306
Views
9
CrossRef citations to date
0
Altmetric
Articles

Spatial-temporal relationships of late Mesozoic granitoids in Zhejiang Province, Southeast China: constraints on tectonic evolution

ORCID Icon, , , &
Pages 1529-1559 | Received 10 Apr 2017, Accepted 15 Aug 2017, Published online: 30 Aug 2017

References

  • Altherr, R., Holl, A., Hegner, E., Langer, C., and Kreuzer, H., 2000, High-potassium, calc-alkaline I-type plutonism in the European Variscides: Northern Vosges (France) and northern Schwarzwald (Germany): Lithos, v. 50, p. 51–73. doi:10.1016/S0024-4937(99)00052-3
  • Artemieva, I.M., and Mooney, W.D., 2001, Thermal structure and evolution of Precambrian lithosphere: A global study: Journal of Geophysical Research, v. 106, p. 16387–16414. doi:10.1029/2000JB900439
  • Baker, M.B., Hirschmann, M.M., Ohiorso, M.S., and Stolper, E.M., 1995, Compositions of near-solidus peridotite melts from experiments and thermodynamic calculations: Nature, v. 375, p. 308–311. doi:10.1038/375308a0
  • Barbarin, B., 1999, A review of the relationships between granitoids types, their origins and their geodynamic environments: Lithos, v. 46, p. 605–626. doi:10.1016/S0024-4937(98)00085-1
  • Barbarin, B., and Didier, J., 1992, Genesis and evolution of mafic microgranular enclaves through various types of interaction between coexisting felsic and mafic magmas: Transactions of the Royal Society of Edinburgh Earth Sciences, v. 83, p. 145–153. doi:10.1017/S0263593300007835
  • BGMRZP (Bureau of Geology and Mineral Resources of Zhejiang Province), 1989, Regional geology of Zhejiang Province. People’s Republic of China, Ministry of Geology and Mineral Resources. Geological Memoirs, Series 1, No.11: Beijing, Geological Publishing House, p. 500–688. [in Chinese.]
  • Breiter, K., 2012, Nearly contemporaneous evolution of the A- and S-type fractionated granites in the Krušné hory/Erzgebirge Mts., Central Europe: Lithos, v. 151, p. 105–121. doi:10.1016/j.lithos.2011.09.022
  • Chappell, B.W., Bryant, C.J., and Wyborn, D., 2012, Peraluminous I-type granites: Lithos, v. 153, p. 142–153. doi:10.1016/j.lithos.2012.07.008
  • Chappell, B.W., and White, A., 2001, Two contrasting granite types: 25 years later: Australian Journal of Earth Sciences, v. 48, p. 489–499. doi:10.1046/j.1440-0952.2001.00882.x
  • Chappell, B.W., and White, A.J.R., 1974, Two contrasting granite types: Pacific Geology, v. 8, p. 173–174.
  • Chappell, B.W., and White, A.J.R., 1992, I- and S-type granites in the Lachlan Fold Belt: Transactions of the Royal Society of Edinburgh Earth Sciences, v. 83, p. 1–26. doi:10.1017/S0263593300007720
  • Charvet, J., Lapierre, H., and Yu, Y.W., 1994, Geodynamic significance of the Mesozoic volcanism of southeastern China: Journal of Southeast Asian Earth Sciences, v. 68, p. 387–396. doi:10.1016/0743-9547(94)90050-7
  • Chen, J.F., and Jahn, B.M., 1998, Crustal evolution of southeastern China: Nd and Sr isotopic evidence: Tectonophysics, v. 284, p. 101–133. doi:10.1016/S0040-1951(97)00186-8
  • Chen, J.F., Zhou, T.X., Yin, C.S., and Foland, K.A., 1991, 40Ar/39Ar dating of several Mesozoic plutons in southeastern Zhejiang Province: Acta Petrologica Sinca, v. 7, p. 37–44. [in Chinese with English abstract.]
  • Chen, R., and Zhou, J.C., 1999, Information of crust-mantle interaction implied in early cretaceous composite lavas and dikes from Eastern Zhejiang: Geological Review, v. 45, p. 784–795.
  • Chen, S.Q., 2011. Discussion on the Yanshan Epoch rock characteristics and ore-forming background in Zhejiang Kaihua region [ Master’s Dissertation]: Beijing, China University of Geosciences, p. 21–30.
  • Clemens, J.D., 2006, Melting of the continental crust: Fluid regimes, melting reactions, and source-rock fertility, in Brown, M., and Rushmer, T., eds., Evolution and differentiation of the continental crust: Cambridge, Cambridge University Press, p. 296–330.
  • Collins, W.J., Beams, S.D., and White, A.J.R., 1982, Nature and origin of A-type granites with particular reference to southeastern Australia: Contributions to Mineralogy and Petrology, v. 80, p. 189–200. doi:10.1007/BF00374895
  • Creaser, R.A., Price, R.C., and Wormald, R.J., 1991, A-type granites revisited: Assessment of a residual source model: Geology, v. 19, p. 163–166. doi:10.1130/0091-7613(1991)019<0163:ATGRAO>2.3.CO;2
  • Dai, B.Z., Jiang, S.Y., Jiang, Y.H., Zhao, K.D., and Liu, D.Y., 2008, Geochronology, geochemistry and Hf–Sr–Nd isotopic compositions of Huziyan mafic xenoliths, southern Hunan Province, South China: Petrogenesis and implications for lower crust evolution: Lithos, v. 102, p. 65–87. doi:10.1016/j.lithos.2007.08.010
  • Davies, J.H., and von Blanckenburg, F., 1995, Slab breakoff: A model of lithosphere detachment and its test in the magmatism and deformation of collisional orogens: Earth and Planetary Science Letters, v. 129, p. 85–102. doi:10.1016/0012-821X(94)00237-S
  • Defant, M.J., and Drummond, M.S., 1990, Derivation of some modern arc magmas by melting of young subduction lithosphere: Nature, v. 347, p. 662–665. doi:10.1038/347662a0
  • Deng, J.H., Yang, X.Y., Li, S., Gu, H.L., Mastoi, A.S., and Sun, W.D., 2016, Partial melting of subducted paleo-Pacific plate during the early cretaceous: Constraint from adakitic rocks in the Shaxi porphyry Cu–Au deposit, Lower Yangtze River Belt: Lithos, v. 262, p. 651–667. doi:10.1016/j.lithos.2016.07.039
  • Deng, J.H., Yang, X.Y., Sun, W.D., Huang, Y., Chi, Y.Y., Yu, L.F., and Zhang, Q.M., 2012, Petrology, geochemistry, and tectonic significance of Mesozoic shoshonitic volcanic rocks, Luzong volcanic basin, eastern China: International Geology Review, v. 54, p. 714–736. doi:10.1080/00206814.2011.580628
  • Dong, C.W., Li, W.X., Chen, X.M., Xu, X.S., and Zhou, X.M., 1998, Late Mesozoic magma mixing in SE-Fujian: Petrologic evidence from Pingtan igneous complex: Progress in Natural Science, v. 8, p. 196–201.
  • Dong, C.W., Xu, X.S., Yan, Q., Lin, X.B., and Zhu, G.Q., 2007a, A new case of Late Mesozoic crust-mantle interaction in eastern Zhejiang: Geochronology and geochemistry of the Ru’ao diabase-granite composite intrusions: Acta Petrologica Sinca, v. 23, p. 1303–1312. [in Chinese with English abstract.]
