202
Views
7
CrossRef citations to date
0
Altmetric
Articles

Early Cretaceous magmatism and associated polymetallic mineralization in South China: the Tiantang example

, , , , , & show all
Pages 1560-1580 | Received 17 Dec 2016, Accepted 29 Apr 2017, Published online: 15 May 2017

References

  • Amelin, Y., Lee, D.-C., and Halliday, A.N., 2000, Early-middle Archaean crustal evolution deduced from Lu-Hf and U-Pb isotopic studies of single zircon grains: Geochimica Et Cosmochimica Acta, v. 64, p. 4205–4225. doi:10.1016/S0016-7037(00)00493-2
  • Amelin, Y., Lee, D.-C., Halliday, A.N., and Pidgeon, R.T., 1999, Nature of the Earth’s earliest crust from hafnium isotopes in single detrital zircons: Nature, v. 399, p. 252–255. doi:10.1038/20426
  • Ballard, J., Palin, M., and Campbell, I., 2002, Relative oxidation states of magmas inferred from Ce(IV)/Ce(III) in zircon: Application to porphyry copper deposits of northern Chile: Contributions to Mineralogy and Petrology, v. 144, p. 347–364. doi:10.1007/s00410-002-0402-5
  • Belousova, E.A., Griffin, W.L., O’Reilly, S.Y., and Fisher, N., 2002, Igneous zircon: Trace element composition as an indicator of source rock type: Contributions to Mineralogy and Petrology, v. 143, p. 602–622. doi:10.1007/s00410-002-0364-7
  • Bolhar, R., Weaver, S.D., Palin, J.M., Cole, J.W., and Paterson, L.A., 2008, Systematics of zircon crystallisation in the Cretaceous Separation Point Suite, New Zealand, using U/Pb isotopes, REE and Ti geothermometry: Contributions to Mineralogy and Petrology, v. 156, p. 133–160. doi:10.1007/s00410-007-0278-5
  • Burnham, A.D., and Berry, A.J., 2012, An experimental study of trace element partitioning between zircon and melt as a function of oxygen fugacity: Geochimica Et Cosmochimica Acta, v. 95, p. 196–212. doi:10.1016/j.gca.2012.07.034
  • Cai, M.H., Zhan, M.G., Peng, S.B., Meng, X.J., and Liu, G.Q., 2002, Study of Mesozoic metallogenic geological setting and dynamic mechanism in Yunkai area: Mineral Deposits, v. 21, p. 254–269. [ in Chinese with English abstract.]
  • Cai, Y.T., Ni, P., Shen, K., Zhu, X.T., Huang, S.J., Zhang, X.C., and Xu, J.H., 2011, Study on the fluid inclusion from Dongxiang copper deposit, Jiangxi Province, China: Acta Petrologica Sinica, v. 27, p. 1375–1386. [ in Chinese with English abstract.]
  • Charvet, J., Shu, L.S., Shi, Y.S., Guo, L.Z., and Faure, M., 1996, The building of south China: Collision of Yangzi and Cathaysia blocks, problems and tentative answers: Journal of Southeast Asian Earth Sciences, v. 13, p. 223–235. doi:10.1016/0743-9547(96)00029-3
  • Chen, F.W., Li, H.Q., and Mei, Y.P., 2008, Zircon SHRIMP U–Pb chronology of diagenetic mineralization of the Longtoushan porphyry gold orefield, Gui County Guangxi: Acta Geologica Sinica, v. 82, p. 921–926. [ in Chinese with English abstract.]
  • 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, S.Z., Huang, Z.Q., Zhu, X.T., Chen, G., and Ma, M., 2013, Magmatism and ore-forming background of the main deposits in Taoxi circular structure along the Wuyishan ore belt: Geology in China, v. 40, p. 1569–1582. [ in Chinese with English abstract.]
  • Chen, X.H., and Zheng, S.H., 2008, New prospecting discovery in Yongping Shizitou molybdenum mineralized zone: Jiangxi Nonferrous Metals, v. 22, p. 7–9. [ in Chinese with English abstract.]
