Belousova E A, Griffin W L, O\' Reilly S Y, et al. 2002. Igneous zircon: trace element composition as an indicator of source rock type[J]. Contrib. Mineral. Petrol., 143(5): 602-622.
[35]
Boynton W V. 1984. Cosmochemistry of the rare earth elements: meteorite studies[A]. In: Henderson P, eds. Rare earth element geochemistry[C]. Amsterdam-Oxford-New York-Tokyo: Elsevier. 63-114.
[36]
Defant M J and Drummond M S. 1990. Derivation of some modern arc magmas by melting of young subducted lithosphere[J]. Nature, 347(6294):662-665.
[37]
Gao S, Zhang B R and Jin Z M. 1999. Lower crustal delamination in the Qinling-Dabie orogenic belt[J]. Science in China (Series D), 42(4): 423-433.
[38]
Green T H. 1994. Experimental studies of trace-element partitioning applicable to igneous petrogenesis-Sedona 16 years later[J]. Chemical Geology, 117(1-4): 1-36.
[39]
Li J W, Zhao X F, Zhou M F, Vasconcelos P, Ma C Q, Deng X D, desouza Z S, Zhao Y X and Wu G. 2008. Origin of the Tongshankou Porphyry-skarn Cu-Mo deposit, eastern Yangze craton, Eastern China: Geochronological, geochemical, and Sr-Nd-Hf isotopic constraints[J]. Mineralium Deposita, 43(3): 315-336.
[40]
Li J W, Zhao X F, Zhou M F, Vasconcelos P, Ma C Q, Deng X D, desouza Z S, Zhao Y X and Wu G. 2009. Late Mesozoic magmatism from Daye region, Eastern China: U-Pb ages, petrogenesis and geodynamic implications[J]. Contrib. Mineral. Petrology, 157: 383~409.
[41]
Liu S A, Li S G, He Y S and Huang F. 2010. Geochemical contrasts between Early Cretaeous ore-bearing and ore-barren high-Mg adakites in central-eastern China: Implications for petrogenesis and Cu-Au mineralization[J]. Geochimica et Cosmochimica Acta, 74(24): 7160-7178.
[42]
Ludwig K R. 2003. User\'s manual for isoplot 3.0-a geochronological toolkit for microsoft excel[M]. Berkeley Geochronology Center Special Publication. No.4. 1-66.
[43]
Ma C Q, Ehlers C, Xu C H, Li Z C and Yang K G. 2000. The roots of the Dabieshan ultrahigh-pressure metamorphic terrane: Constraints from geochemistry and Nd-Sr isotope systematics[J]. Precambrian Research, 102(3-4):279-301.
[44]
Maniar P D and Piccoli P M. 1989. Tectonic discrimination of granitoids[M]. Geological Society of America Bulletin, 101: 635-643.
[45]
Mao J W, Hua R M and LI X B. 1999. A preliminary study of large-scale metallogenesis and large clusters of mineral deposits[J]. Mineralium Deposits, 18: 39-43.
[46]
Mao J W, Xie G Q, Duan C, Pirajno F, Ishiyama D and Chen Y C. 2011. A tectono-gentic model for porphyry-skarn-stratabound Cu-Au-Mo-Fe and magnetite-apatite deposits along the Middle-Lower Yangtze River Valley, eastern China[J]. Ore Geology Reviews, 43: 294-314.
[47]
Meinert L D. 1995. Compositional variation of igneous rocks associated with skarn deposits—chemical evidence for a genetic connection between petrogenesis and mineralization[C]. Mineralogical Association of Canada Short Course Series, 23: 401-418.
[48]
Petford and Atherton M. 1996. Na-rich partial melts from newly underplated basaltic crust: The Cordillera Blanca Batholith, Peru[J]. Journal of Petrology, 37(6):1491-1521.
[49]
Qu X M, Hou Z Q and Li Y G. 2004. Melt components derived fron a subducted slab in late orogenic ore-bearing porphyries in the Gangdese copper belt, southern Tibetan plateau[J]. Lithos, 74: 131-148.