  • Dong, C.W., Zhang, D.R., Xu, X.S., Yan, Q., and Zhu, G.Q., 2006, SHRIMP U–Pb dating and lithogeochemistry of basic-intermediate dike swarms from Jinjiang, Fujian province: Acta Petrologica Sinca, v. 22, p. 1696–1702. [in Chinese with English abstract.]
  • Dong, S.W., Zhang, Y.Q., and Long, C.X., 2007b, Jurassic tectonic revolution in China and new interpretation of the Yanshan movement: Acta Geologica Sinica, v. 81, p. 1449–1461. [in Chinese with English abstract.]
  • Douce, A.E.P., 1999, What do experiments tell us about the relative contributions of crust and mantle to the origin of granitic magmas? Geological Society of London: Special Publications, v. 168, p. 55–75. doi:10.1144/GSL.SP.1999.168.01.05
  • Eby, G.N., 1992, Chemical subdivision of the A-type granitoids: Petrogenetic and tectonic implications: Geology, v. 20, p. 641–644. doi:10.1130/0091-7613(1992)020<0641:CSOTAT>2.3.CO;2
  • Engebretson, D., Cox, A., and Gordon, R.G., 1985, Relative plate motions between ocean and continental plates in the Pacific basin: Geological Society of America, v. 206, p. 1–59.
  • Farahat, E.S., Mohamed, H.A., Ahmed, A.F., and Mahallawi, M.M.E., 2007, Origin of I- and A-type granitoids from the Eastern Desert of Egypt: Implications for crustal growth in the northern Arabian-Nubian Shield: Journal of African Earth Sciences, v. 49, p. 43–58. doi:10.1016/j.jafrearsci.2007.07.002
  • Gan, X.C., Li, H.M., Sun, D.Z., Jin, W.S., and Zhao, F.Q., 1995, A geochronological study on Early Proterozoic granitic rocks, southwestern Zhejiang: Acta Petrologica Et Mineralogica, v. 14, p. 1–8. [in Chinese with English abstract.]
  • Gao, W.L., Wang, Z.X., Song, W.J., Wang, D.X., and Li, C.L., 2014, Zircon U–Pb geochronology, geochemistry and tectonic implications of Triassic A-type granites from southeastern Zhejiang, South China: Journal of Asian Earth Sciences, v. 96, p. 255–268. doi:10.1016/j.jseaes.2014.09.024
  • Gilder, S.A., Gill, J., Coe, R.S., Zhao, X.X., Liu, Z.W., Wang, G.X., Yuan, K.R., Liu, W.L., Kuang, G.D., and Wu, H.R., 1996, Isotopic and paleomagnetic constraints on the Mesozoic tectonic evolution of South China: Journal of Geophysical Research, v. 101, p. 16137–16154. doi:10.1029/96JB00662
  • Gilder, S.A., Keller, G.R., Luo, M., and Goodell, P.C., 1991, Timing and spatial distribution of rifting in China: Tectonophysics, v. 197, p. 225–243. doi:10.1016/0040-1951(91)90043-R
  • Griffin, W.L., Pearson, N.J., Belousova, E.A., Jackson, S.R., Van Achterbergh, E., O’Reilly, S.Y., and Shee, S.R., 2000, The Hf isotope composition of cratonic mantle: LA-ICPMS analysis of zircon megacrysts in kimberlites: Geochimica Et Cosmochimica Acta, v. 64, p. 133–147. doi:10.1016/S0016-7037(99)00343-9
  • Gu, M.G., Feng, L.X., Hu, Y.H., Yu, S.Q., and Wu, M., 2011, LA–ICP–MS U–Pb dating of zircons from Guangshan and Zhaxi plutons in Shaoxing area, Zhejiang Province: Constraint on the ore-forming epoch of Lizhu iron ore deposit: Geological Bulletin of China, v. 30, p. 1212–1219. [in Chinese with English abstract.]
  • Guo, F., Fan, W., Li, C., Zhao, L., Li, H., and Yang, J., 2012, Multi-stage crust–mantle interaction in SE China: Temporal, thermal and compositional constraints from the Mesozoic felsic volcanic rocks in eastern Guangdong-Fujian provinces: Lithos, v. 150, p. 62–84. doi:10.1016/j.lithos.2011.12.009
  • Guo, Z.F., Wilson, M., Zhang, M.L., Cheng, Z.H., and Zhang, L.H., 2013, Post-collisional, K-rich mafic magmatism in south Tibet: Constraints on Indian slab-to-wedge transport processes and plateau uplift: Contributions to Mineralogy and Petrology, v. 165, p. 1311–1340. doi:10.1007/s00410-013-0860-y
  • He, Z.Y., and Xu, X.S., 2012, Petrogenesis of the Late Yanshanian mantle-derived intrusions in southeastern China: Response to the geodynamics of Paleo-Pacific plate subduction: Chemical Geology, v. 328, p. 208–221. doi:10.1016/j.chemgeo.2011.09.014
  • He, Z.Y., Xu, X.S., and Niu, Y.L., 2010, Petrogenesis and tectonic significance of a Mesozoic granite–syenite–gabbro association from inland South China: Lithos, v. 119, p. 621–641. doi:10.1016/j.lithos.2010.08.016
  • Hoskin, P.W.O., and Schaltegger, U., 2003, The compositions of zircon and igneous and metamorphic petrogenesis: Reviews in Mineralogy and Geochemistry, v. 53, p. 27–55. doi:10.2113/0530027
  • Hu, Z.L., Yang, X.Y., Duan, L.A., and Sun, W.D., 2014, Geochronological and geochemical constraints on genesis of the adakitic rocks in Outang, South Tan–Lu Fault Belt (Northeastern Yangtze Block): Tectonophysics, v. 626, p. 86–104. doi:10.1016/j.tecto.2014.04.004
  • Jahn, B.M., Chen, P.Y., and Yen, T.P., 1976, Rb–Sr ages of granitic rocks in southeastern China and their tectonic significance: Geological Society of America Bulletin, v. 86, p. 763–776. doi:10.1130/0016-7606(1976)87<763:RAOGRI>2.0.CO;2
  • Jahn, B.M., Zhou, X.H., and Li, J.L., 1990, Formation and tectonic evolution of southeast China: Isotopic and geochemical constraints: Tectonophysics, v. 183, p. 145–160. doi:10.1016/0040-1951(90)90413-3
  • Jia, S.H., Zhao, Y.Y., Wang, Z.Q., Wu, Y.D., Wang, T., and Chen, L., 2014, Zircon U–Pb dating and geochemical characteristics of granodiorite-porphyry in the Linghou copper deposit, Western Zhejiang, and their geological significance: Acta Geologica Sinica, v. 88, p. 2071–2085. [in Chinese with English abstract.]
