Hagemann S G and Luders V. 2003. P-T-X conditions of hydrothermal fluids and precipitation mechanism of stibnite-gold mineralization at the Wiluna lode-gold deposits, Western Australia: Conventional and infrared microthermometric constraints[J]. Mineralium Deposita, 38: 936-952.
[5]
Kerrich R, Goldfarb R J, Groves D I Garwin S and Jia Y F. 2000. The characteristics, origins, and geodynamic settings of super giant gold metallogenic provinces[J]. Sicence in China, 43: 1-68.
[6]
Ohmoto H. 1972. Systematics of sulfur and carbon isotopes in hydrothermal ore deposits[J]. Econ. Geol., 67: 551-578.
[7]
Ridley J R and Diamond L W. 2000. Fluid chemistry of orogenic lode-gold deposits and implications for genetic models[J]. Reviews in Economic Geology, 13: 141-162.
[8]
Roedder E. 1984. Fluid inclusions, reviews in mmineralogy[J]. Mineral. Soc. Amer., 12: 1-644.
[9]
Schwartz M O. 1989. Determining phase volumes of mixed CO2-H2O inclusion using microthermometric measurements[J]. Mineralium Deposita, 24: 43-47.
[10]
Shepherd T J, Rankin A H and Alderton D H M. 1985. A practical guide to fluid Inclusion studies[M]. Blackie: Chapman & Hall. 1-239.
[11]
Taylor H P Jr. 1974. The application of oxygen and hydrogen isotope studies to problems of hydrothermal alteration and ore deposition[J]. Econ. Geol., 69(6): 843-883.
Bodnar R J. 1983. A method of calculateing fluid inclusion volumes based on vapor bubble diameters and PVTX properties of inclusion fluid[J]. Econ. Geol., 78: 535-542.
[41]
Bodnar R J. 1993. Revised equation and stable for determining the freezing point depression of H2O-NaCl solutions[J]. Geochimica et Cosmochimiea Acta, 57(3): 683-684.
[42]
Chen Y J, Sui Y H and Gao X L. 2001. Fluid geochemistry of Tieluping Ag ore and its implications for the CPMF model[J]. In: Water-Rock Interaction 2001, Lisse; Swets & Zeitlinger. 689-692.
[43]
Chen Y J, Pirajno F and Sui Y H. 2004. Isotope geochemistry of the Tieluping silver deposit, Henan, China: A case study of orogenic silver deposits and related tectonic setting[J]. Mineralium Deposita, 39: 560-575.
[44]
Chen Y J, Pirajno F and Sui Y H. 2005. Geology and D-O-C isotope systematics of the Tieluping silver deposit, Henan, China: Implications for ore genesis[J]. Acta Geologica Sinica, 79: 106-119.
[45]
Chen Y J, Pirajno F, Qi J P, Li J and Wang H H. 2006. Ore geology, fluid geochemistry and genesis of the Shanggong gold deposit, eastern Qinling Orogen, China[J]. Resource Geology, 56:99-116.
[46]
Clayton R N and Mayeda T K. 1963. The use of bromine pentafluoride in the extraction of oxygen from oxides and silicates for isotopic analysis[J]. Geochimica et Cosmochimica Acta, 27: 43-52.
[47]
Clayton R N, James R, O\'Neil, et al. 1972. Oxygen isotope exchange between quartz and water[J]. Journal of Geophysical Reaserch, 7(17): 3057-3067.
[48]
Coleman M L, Sheppard T J, Durham J J, Rouse J E and Moore G R. 1982. Reduction of water with zinc for hydrogen isotope analysis[J]. Analytical Chemistry, 54: 993-995.
[49]
Goldfarb R J, Ayuso R, Miller M L, Ebert Sh W, Marsh E E, Petsel S A, Miller L D, Bradley D, Johnson C and McClelland W. 2004. The late Cretaceous Donlin Creek gold deposit, Southwestern Alaska: Controls on epizonal ore forming[J]. Econ, Geol, 99: 643-671.
[50]
Groves D I, Goldfarb 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 deposits types[J]. Ore Geology Reviews, 13: 7-27.
[51]
Hagemann S G and Brown P E. 1996. Geobarometry in Archean load-gold deposits[J]. Eur. J. Mineral., 8: 937-960.