  • Chen, Z.H., Guo, K.Y., Dong, Y.G., Chen, R., Li, L.M., Liang, Y.H., Li, C.H., Yu, X.M., Zhao, L., and Xing, G.F., 2009, Possible early Neoproterozoic magmatism associated with slab window in the Pingshui segment of the Jiangshan-Shaoxing suture zone: Evidence from zircon LA–ICP–MS U–Pb geochronology and geochemistry: Science in China Series D: Earth Sciences, v. 52, p. 925–939. doi:10.1007/s11430-009-0071-6
  • Chu, K.L., Mao, J.W., Chen, M.H., Zhao, J., Yu, C.F., Lin, L.Z., and Lin, X.G., 2013, Source of metallogenic materials and ore-forming fluids, and metallogenic mechanism of the Yuanzhuding porphyry Cu–Mo deposit, western Guangdong Province, South China: Earth Science Frontiers, v. 20, p. 115–125. [ in Chinese with English abstract.]
  • Chu, N.-C., Taylor, R.N., Chavagnac, V., Nesbitt, R.W., Boella, R.M., Milton, J.A., German, C.R., Bayon, G., and Burton, K., 2002, Hf isotope ratio analysis using multi-collector inductively coupled plasma mass spectrometry: An evaluation of isobaric interference corrections: Journal of Analytical Atomic Spectrometry, v. 17, p. 1567–1574. doi:10.1039/b206707b
  • Deng, J.F., Mo, X.X., Zhao, H.L., Luo, Z.H., Zhao, G.C., and Dai, S.Q., 1999, The Yanshanian lithosphere–asthenosphere catastrophe and metallogenic environment in East China: Mineral Deposits, v. 18, p. 309–315. [ in Chinese with English abstract.]
  • 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
  • Duan, G., Chen, H.Y., Hollings, P., Qi, J.P., Xu, C., Zhang, S., Xiao, B., Liu, G.Y., and Liu, J.M., 2017, The Mesozoic magmatic sources and tectonic setting of the Zijinshan mineral field, South China: Constraints from geochronology and geochemistry of igneous rocks in the Southeastern Ore Segment: Ore Geology Reviews, v. 80, p. 800–827. doi:10.1016/j.oregeorev.2016.08.016
  • Faure, G., 1977, Principles of Isotope Geology: New York, John Wiley and Sons, p. 156–180.
  • Faure, M., 1998, Doming in the southern foreland of the Dabieshan (Yangtze block, China): Terra Nova, v. 18, p. 307–311. doi:10.1046/j.1365-3121.1998.00207.x
  • Faure, M., Sun, Y., Shu, L.S., Monié, P., and Charvet, J., 1996, Extensional tectonics within a subduction-type orogen. The case study of the Wugongshan dome (Jiangxi Province, southeastern China): Tectonophysics, v. 263, p. 77–106. doi:10.1016/S0040-1951(97)81487-4
  • Finch, R.J., and Hanchar, J.M., 2003, Structure and chemistry of zircon and zircon-group minerals: Reviews in Mineralogy and Geochemistry, v. 53, p. 1–25. doi:10.2113/0530001
  • Gao, Y.M., Chen, Y.C., Wang, C.H., and Hou, K.J., 2011, Zircon Hf isotopic characteristics and constraints on petrogenesis of Mesozoic–Cenozoic magmatic rocks in Nyainqentanglha region, Tibet: Mineral Deposits, v. 30, p. 279–291. [ in Chinese with English abstract.]