  • Jiang, Y.H., Jiang, S.Y., Dai, B.Z., Liao, S.Y., Zhao, K.D., and Ling, H.F., 2009, Middle to late Jurassic felsic and mafic magmatism in southern Hunan province, southeast China: Implications for a continental arc to rifting: Lithos, v. 107, p. 185–204. doi:10.1016/j.lithos.2008.10.006
  • Jiang, Y.H., Zhao, P., Zhou, Q., Liao, S.Y., and Jin, G.D., 2011, Petrogenesis and tectonic implications of Early Cretaceous S- and A-type granites in the northwest of the Gan-Hang rift, SE China: Lithos, v. 121, p. 55–73. doi:10.1016/j.lithos.2010.10.001
  • Kemp, A.I.S., and Hawkesworth, C.J., 2003, Granitic perspectives on the generation and secular evolution of the continental crust, in Rudnick, R.L., ed., Treatise on Geochemistry. The Crust, Vol. 3: Oxford: Elsevier-Pergamon, p. 349–410.
  • Keskin, M., Genç, Ş.C., and Tüysüz, O., 2008, Petrology and geochemistry of post-collisional Middle Eocene volcanic units in North-Central Turkey: Evidence for magma generation by slab breakoff following the closure of the Northern Neotethys Ocean: Lithos, v. 104, p. 267–305. doi:10.1016/j.lithos.2007.12.011
  • Landenberger, B., and Collins, W.J., 1996, Derivation of A-type granites from a dehydrated charnockitic lower crust: Evidence from the Chaelundi Complex, eastern Australia: Journal of Petrology, v. 37, p. 145–170. doi:10.1093/petrology/37.1.145
  • Lapierre, H., Jahn, B.M., Charvet, J., and Yu, Y.W., 1997, Mesozoic magmatism in Zhejiang Province and its relation with the tectonic activities in SE China: Tectonophysics, v. 274, p. 321–338. doi:10.1016/S0040-1951(97)00009-7
  • Leat, P.T., Larter, R.D., and Millar, I.L., 2007, Silicic magmas of Protector Shoal, South Sandwich arc: Indicators of generation of primitive continental crust in an island arc: Geological Magazine, v. 144, p. 179–190. doi:10.1017/S0016756806002925
  • Li, H., Ling, M.X., Li, C.Y., Zhang, H., Ding, X., Yang, X.Y., Fan, W.M., Li, Y.L., and Sun, W.D., 2012, A-type granite belts of two chemical subgroups in central eastern China: Indication of ridge subduction: Lithos, v. 150, p. 26–36. doi:10.1016/j.lithos.2011.09.021
  • Li, H.M., Dong, C.W., Xu, X.S., and Zhou, X.M., 1995, Zircon U–Pb dating on the Quanzhou gabbros: The origin of mafic magmatic rocks in southeastern Fujian: Chinese Science Bulletin, v. 40, p. 158–160.
  • Li, J.W., Zhao, X.F., Zhou, M.F., Ma, C.Q., de Souza, Z.S., and Vasconcelos, P., 2009d, Late Mesozoic magmatism from the Daye region, eastern China: U–Pb ages, petrogenesis, and geodynamic implications: Contributions to Mineralogy and Petrology, v. 157, p. 383–409. doi:10.1007/s00410-008-0341-x
  • Li, P.J., Yu, X.Q., Li, H.Y., Qiu, J.T., and Zhou, X., 2013a, Jurassic–Cretaceous tectonic evolution of southeast China: Geochronological and geochemical constraints of Yanshanian granitoids: International Geology Review, v. 55, p. 1202–1219. doi:10.1080/00206814.2013.771952
  • Li, S., Yang, X.Y., Huang, Y., and Sun, W.D., 2014b, Petrogenesis and mineralization of the Fenghuangshan skarn Cu–Au deposit, Tongling ore cluster field, Lower Yangtze metallogenic belt: Ore Geology Reviews, v. 58, p. 148–162. doi:10.1016/j.oregeorev.2013.11.004
  • Li, S.G., Chen, Y.Z., Ge, N.J., Hu, X.J., and Liu, D.L., 1996, Isotopic ages of metavolcanic rocks and megacryst mylonite in the Badu group in Southwestern Zhejiang Province and their implications for tectonics: Acta Petrologica Sinica, v. 12, p. 79–87. [in Chinese with English abstract.]
  • Li, X.H., 1999, U–Pb zircon ages of granites from the southern margin of the Yangtze Block: Timing of Neoproterozoic Jinning Orogeny in SE China and implications for Rodinia Assembly: Precambrian Research, v. 97, p. 43–57. doi:10.1016/S0301-9268(99)00020-0
  • Li, X.H., 2000, Cretaceous magmatism and lithospheric extension in Southeast China: Journal of Asian Earth Sciences, v. 18, p. 293–305. doi:10.1016/S1367-9120(99)00060-7
  • Li, X.H., Chen, Z.G., Liu, D.Y., and Li, W.X., 2003, Jurassic gabbro-granite-syenite suites from southern Jiangxi Province, SE China: Age, origin and tectonic significance: International Geology Review, v. 45, p. 898–921. doi:10.2747/0020-6814.45.10.898
  • Li, X.H., Chuang, S.L., Zhou, X.W., Lo, C.H., Liu, Y., and Chen, C.H., 2004, Jurassic intraplate magmatism in southern Hunan-eastern Guangxi: 40Ar/39Ar dating, geochemistry, Sr–Nd isotopes and implications for tectonic evolution of SE China: Geological Society of London, v. 226, p. 193–216. doi:10.1144/GSL.SP.2004.226.01.11
  • Li, X.H., Li, W.X., Li, Z.X., Lo, C.H., Wang, J., Ye, M.F., and Yang, Y.H., 2009a, Amalgamation between the Yangtze and Cathaysia Blocks in South China: Constraints from SHRIMP U–Pb zircon ages, geochemistry and Nd–Hf isotopes of the Shuangxiwu volcanic rocks: Precambrian Research, v. 174, p. 117–128. doi:10.1016/j.precamres.2009.07.004
  • Li, X.H., Li, Z.X., Li, W.X., Liu, Y., Yuan, C., Wei, G.J., and Qi, C.S., 2007, U–Pb zircon, geochemical and Sr–Nd–Hf isotopic constraints on age and origin of Jurassic I- and A-type granites from central Guangdong, SE China: A major igneous event in response to foundering of a subducted flat-slab?: Lithos, v. 96, p. 186–204. doi:10.1016/j.lithos.2006.09.018
  • Li, X.H., Li, Z.X., Li, W.X., and Wang, Y.J., 2006, Initiation of the Indosinian Orogeny in South China: Evidence for a Permian magmatic arc on the Hainan Island: The Journal of Geology, v. 114, p. 341–353. doi:10.1086/501222
  • Li, X.H., Liu, Y., Li, Q.L., Guo, C.H., and Chamberlain, K.R., 2009b, Precise determination of Phanerozoic zircon Pb/Pb age by multi-collector SIMS without external standardization: Geochemistry Geophysics Geosystems, v. 10, p. Q04010. doi:10.1029/2009GC002400
  • Li, X.H., and McCulloch, M.T., 1998, Geochemical characteristics of Cretaceous mafic dikes from northern Guangdong, SE China: Age, origin and tectonic significance, in Flower, M.F.J., Chung, S.L., Lo, C.H., and Lee, T.-Y., eds., Mantle Dynamics and Plate Interaction in East Asia, 27: Washington, DC, AGU Geodynamics, p. 405–419.
