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众多研究资料表明了岩浆热液成矿系统发育于板块碰撞造山带环境,或形成于拉伸环境,或位于板内裂谷环境中.文中介绍国外近期对岩浆成矿系统的矿床类型,以及这些矿床所产出的大地构造环境、岩浆岩特征、矿化蚀变特征和成矿热液系统的认知和研究现状.对产于这些环境中的岩浆系统特征及其与之伴生的矿床类型的了解,对区域成矿带的划分和深部找矿勘探工作具有十分重要的意义.

参考文献

[1] Groves D I;Goldfarb R J;Gebre-Mariam M et al.Orogenic gold deposits:A proposed classification in the context of their crustal distribution and relationship to other gold deposit types[J].Ore Geology Reviews,1998,13:7-27.
[2] Goldfarb R H;Hart C;Miller M.The Tintina gold belt:A global perspective[A].,2000
[3] Richard H. Sillitoe .Some metallogenic features of gold and copper deposits related to alkaline rocks and consequences for exploration[J].Mineralium deposita,2002(1):4-13.
[4] Lowell J D;Guilbert J M .Lateral and vertical alteration-mineralization zoning in porphyry ore deposits[J].Economic Geology,1970,65:373-408.
[5] Hollister V F.Geology of the porphyry copper deposits of western hemisphere[J].Am Ins Min Metall Pet Eng,1978
[6] Pirajno F.Hydrothermal mineral deposits:Principle and fundamental concepts for the exploration geologist[M].Springer-Verlag,1992
[7] White N C;Leake M J;McCaughey S N et al.Epithermal gold deposits of the southwest Pacific[J].Journal of Geochemical Exploration,1995,54:87-136.
[8] Heald P;Foley N K;Hayba D O .Comparative anatomy of volcanic-hosted epithermal deposits:Acid-sulfate and adularia-sericite types[J].Economic Geology,1987,82(01):1-26.
[9] Henley R W;Ellis A J .Geothermal systems ancient and modern:a geological review[J].Earth-Science Reviews,1983,19:1-50.
[10] Giggenbach W F .Isotopic shifts in waters from geothermal and volcanic steam along convergent plate boundaries and their origin[J].Earth and Planetary Sciences Letters,1992,113:495-510.
[11] Giggenbach W F.The origin and evolution of fluids in magmatic-hydrothermal systems[A].New YorkWiley,1997:737-796.
[12] Hedenquist J W;Matsuhisa Y;Izawa E et al.Geology;geochemistry;and origin of high sulfidation Cu-Au mineralization in the Nansatsu District;Japan[J].Economic Geology,1994,89(01):1-30.
[13] Hedenquist J W;Arribas A J .Evolution of an intrusion-centered hydrothermal system:Far Southeast-Lepanto porphyry and epithermal Cu-Au deposits;Philippines[J].Economic Geology,1998,93:373-404.
[14] Hedenquist J W .Arribas A and Gonzalez-Urien E Exploration for epithermal gold deposits[J].SEG Reviews,2000,13:245-277.
[15] Sillitoe R H .Gold deposits in western Pacific island arcs:The magmatic connection[J].Econ Geological Monnograph,1989,6:274-291.
[16] Sillitoe R H.Erosion and collapse of volcanoes:Causes of telescoping in intrusion-centered ore deposits[J].Geology,1994(22):945-948.
[17] Sillitoe R H .Characteristics and controls of largest porphyry copper-gold and epithermal gold deposits in the circum-Pacific region[J].Australian Journal of Earth Sciences,1997,44:373-388.
[18] Lang J R;Baker T .Intrusion-related gold system:the present level of understanding[J].Mineralium Deposita,2001,36:477-489.
[19] Burnham C W .Energy release in subvolcanic environments:Implications for breccia formation[J].Economic Geology,1985,80:1515-1522.
[20] Thompson J F H;Silltoe RH;Baker T et al.Intrusion-related gold deposits associated with tungsten-tin province[J].Mineralium Deposita,1999,34:323-334.
[21] Murphy D C .Geology of the McQuesten River region;northern McQuensten and Mayo map area;Yukon Territory:Exploration and geological services division;Yukon Region;Indian and Northern Affairs Canada[J].Bulletin,1997,6:95.
[22] Sillitoe R H;Hedenquist J W .Linkage between volcanotectonic settings;ore fluid compositions;and epithermal precious metal deposits[J].Society of Econ Geol Spec Publication,2003,10:315-343.
[23] Richard J P .Tectono-Magmatic precursors for porphyry Cu-(Mo-Au) deposit formation[J].Economic Geology,2003,98:151-1533.
[24] Diles J H .Petrology of the Yington batholith;Nevada:Evidence for evolution of porphyry copper ore fluids[J].Economic Geology,1987,82:1750-1789.
[25] Cline J S .Can economic porphyry copper mineralization be generated by a typicall of cal c-alkaline melt[J].Journal of Geophysical Research,1991,96:8113-8126.
[26] Maughan D T;Keith J D;Christiansen E H .Contributions from mafic alkaline magmas to the Binham porphyry Cu-Au-Mo deposit;Utah;USA[J].Mineralium Deposita,2002,37:14-37.
[27] Duncan R A;Russell J K;Hastings N L.Relationships between chem.ical composition;physical propertiers and geology of the mineralized Emerald Lake Pluton;Yukon[A].,1997:97-1A.
[28] Keith J D;Christiansen E H;Maughan D T et al.The role of mafic alkaline magmas in felsic porphyry Cu and Mo systems[M].Mineralogical Association of Canada Short Course Series,1998,26:211-244.
[29] Sutherland Brown A.Morphorlogy and classification[A].Can Earth Sci Spec,1976:44-51.
[30] Nielsen R L.Recent developments in the study of porphyry copper geology:a review[A].Can Inst Min Metall Spec,1976:487-500.
[31] Mcmillan W J;Panteleyev A.Ore deposits models.1.Porphyry copper deposits.Geosci.Can.Mining Annual Review 1985 Bolivia[M].Mining J London,1980
[32] Fyfe W S .Tectonics;fluids and ore deposits:mobilisation and remobilization[J].Ore Geology Reviews,1987,2:21-36.
[33] Best M G.Igneous and metamorphic petrology[M].Freeman San Francisco New York,1982:1-630.
[34] Hedenquist J W;Henley R W .Hydrothermal eruptions in the Waiotapu geothermal system;New Zealand:Their origin;associated breccias;and relation to precious metal mineralisation[J].Economic Geology,1985,80:1640-1668.
[35] Fyfe W S;Kerrich R .Fluids and thrusting[J].Chemical Geology,1985,49:353-362.
[36] Bogie I;Lawiess J.Controls on the hydrology of large v olcanically hosted epithermal for geothermal systems:Implications for exploration mineral deposits[A].Victoria,1987
[37] Sillitoe R H;Bonham H F .Volcanic landforms and ore deposits[J].Economic Geology,1984,79:1286-1298.
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