[50]
Rapp R P and Watson E B. 1995. Dehyd??慴瑩敯??敭獥潬穴潩楮捧?楯湦琠牭略獴楡潢湡獳?楬湴?瑡桴攠?猭漳甲琠桫敢慡獲琺??畭扰敬楩?偡牴潩癯楮湳挠敦???楣摯摮汴敩??潮睴敡牬?奧慲湯杷瑴穨攠?剮楤瘠散牲?扳整氭瑭????奥删?????慬獩瑮??桊楝渮愠孊?嵵???楬琠桯潦猠?????????????〨??戺爠?堹椱攭???儮???愾潒???坩??婯桮愠潈??????圹攳椮???呩???楧湥?卣????偣慡湬?????愺渠摅??敬?奡????水???扥??呮楴浡楴湩杯?漬映?獮歴慥牲湰?摥整灡潴獩楯瑮?晍潝爮洠慎瑥楷漠湙?潲晫?琠桌敯?呧潭湡杮氠畓獣桩慥湮?潩牦敩?搠楡獮瑤爠楔捥瑣??獩潣畡瑬栮攠愱猭琳攵爲渮??畲戾敓極?倠牓漠癓椠湡据敤???楄湯摮摯汵敧??潗眠敆爮?失愹游朹琮稠敃?剥業癩散牡?嘠慡汮汤攠祩?浯整瑯慰汩汣漠杳敹湳楴捥?扡整汩瑣?慢湡摳?楬瑴猺?楉浭灰汬楩捣慡瑴楩潯湮猠学?嵲??佡牮整??攠潣汯潭杰祯?剩整癩楯敮眠獡?????????????扁牝?堠楉敮???兡???慥潲???圠??婡桮慤漠???????甠慊測???慳渮搠?奡慧潭??????????婨楥爠捯潣湥?啮?偢扡?慩湮摳?灃桝氮漠杇潥灯楬瑯敧??獡畬瀠??っ??獴畹瀬??牰??獩畡灬?????獩畣灡??牯?愮朠攴′漺映″琱栳攭″?栵攮渼杢捲栾慔潡?慬湯摲??椠湒猠桡慮湤搠楍慣湬?獮歡慮牮渠??敍?搠攱瀹漸猵椮琠獔??猠潣畯瑮桴敩慮獥瑮??畬戠散楲?偳牴漺瘠楉湴捳攠???楰摯摳汩整??潮眠敡牮?夠慥湶杯瑬穵整?副楮癛敍牝?嘠慂汬污散祫?浥敬瑬愮氠氱漭朳攱渲椮挼?扲放汖瑡???栠楇測愠孇?嵢???楲渠敄爠慡汮楤甠浓??敭灩潤猠楒琮愠?????????????????rcon growth and recrystallization during polyphase Late Carboniferous to Triassic metamorphism in granulite of the Ivrea zone(South Alps): An ion microprobe(SHRIMP) study[J]. Conctrib. Mineral. Petrol., 122: 337-358.
[51]
Wang Q, Zhao Z H, Xu J F, Li X H, Bao Z W, Xiong X L and Liu Y M. 2003. Petrogenesis and metallogenesis of the Yanshanian adakite-like rocks in the Easter Yangtze Block[J]. Science in China (Earth Sciences), 46(Suppl.): 164-176.
[52]
Wang Q, Wyman D A, Xu J F, Zhao Z H, Jian P, Xiong X L, Bao Z W, Li C F and Bai Z H. 2006. Petrogenesis of Cretaceous adakitic and shoshonitec igneous rocks in the Luzong area, Anhui Province(eastern China): Implications for geodynamics and and Cu-Au mineralization[J]. Lithos, 89(3-4): 424-446.
[53]
Xie G Q, Mao J W, Li R L, Qu W J and Pirajno F. 2007. Re-Os molybdenite and Ar-Ar phlogopite dating of Cu-Fe-Au-Mo (W) deposits in southeastern Hubei, China[J]. Mineralogy and Petrology, 90(3-4): 249-270.
[54]
Xie G Q, Mao J W, Li L R, Li R L and Bierlein F P. 2008.Geochemistry and Nd-Sr isotopic studies of Late Mesozoic granitoids in the southeastern Hubei province, Middle-Lower Yangtze River belt, Eastern China: Petrogenesis and tectonic setting[J]. Lithos, 104: 216-230.
[55]
Xie G Q, Mao J W and Zhao H J. 2011a. Zircon U-Pb geochronological and Hf isotopic constraints on petrogenesis of