  • Li, Y.J., Wei, J.H., Chen, H.Y., Tan, J., Fu, L.B., and Wu, G., 2012a, Origin of the Maoduan Pb–Zn–Mo deposit, eastern Cathaysia Block, China: Geological, geochronological, geohemical, and Sr–Nd–Pb–S isotopic constraints: Mineralium Deposita, v. 47, p. 763–780. doi:10.1007/s00126-011-0389-9
  • Li, Y.J., Wei, J.H., Yao, C.L., Yan, Y.F., Tan, J., Fu, L.B., Pan, J.B., and Li, W., 2009c, Zircon U–Pb dating and tectonic significance of the Shipingchuan granite in Southeastern Zhejiang province, SE China: Geological Review, v. 55, p. 673–683. [in Chinese with English abstract.]
  • Li, Z., Qiu, J.S., and Yang, X.M., 2014a, A review of the geochronology and geochemistry of Late Yanshanian (Cretaceous) plutons along the Fujian coastal area of southeastern China: Implications for magma evolution related to slab break-off and rollback in the Cretaceous: Earth-Science Reviews, v. 128, p. 232–248. doi:10.1016/j.earscirev.2013.09.007
  • Li, Z.L., Zhou, J., Mao, J.R., Santosh, M., Yu, M.G., Li, Y.Q., Hu, Y.Z., Langmuir, C.H., Chen, Z.X., Cai, X.X., and Hu, Y.H., 2013b, Zircon U–Pb geochronology and geochemistry of two episodes of granitoids from the northwestern Zhejiang Province, SE China: Implication for magmatic evolution and tectonic transition: Lithos, v. 179, p. 334–352. doi:10.1016/j.lithos.2013.07.014
  • Li, Z.X., and Li, X.H., 2007, Formation of the 1300-km-wide intracontinental orogen and postorogenic magmatic province in Mesozoic South China: A flat-slab subduction model: Geology, v. 35, p. 179–182. doi:10.1130/G23193A.1
  • Li, Z.X., Li, X.H., Wartho, J.A., Clark, C., Li, W.X., Zhang, C.L., and Bao, C., 2010, Magmatic and metamorphic events during the early Paleozoic Wuyi–Yunkai orogeny, southeastern South China: New age constraints and pressure–temperature conditions: GSA Bull, v. 122, p. 772–793. doi:10.1130/B30021.1
  • Li, Z.X., Li, X.H., Zhou, H.W., and Kinny, P.D., 2002, Grenvillian continental collision in south China: New SHRIMP U–Pb zircon results and implications for the configuration of Rodinia: Geology, v. 30, p. 163–166. doi:10.1130/0091-7613(2002)030<0163:GCCISC>2.0.CO;2
  • Ling, M.X., Wang, F.Y., Ding, X., Hu, Y.H., Zhou, J.B., Zartman, R.E., Yang, X.Y., and Sun, W., 2009, Cretaceous ridge subduction along the lower Yangtze River belt, eastern China: Economic Geology, v. 104, p. 303–321. doi:10.2113/gsecongeo.104.2.303
  • Liu, L., Qiu, J.S., and Zhao, J.L., 2016. A hybrid origin for two cretaceous monzonitic plutons in Eastern Zhejiang Province, Southeast China: Geochronological, geochemical, and Sr–Nd–Hf isotopic evidence: Journal of Asian Earth Sciences, v. 115, p. 183–203. doi:10.1016/j.jseaes.2015.09.022
  • Liu, L., Xu, X.S., and Xia, Y., 2014a, Cretaceous Pacific plate movement beneath SE China: Evidence from episodic volcanism and related intrusions: Tectonophysics, v. 614, p. 170–184. doi:10.1016/j.tecto.2013.12.007
  • Liu, L., Qiu, J.S., Zhao, J.L., and Yang, Z.L., 2014b, Geochronological, geochemical, and Sr–Nd–Hf isotopic characteristics of Cretaceous monzonitic plutons in western Zhejiang Province, Southeast China: New insights into the petrogenesis of intermediate rocks: Lithos, v. 196–197, p. 242–260. doi:10.1016/j.lithos.2014.03.010
  • Liu, Q., Yu, J.H., Wang, Q., Su, B., Zhou, M.F., Xu, H., and Cui, X., 2012, Ages and geochemistry of granites in the Pingtan–Dongshan Metamorphic Belt, Coastal South China: New constraints on late Mesozoic magmatic evolution: Lithos, v. 150, p. 268–286. doi:10.1016/j.lithos.2012.06.031
  • Liu, S.A., Li, S.G., He, Y.S., and Huang, F., 2010, Geochemical contrasts between early Cretzircon megacrysts aceous ore-bearing and ore-barren high-Mg adakites in central-eastern China: Implications for petrogenesis and Cu–Au mineralization: Geochimica et Cosmochimica Acta, v. 74, p. 7160–7178. doi:10.1016/j.gca.2010.09.003
  • Liu, X.M., Gao, S., Diwu, C.R., and Ling, W.L., 2008, Precambrian crustal growth of Yangtze Craton as revealed by detrital zircon studies: American Journal of Science, v. 308, p. 421–468. doi:10.2475/04.2008.02
  • Lloyd, F.E., Arima, M., and Edgar, A.D., 1985, Partial melting of a phlogopite–clinopyroxenite nodule from southwest Uganda: An experimental study bearing on the origin of highly potassic continental rift volcanics: Contributions to Mineralogy and Petrology, v. 91, p. 321–329. doi:10.1007/BF00374688
  • Loiselle, M.C., and Wones, D.R., 1979, Characteristics and origin of anorogenic granites: Geological Society of America Abstracts with Programs, v. 11, p. 468.
  • Ludwig, K.R., 2003, User’s manual for Isoplot 3.00, a geochronological Toolkit for Microsoft Excel. Berkeley Geochronology Center: Special Publication, v. 4, p. 25–32.
  • Maniar, P.D., and Piccoli, P.M., 1989, Tectonic discrimination of granitoids: Geological Society of America Bulletin, v. 101, p. 635–643. doi:10.1130/0016-7606(1989)101<0635:TDOG>2.3.CO;2
  • Mao, J.R., Ye, H.M., Liu, K., Li, Z.L., Takahashi, Y., Zhao, X.L., and Kee, W.S., 2013, The Indosinian collision-extension event between the South China Block and the Paleo-Pacific plate: Evidence from Indosinian alkaline granitic rocks in Dashuang, eastern Zhejiang, South China: Lithos, v. 172–173, p. 81–97. doi:10.1016/j.lithos.2013.04.004
  • Mao, J.W., Xie, G.Q., and Guo, C.L., 2007, Large-scale tungsten-tin mineralization in the Nanling region, South China: Metallogenic ages and corresponding geodynamic processes: Acta Petrologica Sinca, v. 23, p. 2329–2338. [in Chinese with English abstract.]
