of Arizona, Digest 14, 237-262.
  6. Cole, D.R. & Drummond, S.E., 1986. The effect of transport and boiling on Ag/Au ratios in hydrothermal solutions: a preliminary assessment and possible implications for the formation of epithermal precious metal ore deposits. Journal of Geochemical Exploration 25, 45-79.10.1016/0375-6742(86)90007-5
  7. Davis, C., 1986. Statistics and Data Analysis in Geology. John Wiley & Sons, New York. 640 pp.
  8. Dreier, J.E., 2005. The Environment of vein Formation and Ore Deposition in the Purisima-Colon Vein System, Pachuca Real del Monte District, Hidalgo, Mexico. Economic Geology 100, 1325 - 1347.10.2113/gsecongeo.100.7.1325
  9. Grancea, L., Bailey, L., Leroy, J., Banks, D., Marcoux, E., Milési, J.P., Cuney, M., André, A.S., Istvan, D. & Fabre, C., 2002. Fluid evolution in the Baia Mare epithermal gold/polymetallic district, Inner Carpathians, Romani. Mineral Deposita 37, 630-647.10.1007/s00126-002-0276-5
  10. Hedenquist, J.W., Arribas, A.R. & Gonzalez-Urien, E., 2000. Exploration for epithermal gold deposits. Reviews in Economic Geology 13, 245-277.10.5382/Rev.13.07
  11. Henley, R.W., Brown, K.L., 1985. A practical guide to the thermodynamics of geothermal fluids and hydrothermal ore deposits. Reviews in Economic Geology 2, 25-44.10.5382/Rev.02.02
  12. Howarth, R.I., 1993. Statistics and Data Analysis in Geochimical Prospecting. [In:] G.J.S, Govett (Ed). Handbook of Exploration Geochemistry. Elsever, Amsterdam. 2, 44-75.
  13. Krauskopf, K.B., 1979. Introduction to geochemistry. 2nd ed. McGraw-Hill Kogakushu, New York. 617pp.
  14. McLemore, V.T., 2008. Geochemistry and statistical analyses of epithermal veins at the Carlisle and Center mines, Steeple Rock District. New Mexico, USA. Arizona Geological Society Digest 22, 485-496.
  15. Nabavi, M., 1976. An Introduction to the Geology of Iran. Geological Society of Iran, Teheran. (in Persian). 109 pp.
  16. Nie, N.H., Hull, C.H. & Jenkins, J.G., Steinbrenner, K. & Bent, P.H., 1975. Statistical package for the Social Sciences. McGraw-Hill Book Co, New York, 675 pp.
  17. Pokrovski, G.S., Borisova, Yu.A. & Harrichoury, J.C., 2008. The effect of sulfur on vapor- liquid fractionation of metals in hydrothermal systems. Earth and Planetary Science Letters 266, 345-362.10.1016/j.epsl.2007.11.023
  18. Radmard, K., Zamanian, H., Hosseinzadeh, M.R. & Ahmadi Khalaj, A., 2017. Geochemistry and hydrothermal evolution of the Mazraeh Shadi-Hizehjan precious and base metal deposit, northeastern Tabriz, Iran. Journal of Mineralogy and Geochemistry 194-3, 227-250.10.1127/njma/2017/0059
  19. Rassi, R. & Afzal, P., 2015. Correlation between Au Lithogeochemical Anomalies and Fault-density using Geostatistical and Fractal Modeling in Sharaf Abad-Hizehjan Area, NW Iran. Universal Journal of Geoscience 3, 51-58.10.13189/ujg.2015.030202
  20. Sillitoe, R.H., 1999. Styles of high-sulfidation gold, silver and copper mineralization in porphyry and epithermal environments. [In:] Weber, G. (Ed.): Pacrim ’99 Congress, Bali, Indonesia. Proceedings. Australasian Institute of Mining and Metallurgy, Parkville, 29-44.
  21. Sillitoe, R.H. & Hedenquist, J.W., 2003. Linkage between volcanotectonic settings, ore-fluid compositions, and epithermal precious- metal deposits. Society of Economic Geologist, Special Publication 10, 315-343.
  22. Simmons, S.F. & Browne, P.R.L., 2000. Hydrothermal minerals and precious metals in the Broadlands-Ohaaki geothermal system: Implications for understanding low-sulfidation epithermal environments. Economic Geology 95, 971-999.10.2113/95.5.971
  23. Tuysuz, N. & Yaylali, G., 2005. Geostatistics. Karadenis Technical University Publication 220, 400 pp.
DOI: https://doi.org/10.1515/logos-2017-0020 | Journal eISSN: 2080-6574 | Journal ISSN: 1426-8981
Language: English
Page range: 183 - 200
Submitted on: Jun 5, 2017
Accepted on: Sep 15, 2017
Published on: Jan 23, 2018
Published by: Adam Mickiewicz University
In partnership with: Paradigm Publishing Services
Publication frequency: 3 issues per year

© 2018 Kaikhosrov Radmard, Hassan Zamanian, Mohamad Reza Hosseinzadeh, Ahmad Ahmadi Khalaji, published by Adam Mickiewicz University
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.