Mao J W, Kerrich R, Li Y h, et al. High ratios in the Wangu gold deposit, Hunan province, China: Implications for mantle fluids along the Tanlu deep fault zone [J]. Geochemical Journal, 36:197~208.
[3]
朱岳年,吴新年.二氧化碳地质研究[M].兰州:兰州大学出版社,1994.
[4]
Chiavas A R, Barnes I, Evans W C, et al. Liquid carbon dioxide of magmatic origin and its role in volcanic eruptions [J].Nature, 1987,236: 587~589.
[5]
戴金星,宋岩,戴春林,等.中国东部无机成因气及其气藏形成条件[M].北京:科学出版社,1995.
[6]
Ballentine C J, O′Nions R K. The nature of Mantle neon contributions to Vienna Basin hydrocarbon reservoirs [J]. Earth Planet. Sci. Lett., 1991, 113:553~567.
[7]
Sherwood Lollar B, Ballentine C J, O′Nions R K. The fate of mantle-derived carbon in a continental sedimentary basin: Integration of C/He relationships and stable isotope signatures [J].Geochim. Cosmochim. Acta, 1997, 61:2295~2307.
[8]
Sorey M L, Kennedy B M, Evans W C, et al. Helium isotope and gas discharge variations associated with crustal unrest in long Valley Caldra, Califomia[J]. J. Geophys. Res. 1993, 98B9:15871~15889.
[9]
Giggenbach W F. Tectonic and major processes governing the chemistry of water and gas discharges from the Rotoma geothermal field, New Zealand[J]. Geothermics, 1992, 21: 121~140.
[10]
Norman D I, Musgrave J A. N2-Ar-He compositions in fluid inclusions: indicators of fluid source[J]. Geochim. Cosmochim.Acta, 1994, 58:1119~1131.
[11]
Jenden P D, Kaplan I R, Poreda R J, et al. Origin of nitrogen rich gases in the Californian great valley: evidence from helium, carbon, and nitrogen isotope ratios[J]. Geochim. Cosmochim. Acta, 1988, 52:851~861.
[12]
孙晓明,Norman D I,孙凯,等.一种新的成矿流体示踪体系--流体包裹体N2-Ar-He体系[J].地质论评,2000,46(1):99~104.
Zhang Youxue, Zindier A. Noble gas constraints on the evolution of the Earth′s atmosphere [J]. J. Geophys. tRes., 1989,94B10: 13729~13737.
[18]
Marty B. Nitrogen content of the mande inferred from N2-Ar correlation in oceanic basalts[J]. Nature, 1995, 377:326~329.
[19]
Tolstikhin I N, Marty B. The evolution of terrestrial volatiles:A view from helium, neon, argon and nitrogen isotope modelling[J]. Chem. Geol., 1998, 147:27~52.
Weinlich F H, Brauer K, Kampf H, et al. An active subcontinental mantle volatile system in the western Egre rift, Central Europe: Gas flux, isotopic (He, C, and N) and compositional fingerprints [J]. Geochim. Cosmochim. Acta, 1999, 63 (21):3653~3671.
[22]
Carroll M R. Diffusion of Ar in rhylite, orthoclase and albite composition glasses[J]. Earth Planet. Sci. Lett., 1991, 103:156~168.
[23]
Marty B, Zimmermann L. Volatiles (He, C, N, Ar) in midocean ridge basalts: Assessment of shallow-level fractionation and characterization of source composition[J]. Geochim. Cosmochim.Acta, 1999, 63(21):3619~3633.
[24]
Kurz M D, Geist D. Dynamics of the Galapagos hotspot from helium isotope geothemistry [J]. Geochim. Cosmochim. Acta,1999, 63:4139~4156.
[25]
Burnard P G, Farley K A, Turner G. Multiple fluid pulses in a Samoan harzburgite[J]. Chemical Geology, 1998, 147:99~114.
Condomines M, Gronvold K, Hooker P J, et al. Helium, oxygen, strontium and neodymium isotopic relationships in Icelandic volcanics[J]. Earth Planet. Sci. Lett., 1983, 66:125~136.
[30]
Matsumoto T, Pinti D L, Matsuda J I, et al. Recycled noble gas and nitrogen in the subcontinental lithospheric mantle: Implications from N-He-Ar in fluid inclusions of SE Australian xenoliths[J]. Geochemical Journal, 2002, 36:209~217.
[31]
Mohapatra R K, Murty S V S. Search for the mantle nitrogen in the ultramafic xenoliths from San Carlos, Arizona[J]. Chem.Geol., 2000, 164:305~320.
[32]
Rocholl A, Heusser E, Kirsten T, et al. A noble gas profile across a Hawaiian mantle xenolith: Coexisting accidental and cognate noble gases derived from the lithospheric and asthenospheric mantle beneath Oahu[J]. Geochim. Cosmochim. Acta,1996,60:4773~4783.
[33]
Moore J N, Norman D I, Kennedy B M. Fluid inclusion gas compositions from an active magmatic-hydrothermal system: a case study of the Geysers geothermal field, USA[J]. Chem. Geol., 2001,173:3~30.
[34]
Marty B, Jambon A. C/3He in volatile fluxes from the solid Earth: Implications for carbon geodynamics[J]. Earth Planet. Sci.Lett., 1987, 83:16~26.
[35]
O′Nions R K, Oxburgh E R. Helium, volatile fluxes and the development of continental crust [J]. Earth Planet. Sci. Lett.,1988, 90:331~347.
[36]
Trull T, Nadeau S, Pineau F, et al. C-He systematics in hotspot xenoliths: Implications for mantle carbon contents and carbon recycling[J]. Earth Planet. Sci. Lett., 1993, 118:43~64.
[37]
Porcelli D R, O′Nions R K, Galer S, et al. Isotopic relationships of volatile and lithophile trace elements in continental ultramafic xenoliths[J].Contrib. Mineral Petrol., 1992, 110:528~538.
[38]
Tao Mingxin, Xu Yongchang, Chen Fayuan, et al. Characteristics of helium isotopes in CO2 gas in the Yaojie coalfield and its significance[J]. Chinese Science Bulletin, 1992, 37 (2):126~130.
[39]
Aeschbach Hertig W, Kipfer R, Hofer M, et al. Quantification of gas fluxes from the subcontinental mantle: The example of Laacher See, a maar lake in Germany[J]. Geochim. Cosmochim. Acta., 1996, 60:31~41.
Jean Baptiste P, Charlou J L, Stievenard M, et al. Helium and methane measurements in hydrothermal fluids from the mid-Atlantic ridge: the Snake pit site at 23°N[J]. Earth Planet. Sci.Lett., 1991, 106:17~28.
Craig H, Horibe Y. 3He and methane in Sakurajima Caldra,Kagoshima Bay, Japan[J]. Earth Planet. Sci. Lett., 1994, 123:221~226.
[44]
Giggenbach W F. Isotopic composition of helium and CO2 and CH4 contents in gases produced along the New Zealand part of a convergent plate boundary[J]. Geochim. Cosmochim. Acta,1993, 57:3427~3455.