  • Martin, H., Bonin, B., Capdevia, R., Jahn, B.M., Lameyre, J., and Wang, Y., 1994, The Kuiqi peralkaline granitic complex (SE China): Petrology and geochemistry: Journal of Petrology, v. 35, p. 983–1015. doi:10.1093/petrology/35.4.983
  • Maruyama, S., and Seno, T., 1986, Orogeny and relative plate motions: Example of the Japanese Islands: Tectonophysics, v. 127, p. 305–329. doi:10.1016/0040-1951(86)90067-3
  • Pirajno, F., and Bagas, L., 2002, Gold and silver metallogeny of the South China Fold Belt: A consequence of multiple mineralizing events?: Ore Geology Reviews, v. 20, p. 109–126. doi:10.1016/S0169-1368(02)00067-7
  • Pirajno, F., Bagas, L., Hickman, A.H., and Gold, R.T., 1997, Gold mineralization of the Chencai–Suichang Uplift and tectonic evolution of Zhejiang Province, Southeast China: Ore Geology Reviews, v. 12, p. 35–55. doi:10.1016/S0169-1368(97)00003-6
  • Qin, S.C., Fan, W.M., Guo, F., Li, C.W., and Gao, X.F., 2010, Petrogenesis of Late Mesozoic diabase dikes in Zhejiang-Fujian provinces: Constraints from Ar–Ar dating and geochemistry: Acta Petrologica Sinca, v. 26, p. 3295–3306. [in Chinese with English abstract.]
  • Qiu, J.T., Yu, X.Q., Santosh, M., Li, P.J., Zhang, D.H., Xiong, G.Q., and Zhang, B.Y., 2014, The Late Mesozoic tectonic evolution and magmatic history of west Zhejiang, SE China: Implications for regional metallogeny: International Journal of Earth Sciences, v. 103, p. 713–735. doi:10.1007/s00531-014-0997-6
  • Qiu, J.T., Yu, X.Q., Santosh, M., Zhang, D.H., Chen, S.Q., and Li, P.J., 2013, Geochronology and magmatic oxygen fugacity of the Tongcun molybdenum deposit, northwest Zhejiang, SE China: Mineralium Deposita, v. 48, p. 545–556. doi:10.1007/s00126-013-0456-5
  • Rickwood, P.C., 1989, Boundary lines within petrologic diagrams which use oxides of minor elements: Lithos, v. 22, p. 247–263. doi:10.1016/0024-4937(89)90028-5
  • Rudnick, R.L., 1995, Making continental crust: Nature, v. 378, p. 571–578. doi:10.1038/378571a0
  • Shen, W.Z., Wang, D.Z., and Liu, C.S., 1995, Isotope geochemical characteristics and material sources of Tin-bearing porphyries in South China: Acta Geologica Sinica, v. 69, p. 349–359. [in Chinese with English abstract.]
  • Song, M.J., Shu, L.S., and Santosh, M., 2017, Early Mesozoic intracontinental orogeny and stress transmission in South China: Evidence from Triassic peraluminous granites: Journal of the Geological Society, v. 174, p. 591–607. doi: 10.1144/jgs2016-098
  • Stern, R.J., 2002, Subduction zones: Reviews of Geophysics, v. 40, p. 1012–1049. doi:10.1029/2001RG000108
  • Streckeisen, A.L., 1973, Plutonic rocks, classification and nomenclature recommended by the IUGS subcommis-sion on the systematics of igneous rocks: Geotimes, v. 18, p. 26–30.
  • Sun, S.S., and McDonough, W.F., 1989, Chemical and isotopic systematics of oceanic basalts: Implications for mantle composition and processes, in Saunders, A.D., and Norry, M.J., eds., Magmatism in the Oceanic Basalts: London, Geological Society Special Publication, p. 313–345.
  • Sun, W., Ling, M., Yang, X., Fan, W., Ding, X., and Liang, H., 2010, Ridge subduction and porphyry copper–gold mineralization: An overview: Science China Earth Sciences, v. 53, p. 475–484. [in Chinese, with English abstract.] doi:10.1007/s11430-010-0024-0
  • Sun, W., Wang, J.T., Zhang, L.P., Zhang, C.C., Li, H., Ling, M.X., Ding, X., Li, C.Y., and Liang, H.Y., 2017, The formation of porphyry copper deposits: Acta Geochimica, v. 36, p. 9–15. doi:10.1007/s11631-016-0132-4
  • Sun, W.D., Ding, X., Hu, Y.H., and Li, X.H., 2007, The golden transformation of the Cretaceous plate subduction in the west Pacific: Earth and Planetary Science Letters, v. 262, p. 533–542. doi:10.1016/j.epsl.2007.08.021
  • Sun, W.D., Xie, Z., Chen, J.F., Zhang, X., Chai, Z.F., Du, A.D., Zhao, J.S., Zhang, C.H., and Zhou, T.F., 2003b, Os–Os dating of copper and molybdenum deposits along the middle and lower reaches of Yangtze River, China: Economic Geology, v. 98, p. 175–180.
  • Sun, Y., Ma, C.Q., Liu, Y.Y., and She, Z.B., 2011, Geochronological and geochemical constraints on the petrogenesis of late Triassic aluminous A-type granites in southeast China: Journal of Asian Earth Sciences, v. 42, p. 1117–1131. doi:10.1016/j.jseaes.2011.06.007
  • Tang, Y.W., Li, X.F., Xie, Y.L., Liu, L., Lan, T.G., Meffre, S., and Huang, C., 2017, Geochronology and geochemistry of late Jurassic adakitic intrusions and associated porphyry Mo–Cu deposit in the Tongcun area, east China: Implications for metallogenesis and tectonic setting: Ore Geology Reviews, v. 80, p. 289–308. doi:10.1016/j.oregeorev.2016.06.032
  • Taylor, S.R., and McLennan, S.M., 1985, The continental crust: Its composition and evolution: Oxford, Blackwell, p. 1–328.
  • Tulloch, A.J., and Kimbrough, D.L., 2003, Paired plutonic belts in convergent margins and the development of high Sr/Y magmatism: Peninsular Ranges batholith of Baja-California and Median batholith of New Zealand, in Johnson, S.E., Paterson, S.R., Fletcher, J.M., Girty, G.H., Kimbrough, D.L., and Martín-Barajas, A., eds., Tectonic evolution of Northwestern México and the Southwestern USA, Vol. 374: Boulder, CO, Geological Society of America Special Paper, p. 275–295.
  • Turner, S.P., Foden, J.D., and Morrison, R.S., 1992, Derivation of some A-type magmas by fractionation of basaltic magma: An example from the Padthaway Ridge, South Australia: Lithos, v. 28, p. 151–179. doi:10.1016/0024-4937(92)90029-X
  • Wan, Y.S., Liu, D.Y., Xu, M.H., Zhuang, J.M., Song, B., Shi, Y.R., and Du, L.L., 2007, SHRIMP U–Pb zircon geochronology and geochemistry of metavolcanic and metasedimentary rocks in Northwestern Fujian, Cathaysia block, China: Tectonic implications and the need to redefine lithostratigraphic units: Gondwana Research, v. 12, p. 166–183. doi:10.1016/j.gr.2006.10.016
  • Wang, D.Z., and Zhou, X.M., 2002, Crustal evolution and petrogenesis of Late Mesozoic granitic volcanic-intrusive complexes in southeastern China: Beijing, Science Press. p. 1–295. [in Chinese.]
  • Wang, D.Z., Zhou, X.M., Xu, X.S., and Yao, Y.P., 1992, On geneses of microgranitoid enclaves: Journal of Guilin University of Technology, v. 12, p. 235–241. [in Chinese, with English abstract.]
