Rollinson H R. 1993. Using geochemical data: Evaluation, presentation, interpretation[M]. New York: Longman Scientific and Technical Limited. 1-343.
[21]
Sheppard S M F. 1986. Characterization and isotopic variations in natural waters[J]. Reviews in Mineralogy, 16: 165-183.
[22]
Sengor A M, Natal\'in B A and Burtman V S. 1993. Evolution of the Altaid tectonic collage and Paleozoic crustal growth in Eurasia[J]. Nature, 364: 299-307.
[23]
Taylor H P. 1974. The application of oxygen and hydrogen isotope studies to problems of hydrothermal alteration and ore deposit[J]. Econ. Geol., 69: 843-883.
[24]
Taylor B E. 1976. Origin and significance of C-O-H fluids in the formation of Ca-Fe-Si skarn, Osgood Mountains, Humboldt County, Nevada[D]. Unpublished PhD thesis, Stanford University. 306p.
[25]
Windley B F, Kroner A, Guo J H, Qu G S, Li Y Y and Zhang C. 2002. Neoproterozoic to Paleozoic geology of the Altai orogen,NW China: New zircon age data and tectonic evolution[J]. Journal of Geology, 110: 719-739.
[26]
Xiao W J, Windley B F, Badarch G, Sun S, Li J Y, Qin K Z and Wang Z. 2004. Palaeozoic accretionary and convergent tectonics of the southern Altaids: Implications for the growth of Central Asia[J]. J. Geol. Soc., 161: 339-342.
Bodnar R J. 1983. A method of calculateing fluid inclusion volumes based on vapor bubble diameters and PVTX properties of inclusion fluids[J]. Econ. Geol., 78: 535-542.
[57]
Bodnar R J. 1993. Reviced equation and table for determining the freezing point depression H2O-Nacl solutions[J]. Geochim. Cosmochim. Acta, 57: 683-684.
[58]
Burruss R C. 1981. Analysis of fluid inclusions: phase equilibria at constant volume[J]. Am. J. Sci., 281: 1104-1126.
[59]
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]. Geochim. Cosmochim. Acta, 27: 43-52.
[60]
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.
[61]
Friedman I and O\'Neil JR. 1977. Complication of stable isotope fractionation factors of geochemical interest in data of geochemistry[A]. In: Fleischer M, ed. Geological professional paper[C]. U. S. Geological Survey. 6th edition. 440p.
[62]
Hoefs J. 1997. Stable isotope geochemistry[M]. 4rd ed. Berlin: Spring Verlag. 1-250.
[63]
Li J Y, Xiao W J, Wang K Z, Sun G H and Gao L M. 2003. Neoproterozoic to Paleozoic tectonostratigraphy, magmatic activities and tectonic evolution of eastern Xinjiang, NW China[A]. In: Mao J W, Goldfarb R J, Seltmann R, et al. eds. Tectonic evolution and metallogeny of the Chinese Altay and Tianshan[C]. LAGOD Guidebook Series 10: CERCAMS/NHM London. 31-74.
[64]
O\'Neil J R, Clayton P N and Mayada T K. 1969. Oxygen isotope fractionation in divalent metal carbonates[J]. Chemistry Geophysics, 51: 5547-5558.
[65]
Ohmoto H. 1986. Stable isotope geochemistry of ore deposits[J]. Reviews in Mineralogy, 16: 491-559.
[66]
McCrea M. 1950. The isotopic chemistry of carbonates and a paleotemperature scale[J]. J. Chem. Phys., 18: 849-857.
[67]
Mao J W, Wang Y T, Ding T P, Chen Y, Wei J X and Yin J. 2002. Dashuiguo tellurium deposit in Sichuan Province, China: S, C, O and H isotope data and their implications on hydrothermal minera-lization[J]. Resource Geology, 52: 15-23.