  • Gilder, S.A., Keller, G.R., Luo, M., and Goodell, P.C., 1991, Eastern Asia and the Western Pacific timing and spatial distribution of rifting in China: Tectonophysics, v. 197, p. 225–243. doi:10.1016/0040-1951(91)90043-R
  • Goldfarb, R.J., Hart, C., Davis, G., and Groves, D., 2007, East Asian gold: Deciphering the anomaly of Phanerozoic gold in Precambrian cratons: Economic Geology, v. 102, p. 341–345. doi:10.2113/gsecongeo.102.3.341
  • Griffin, W.L., Pearson, N.J., Belousova, E., Jackson, S.E., Van Achterbergh, E., O’Reilly, S.Y., and Shee, S.R., 2000, The Hf isotope composition of cratonic mantle: LAM–MC–ICPMS analysis of zircon megacrysts in kimberlites: Geochimica Et Cosmochimica Acta, v. 64, p. 133–147. doi:10.1016/S0016-7037(99)00343-9
  • Guo, C.L., Xu, Y.M., Lou, F.S., and Zheng, J.H., 2013, A comparative study of the Middle Jurassic granodiorite related to Cu and the Late Jurassic granites related to Sn in the Qin–Hang metallogenic belt and a tentative discussion on their tectonic dynamic setting: Acta Petrologica Et Mineralogica, v. 32, p. 463–484. [ in Chinese with English abstract.]
  • 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
  • Hoskin, P.W.O., 2005, Trace-element composition of hydrothermal zircon and the alteration of hadean zircon from the Jack Hills, Australia: Geochimica Et Cosmochimica Acta, v. 328, p. 208–221.
  • Hoskin, P.W.O., and Black, L.P., 2000, Metamorphic zircon formation by solid-state recrystallization of protolith igneous zircon: Journal of Metamorphic Geology, v. 18, p. 423–439. doi:10.1046/j.1525-1314.2000.00266.x
  • Hoskin, P.W.O., and Schaltegger, U., 2003, The composition of zircon and igneous and metamorphic petrogenesis: Reviews in Mineralogy Geochemistry, v. 53, p. 27–62. doi:10.2113/0530027
  • Hou, K.J., Li, Y.H., Zou, T.R., Qu, X.M., Shi, Y.R., and Xie, G.Q., 2007, Laser ablation–MC–ICP–MS technique for Hf isotope microanalysis of zircon and its geological applications: Acta Geologica Sinica, v. 23, p. 2595–2604. [ in Chinese with English abstract.]
  • Hsü, K.J., Li, J.L., Chen, H.H., Wang, Q., Sun, S., and Şengör, A.M.C., 1990, Tectonics of South China: Key to understanding West Pacific geology: Tectonophysics, v. 183, p. 9–39. doi:10.1016/0040-1951(90)90186-C
  • Hu, M.-Y., Fan, X.-T., Stoll, B., Kuzmin, D., Liu, Y., Liu, Y.S., Sun, W.D., Wang, G., Zhan, X.-C., and Jochum, K.P., 2011, Preliminary characterisation of new reference materials for microanalysis: Chinese geological standard glasses CGSG-1, CGSG-2, CGSG-4 and CGSG-5: Geostandards and Geoanalytical Research, v. 35, p. 235–251. doi:10.1111/ggr.2011.35.issue-2
  • Hu, R.Z., Bi, X.W., Peng, J.T., Liu, S., Zhong, H., Zhao, J.H., and Jian, G.H., 2007, Some problems concerning relationship between Mesozoic-Cenozoic lithospheric extension and uranium metallogenesis in South China: Mineral Deposits, v. 26, p. 139–152. [ in Chinese with English abstract.]
  • Hu, S.Q., Zhou, G.F., Peng, S.B., Zhang, X.J., Yi, S.H., and Tang, G.S., 2012, Chronology and geochemical characteristics of quartz monzonite (porphyry) in the Dali copper-molybdenum deposit and its geological significance: Acta Geoscientica Sinica, v. 33, p. 23–37. [ in Chinese with English abstract.]
  • Huang, W.T., Li, J., Liang, H.Y., Wang, C.L., Lin, S.P., and Wang, X.Z., 2013, Zircon LA–ICP–MS U–Pb ages and highly oxidized features of magma associated with Luoboling porphyry Cu–Mo deposit in Zijinshan ore field, Fujian Province: Acta Petrologica Sinica, v. 29, p. 283–293. [ in Chinese with English abstract.]