  • Wang, F.Y., Ling, M.X., Ding, X., Hu, Y.H., Zhou, J.B., Yang, X.Y., Liang, H.Y., Fan, W.M., and Sun, W.D., 2011, Mesozoic large magmatic events and mineralization in SE China: Oblique subduction of the Pacific plate: International Geology Review, v. 53, p. 704–726. doi:10.1080/00206814.2010.503736
  • Wang, G.G., Ni, P., Yu, W., Chen, H., Jiang, L.L., Wang, B.H., Zhang, H.D., and Li, P.F., 2014, Petrogenesis of early cretaceous postcollisional granitoids at Shapinggou, Dabie Orogen: Implications for crustal architecture and porphyry Mo mineralization: Lithos, v. 184–187, p. 393–415. doi:10.1016/j.lithos.2013.11.009
  • Wang, G.G., Ni, P., Zhao, C., Wang, X.L., Li, P., Chen, H., Zhu, A.D., and Li, L., 2016, Spatiotemporal reconstruction of Late Mesozoic silicic large igneous province and related epithermal mineralization in South China: Insights from the Zhilingtou volcanic‐intrusive complex: Journal of Geophysical Research: Solid Earth, v. 121, p. 7903–7928.
  • Wang, G.G., Ni, P., Zhao, K.D., Wang, X.L., Liu, J.Q., Jiang, S.Y., and Chen, H., 2012, Petrogenesis of the Middle Jurassic Yinshan volcanic-intrusive complex, SE China: Implications for tectonic evolution and Cu-Au mineralization: Lithos, v. 150, p. 135–154. doi:10.1016/j.lithos.2012.05.030
  • Wang, J., Bao, C.M., Gao, Y.H., Li, Z.X., and Duan, T.Z., 2003, Zircon SHRIMP U–Pb dating of monzogranite-porphyry dikes in Shengongcun, northern Zhejiang, and its geological implications: Geological Bulletin of China, v. 22, p. 729–732. [in Chinese with English abstract.]
  • Wang, J.G., Wang, L.W., Chen, X.Y., Zhao, X.D., Jiang, Y., Zhou, Z.Y., Yu, G.C., and Yu, Y.W., 2010, SHRIMP U–Pb ages of zircons from Kailingjiao and Lichenjia granodiorites in western Zhejiang and their geological implications: Geology in China, v. 37, p. 1559–1565. [in Chinese with English abstract.]
  • Wang, K.X., Sun, T., Chen, P.R., Ling, H.F., and Xiang, T.F., 2013, The geochronological and geochemical constraints on the petrogenesis of the Early Mesozoic A-type granite and diabase in northwestern Fujian province: Lithos, v. 179, p. 364–381. doi:10.1016/j.lithos.2013.07.016
  • Wang, Y.B., Liu, J.M., Sun, S.K., Li, Y., Li, F.Y., and Hu, H.T., 2012, Zircon U–Pb geochronology, petrogenesis and geological implication of ore-bearing granodioritic porphyry in the Wulaga gold deposit, Heilongjiang Province: Acta Petrologica Sinica, v. 28, p. 557–570. [in Chinese with English abstract.]
  • Wang, Y.B., Zeng, Q.D., Liu, J.M., and Pirajno, F., 2017, Cretaceous magmatism and Mo mineralization in the South China Mo Province: U–Pb and Re–Os geochronology constraints from the Sanzhishu porphyry Mo deposit: Ore Geology Reviews, v. 81, p. 912–924. doi:10.1016/j.oregeorev.2016.04.011
  • Wang, Y.J., Fan, W.M., Cawood, P.A., and Li, S.Z., 2008, Sr–Nd–Pb isotopic constraints on multiple mantle domains for Mesozoic mafic rocks beneath the South China Block hinterland: Lithos, v. 106, p. 297–398. doi:10.1016/j.lithos.2008.07.019
  • Wang, Y.J., Fan, W.M., Peng, T.P., and Guo, F., 2005, Elemental and Sr–Nd isotopic systematics of the early Mesozoic volcanic sequence in southern Jiangxi Province, South China: Petrogenesis and tectonic implications: International Journal of Earth Sciences, v. 94, p. 53–65. doi:10.1007/s00531-004-0441-4
  • Wang, Y.J., Fan, W.M., Sun, M., Liang, X.Q., Zhang, Y.H., and Peng, T.P., 2007, Geochronological, geochemical and geothermal constraints on petrogenesis of the Indosinian peraluminous granites in the South China Block: A case study in the Hunan Province: Lithos, v. 96, p. 475–502. doi:10.1016/j.lithos.2006.11.010
  • Wang, Y.J., Liao, C.L., Fan, W.M., and Peng, T.P., 2004, Early Mesozoic OIB-type alkaline basalts in central Jiangxi Province and its tectonic implication: Geochimica, v. 33, p. 109–117. [in Chinese with English abstract.]
  • Wei, C.S., Zheng, Y.F., and Zhao, Z.F., 2001, Nd–Sr–O isotopic geochemistry constraints on the age and origin of the A-type granites in eastern China: Acta Petrologica Sinica, v. 17, p. 95–111. [in Chinese with English abstract.]
  • Whalen, J.B., Currie, K.L., and Chappell, B.W., 1987, A-type granites: Geochemical characteristics, discrimination and petrogenesis: Contributions to Mineralogy and Petrology, v. 95, p. 407–419. doi:10.1007/BF00402202
  • Whitehouse, M.J., Kamber, B.S., and Moorbath, S., 1999, Age significance of U–Th–Pb zircon data from early Archaean rocks of west Greenland: A reassessment based on combined ion-microprobe and imaging studies: Chemical Geology, v. 160, p. 201–224. doi:10.1016/S0009-2541(99)00066-2
  • Wiedenbeck, M., Alle, P., Corfu, F., Griffin, W.L., Meier, M., Oberli, F., Vonquadt, A., Roddick, J.C., and Speigel, W., 1995, Three natural zircon standards for U–Th–Pb, Lu–Hf, trace-element and REE analyses: Geostandards Newsletter, v. 19, p. 1–23. doi:10.1111/j.1751-908X.1995.tb00147.x
  • Wong, J., Sun, M., Xing, G., Li, X.H., Zhao, G., Wong, K., Yuan, C., Xia, X., Li, L., and Wu, F., 2009, Geochemical and zircon U–Pb and Hf isotopic study of the Baijuhuajian metaluminous A-type granite: Extension at 125–100 Ma and its tectonic significance for South China: Lithos, v. 112, p. 289–305. doi:10.1016/j.lithos.2009.03.009
  • Wong, J., Sun, M., Xing, G.F., Li, X.H., Zhao, G.C., Wong, K., and Wu, F.Y., 2011, Zircon U–Pb and Hf isotopic study of Mesozoic felsic rocks from eastern Zhejiang, South China: Geochemical contrast between the Yangtze and Cathaysia blocks: Gondwana Research, v. 19, p. 244–259. doi:10.1016/j.gr.2010.06.004
  • Wu, C.L., Dong, S.W., Wu, D., Zhang, X., and Ernst, W.G., 2017, Late Mesozoic high-K calc-alkaline magmatism in SE China: The Tongling example: International Geology Review, p. 1–35. doi:10.1080/00206814.2017.1313137
  • Wu, F.Y., Jahn, B.M., Wilde, S.A., Lo, C.H., Yui, T.F., Lin, Q., Ge, W.C., and Sun, D.Y., 2003, Highly fractionated I-type granites in NE China (II): Isotopic geochemistry and implications for crustal growth in the Phanerozoic: Lithos, v. 67, p. 191–204. doi:10.1016/S0024-4937(03)00015-X
  • Wu, F.Y., Ji, W.Q., Sun, D.H., Yang, Y.H., and Li, X.H., 2012, Zircon U–Pb geochronology and Hf isotope compositions of the Mesozoic granites in southern Anhui Province, China: Lithos, v. 150, p. 6–25. doi:10.1016/j.lithos.2012.03.020
  • Wu, Y.B., and Zheng, Y.F., 2004, Genesis of zircon and its constraints on interpretation of U–Pb age: Chinese Science Bulletin, v. 49, p. 1554–1569. doi:10.1007/BF03184122
  • Wyborn, D., Chappell, B.W., and James, M., 2001, Examples of convective fractionation in high temperature granites from the Lachlan Fold Belt: Australian Journal of Earth Sciences, v. 48, p. 531–541. doi:10.1046/j.1440-0952.2001.00877.x
  • Wyborn, D., Turner, B.S., and Chappell, B.W., 1987, The Boggy Plain Supersuite: A distinctive belt of I-type igneous rocks of potential economic significance in the Lachlan Fold Belt: Australian Journal of Earth Sciences, v. 34, p. 21–43. doi:10.1080/08120098708729392
  • Xie, G.Q., Mao, J.W., Li, W., Zhu, Q.Q., Liu, H.B., Jia, G.H., Li, Y.H., Li, J.J., and Zhang, J., 2016, Different proportion of mantle-derived noble gases in the Cu-Fe and Fe skarn deposits: He-Ar isotopic constraint in the Edong district, Eastern China: Ore Geology Reviews, v. 72, p. 343–354. doi:10.1016/j.oregeorev.2015.08.004
  • Xie, G.Q., Mao, J.W., and Zhao, H.J., 2011, Zircon U–Pb geochronological and Hf isotopic constraints on petrogenesis of Late Mesozoic intrusions in the southeast Hubei Province, Middle–Lower Yangtze River belt (MLYRB), East China: Lithos, v. 125, no. 1–2, p. 693–710. doi:10.1016/j.lithos.2011.04.001
  • Xie, G.Q., Mao, J.W., Zhu, Q.Q., Yao, L., Li, Y.H., Li, W., and Zhao, H.J., 2015, Geochemical constraints on Cu–Fe and Fe skarn deposits in the Edong district, Middle–Lower Yangtze River metallogenic belt, China: Ore Geology Review, v. 64, p. 425–444. doi:10.1016/j.oregeorev.2014.08.005
  • Xie, J.C., Fang, D., Xia, D.M., Li, Q.Z., and Sun, W.D., 2017, Petrogenesis and tectonic implications of late Mesozoic granitoids in southern Anhui Province, southeastern China: International Geology Review, p. 1–23. doi:10.1080/00206814.2017.1297964
  • Xie, J.C., Yang, X.Y., Sun, W.D., Du, J.G., Xu, W., Wu, L., Wang, K.Y., and Du, X.W., 2009, Geochronological and geochemical constraints on formation of the Tongling metal deposits, middle Yangtze metallogenic belt, east-central China: International Geology Review, v. 51, p. 388–421. doi:10.1080/00206810802712004
  • Xie, Y.L., Tang, Y.W., Li, Y.X., Qiu, L.M., Liu, B.S., Li, Y., Zhang, X.X., Han, Y.D., and Jiang, Y.C., 2012, Petrochemistry, chronology and ore-forming geological significance of fine crystalline granite in Anji polymetallic deposit of Zhejiang Province: Mineral Deposits, v. 31, p. 892–902. [in Chinese with English abstract.]
  • Xu, H.J., Ma, C.Q., Zhao, J.H., and Zhang, J.F., 2013, Petrogenesis of Dashenshan I-type granodiorite: Implications for Triassic crust–mantle interaction, South China: International Geology Review, v. 56, p. 332–350. doi:10.1080/00206814.2013.857457
  • Xu, J., Ma, G., Tong, W.X., Zhu, G., and Lin, S., 1993, Displacement of the Tancheng–Lujiang wrench fault system and its geodynamic setting in the northwestern Circum-Pacific, in Xu, J., ed., The Tancheng–Lujiang wrench fault system: New York, NY, John Wiley & Sons, p. 51–74.
  • Xu, J., Zhu, G., Tong, W.X., Gui, K.R., and Liu, Q., 1987, Formation and evolution of the Tancheng–Lujiang wrench fault system: A major shear system to the northwest of the Pacific Ocean: Tectonophysics, v. 134, p. 273–310. doi:10.1016/0040-1951(87)90342-8
  • Xu, X.S., Dong, C.W., Li, W.X., and Zhou, X.M., 1999, Late Mesozoic intrusive complexes in the coastal area of Fujian, SE China: The significance of the gabbro-diorite–granite association: Lithos, v. 46, p. 299–315. doi:10.1016/S0024-4937(98)00087-5
  • Xu, X.S., O’Reilly, S.Y., Griffin, W.L., Wang, X.L., Pearson, N.J., and He, Z.Y., 2007, The crust of Cathaysia: Age, assembly and reworking of two terranes: Precambrian Research, v. 158, p. 51–78. doi:10.1016/j.precamres.2007.04.010
  • Yan, J., Chen, J.F., and Xu, X.S., 2008, Geochemistry of Cretaceous mafic rocks from the Lower Yangtze region, eastern China: Characteristics and evolution of the lithospheric mantle: Journal of Asian Earth Sciences, v. 33, p. 177–193. doi:10.1016/j.jseaes.2007.11.002
  • Yan, J., Liu, H.Q., Song, C.Z., Xu, X.S., An, Y.J., Liu, J., and Dai, L.Q., 2009, Zircon U-Pb geochronology of the volcanic rocks from Fanchang-Ningwu volcanic basins in the Lower Yangtze region and its geological implications: Chinese Science Bulletin, v. 54, p. 2895–2904.