  • Jiang, S.-H., Liang, Q.-L., Bagas, L., Wang, S.-H., Nie, F.-J., and Liu, Y.-F., 2013, Geodynamic setting of the Zijinshan porphyry-epithermal Cu–Au–Mo–Ag ore system, SW Fujian Province, China: Constrains from the geochronology and geochemistry of the igneous rocks: Ore Geology Reviews, v. 53, p. 287–305. doi:10.1016/j.oregeorev.2013.02.001
  • Jiang, X.-Y., and Li, X.-H., 2014, In situ zircon U–Pb and Hf–O isotopic results for ca. 73 Ma granite in Hainan Island: Implications for the termination of an Andean-type active continental margin in southeast China: Journal of Asian Earth Sciences, v. 82, p. 32–46. doi:10.1016/j.jseaes.2013.12.013
  • Lecumberri-Sanchez, P., Romer, R.L., Lüders, V., and Bodnar, R.J., 2014, Genetic relationship between silver–lead–zinc mineralization in the Wutong deposit, Guangxi Province and Mesozoic granitic magmatism in the Nanling belt, southeast China: Mineralium Deposita, v. 49, p. 353–369. doi:10.1007/s00126-013-0494-z
  • Li, B., and Jiang, S.-Y., 2015, A subduction-related metasomatically enriched mantle origin for the Luoboling and Zhongliao Cretaceous granitoids from South China: Implications for magma evolution and Cu–Mo mineralization: International Geology Review, v. 57, p. 1239–1266. doi:10.1080/00206814.2014.979452
  • Liu, Q., Yu, J.H., Su, B., Wang, Q., Tang, H.F., Xu, H., and Cui, X., 2011, Discovery of the 187 Ma granite in Jincheng area, Fujian Province: constraint on Early Jurassic tectonic evolution of southeastern China: Acta Petrologica Sinica, v. 27, p. 3575–3589. [in Chinese with English abstract.]
  • Li, C.-Y., Zhang, H., Wang, F.-Y., Liu, J.-Q., Sun, Y.-L., Hao, X.-L., Li, Y.-L., and Sun, W.D., 2012a, The formation of the Dabaoshan porphyry molybdenum deposit induced by slab rollback: Lithos, v. 150, p. 101–110. doi:10.1016/j.lithos.2012.04.001
  • Li, X.F., Hu, R.Z., Hua, R.M., Ma, D.S., Wu, L.Y., Qi, Y.Q., and Peng, J.T., 2013a, The Mesozoic syntexis type granite-related Cu–Pb–Zn mineralization in South China: Acta Petrologica Sinica, v. 29, p. 4037–4050. [ in Chinese with English abstract.]
  • Li, X.F., Watanabe, Y., and Yi, X., 2013b, Ages and sources of ore-related porphyries at Yongping Cu–Mo deposit in Jiangxi Province, Southeast China: Resource Geology, v. 63, p. 288–312. doi:10.1111/rge.12009
  • Li, X.-H., Li, W.-X., Li, Z.-X., Lo, C.-H., Wang, J., Ye, M.-F., and Yang, Y.-H., 2009, 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., He, B., Li, W.-X., Li, Q.-L., Gao, Y., and Wang, X.-C., 2012b, The Early Permian active continental margin and crustal growth of the Cathaysia Block: In situ U–Pb, Lu–Hf and O isotope analyses of detrital zircons: Chemical Geology, v. 328, p. 195–207. doi:10.1016/j.chemgeo.2011.10.027
  • Li, Z., Qiu, J.-S., and Yang, X.-M., 2014, 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.-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., Chung, S.-L., Lo, C.-H., Xu, X.S., and Li, W.-X., 2012c, Magmatic switch-on and switch-off along the South China continental margin since the Permian: Transition from an Andean-type to a Western Pacific-type plate boundary: Tectonophysics, v. 532-535, p. 271–290. doi:10.1016/j.tecto.2012.02.011
  • Liang, Q.L., Jiang, S.H., Wang, S.H., Li, C., and Zeng, F.G., 2012, Re–Os dating of molybdenite from the Luoboling porphyry Cu–Mo deposit in the Zijinshan ore field of Fujian province and its geological significance: Acta Geologica Sinica, v. 86, p. 113–1118. [ in Chinese with English abstract.]