  • Yang, S.Y., Jiang, S.Y., Zhao, K.D., Jiang, Y.H., Ling, H.F., and Luo, L., 2012, Geochronology, geochemistry and tectonic significance of two early cretaceous A-type granites in the Gan–Hang Belt, Southeast China: Lithos, v. 150, p. 155–170. doi:10.1016/j.lithos.2012.01.028
  • Yang, X.Y., and Lee, I., 2011a, Review of the stable isotope geochemistry of Mesozoic igneous rocks and Cu–Au deposits along the middle–lower Yangtze metallogenic belt, China: International Geology Review, v. 53, p. 741–757. doi:10.1080/00206814.2010.533881
  • Yang, X.Y., Yang, X.M., Zhang, Z.W., Chi, Y.Y., Yu, L.F., and Zhang, Q.M., 2011b, A porphyritic copper (gold) ore-forming model for the Shaxi-Changpushan district, Lower Yangtze metallogenic belt, China: Geological and geochemical constraints: International Geology Review, v. 53, p. 580–611. doi:10.1080/00206810903211906
  • Yang, Y., Shi, Y.R., and Anderson, J.L., 2017, Zircon SHRIMP U-Pb ages and geochemistry of late Mesozoic granitoids in Western Zhejiang and Southern Anhui: Constraints on the model of lithospheric thinning of Southeast China: International Geology Review, p. 1–27. doi:10.1080/00206814.2017.1317220
  • Yu, X.Q., Wu, G.G., Zhang, D., Yan, T.Z., Di, Y.J., and Wang, L.W., 2006, Cretaceous extension of the Ganhang Tectonic Belt, southeastern China: Constraints from geochemistry of volcanic rocks: Cretaceous Research, v. 27, p. 663–672. doi:10.1016/j.cretres.2006.03.008
  • Yuan, F., Zhou, T.F., Liu, J., Fan, Y., Cooke, D.R., and Jowitt, S.M., 2011, Petrogenesis of volcanic and intrusive rocks of the Zhuanqiao stage, Luzong Basin, Yangtze metallogenic belt, east China: Implications for ore deposition: International Geology Review, v. 53, p. 526–541. doi:10.1080/00206814.2010.496246
  • Zeng, Q.D., Wang, Y.B., Zhang, S., Liu, J.M., Qin, K.Z., Yang, J.H., Sun, W.D., and Qu, W.J., 2012, U–Pb and Re–Os geochronology of the Tongcun molybdenum deposit and Zhilingtou gold-silver deposit in Zhejiang province, Southeast China, and its geological implications: Resource Geology, v. 63, p. 99–109. doi:10.1111/j.1751-3928.2012.00213.x
  • Zhang, D., Wu, G.G., Di, Y.J., Zang, W.S., Shao, Y.J., Yu, X.Q., Zhang, X.X., and Wang, Q.F., 2006, Emplacement dynamics of Fenghuangshan Pluton (Tongling, Anhui Province): Constraints from U–Pb SHRIMP dating of zircons and structural deformation: Earth Science-Journal of China University of Geosciences, v. 31, p. 823–829. [in Chinese with English abstract.]
  • Zhang, G.S., 2006. Chronology, geochemistry and geodynamic significance of the mafic-ultramafic rocks in Fujian province since Late Mesozoic [ Dissertation]: Beijing, University of Chinese Academy of Sciences, p. 89–90 (in Chinese with English abstract).
  • Zhang, J.F., Xie, H.S., Xu, X.M., and Gong, R.J., 2013, Geological and geochemical characteristics and tectonic and prospecting significance of the Shanxi-Guangshan intrusions in LiZhu area, Zhejiang province: Geology in China, v. 40, p. 403–412.
  • Zhang, S.B., and Zheng, Y.F., 2013, Formation and evolution of Precambrian continental lithosphere in South China: Gondwana Research, v. 23, p. 1241–1260. doi:10.1016/j.gr.2012.09.005
  • Zhang, X.L., Qiu, J.S., Wang, D.Z., Wang, R.C., Xu, X.S., and Chen, X.M., 2005, Geochemistry and magmatic mixing of the Putuoshan biotite moyites and their enclaves, Zhejiang Province: Acta Petrologica Et Mineralogica, v. 24, p. 81–92. [in Chinese with English abstract.]
  • Zhang, Y., Yang, J.H., Sun, J.F., Zhang, J.H., Chen, J.Y., and Li, X.H., 2015, Petrogenesis of Jurassic fractionated I-type granites in Southeast China: Constraints from whole-rock geochemical and zircon U–Pb and Hf–O isotopes: Journal of Asian Earth Sciences, v. 111, p. 268–283. doi:10.1016/j.jseaes.2015.07.009
  • Zhang, Y.Q., Xu, X.B., Jia, D., and Shu, L.S., 2009, Deformation record of the change from Indosinian collision-related tectonic system to Yanshanian subduction-related tectonic system in South China during the Early Mesozoic: Frontiers of Earth Science, v. 16, p. 234–247. [in Chinese with English abstract.]
  • Zhao, X.F., Zhou, M.F., Li, J.W., and Wu, F.Y., 2008, Association of Neoproterozoic A- and I-type granites in South China: Implications for generation of A-type granites in a subduction-related environment: Chemical Geology, v. 257, p. 1–15. doi:10.1016/j.chemgeo.2008.07.018
  • Zheng, Y.F., Xiao, W.J., and Zhao, G.C., 2013, Introduction to tectonics of China: Gondwana Research, v. 23, p. 1189–1206. doi:10.1016/j.gr.2012.10.001
  • Zhou, T.F., Fan, Y., Yuan, F., Lu, S.M., Shang, S.G., Cooke, D., Meffre, S., and Zhao, G.C., 2008, Geochronology of the volcanic rocks in the Lu–Zong basin and its significance: Science in China Series D: Earth Sciences, v. 51, p. 1470–1482. doi:10.1007/s11430-008-0111-7
  • Zhou, T.F., Wang, S.W., Yuan, F., Fan, Y., Zhang, D.Y., Chang, Y.F., and Noel, C.W., 2016, Magmatism and related mineralizationof the intracontinental porphyry deposits in the Middle-Lower Yangtze River Valley Metallogenic Belt: Acta Petrologica Sinica, v. 32, p. 271–288. [in Chinese with English abstract.]
  • Zhou, X.H., 1997, Isotope geochemical constraints on the tectonic evolution of southeastern China, in Yu, J.S., and Li, Y.S., eds., Isotope Geochemical Research of China: Science Press, p. 83–98. [in Chinese.]
  • Zhou, X.M., and Li, W.X., 2000, Origin of Late Mesozoic igneous rocks in Southeastern China: Implications for lithosphere subduction and underplating of mafic magmas: Tectonophysics, v. 326, p. 269–287. doi:10.1016/S0040-1951(00)00120-7
  • Zhou, X.M., Sun, T., Shen, W.Z., Shu, L.S., and Niu, Y.L., 2006, Petrogenesis of Mesozoic granitoids and volcanic rocks in South China: A response to tectonic evolution: Episodes, v. 29, p. 26–33.
  • Zhou, X.M., Xu, X.S., Dong, C.W., and Li, H.M., 1994, Mineral sign of active continental margin in southeastern China: Anorthitic plagioclase: Chinese Science Bulletin, v. 39, p. 1362–1366.
  • Zhu, A.Q., Zhang, Y.S., Lu, Z.D., and Zhang, C.L., 2009, Metallogenic series and belts of the metal and nonmetallic deposits of Zhejiang Province: Beijing, Geol. Publ. House. p. 1–433. [in Chinese.]
  • Zhu, Y.D., Zhang, D.H., Wang, L.L., Dai, Y.P., and Xi, A.H., 2017a, SHRIMP zircon U–Pb dating, geochemistry and Sr–Nd–Hf isotopes of the Tongcun ore-bearing porphyry in NW Zhejiang Province, South China: Journal of Geochemical Exploration, v. 172, p. 50–61. doi:10.1016/j.gexplo.2016.09.007
  • Zhu, Y.D., Zhang, D.H., Wang, L.L., Dai, Y.P., and Xi, A.H., 2017b, Petrogenesis and metallogenic potential of the Jurassic porphyries in the northwest Zhejiang Province, South China: Insights from SHRIMP zircon geochronology, geochemistry, and Sr–Nd–Hf isotopes of the Huangbaikeng ore-bearing porphyries: International Geology Review, v. 59, p. 219–233. doi:10.1080/00206814.2016.1220841

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.