  • Lin, J., Liu, Y.S., Yang, Y.H., and Hu, Z.C., 2016, Calibration and correction of LA–ICP–MS and LA–MC–ICP–MS analyses for element contents and isotopic ratios: Solid Earth Sciences, v. 1, p. 5–27. doi:10.1016/j.sesci.2016.04.002
  • Ling, M.-X., Wang, F.-Y., Ding, X., Hu, Y.-H., Zhou, J.-B., Zartman, R.E., Yang, X.-Y., and Sun, W.D., 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
  • Ling, M.-X., Wang, F.-Y., Ding, X., Zhou, J.-B., and Sun, W.D., 2011, Different origins of adakites from the Dabie Mountains and the Lower Yangtze River Belt, eastern China: Geochemical constraints: International Geology Review, v. 53, p. 727–740. doi:10.1080/00206814.2010.482349
  • Liu, M., Zhao, Z.D., Guan, Q., Dong, G.C., Mo, X.X., Liu, Y.S., and Hu, Z.C., 2010, Tracing magma mixing genesis of the middle Early-Jurassic host granites and enclaves in Nyanrong microcontinent, Tibet from zircon LA–ICP–MS dating and Hf isotopes: Acta Petrologica Sinica, v. 27, p. 1931–1937. [ in Chinese with English abstract.]
  • Liu, Q., Yu, J.H., Su, B., Wang, Q., Tang, H.F., Xu, H., and Cui, X., 2011, Discovery of the 187 ma granite in jincheng area, fujian province: constraint on early jurassic tectonic evolution of southeastern china: acta petrologica sinica, v. 27, p. 3575–3589. [ in Chinese with English abstract.]
  • Ludwig, K.R., 2003, User’s Manual for Isoplot/Ex. Version 3.00: A geochronological toolkit for Microsoft Excel: Berkeley Geochronology Center Special Publication, v. 4, p. 1–70.
  • Ma, D.Q., Zhao, Z.J., and Lin, H.K., 1985, Petrographical study of the enclaves from the Gangwei-Shilu-Type granitoids in Yangchun basins of Guangdong and discussion on their genesis: Journal of the Chinese Academy Yichang Geological Sciences, v. 10, p. 59–72. [ in Chinese with English abstract.]
  • Mao, J.W., Chen, M.H., Yuan, S.D., and Guo, C.L., 2011a, Geological characteristics of the Qing–Hang (or Shihang) metallogenic belt in South China and spatial–temporal distribution regularity of mineral deposits: Acta Geologica Sinica, v. 85, p. 636–658. [ in Chinese with English abstract.]
  • Mao, J.W., Zhang, J.D., Pirajno, F., Ishiyama, D., Su, H.M., Guo, C.L., and Chen, Y.C., 2011b, Porphyry Cu–Au–Mo–epithermal Ag–Pb–Zn–distal hydrothermal Au deposits in the Dexing area, Jiangxi Province, East China—A linked ore system: Ore Geology Reviews, v. 43, p. 203–216. doi:10.1016/j.oregeorev.2011.08.005
  • Mao, J.-W., Cheng, Y.-B., Chen, M.-H., and Pirajno, F., 2013, Major types and time-space distribution of mesozoic ore deposits in south china and their geodynamic settings: Mineralium Deposita, v. 48, p. 267–294. doi: 10.1007/s00126-012-0446-z
  • Mao, J.W., Pirajno, F., and Cook, N., 2011c, Mesozoic metallogeny in East China and corresponding geodynamic settings-an introduction to the special issue: Ore Geology Reviews, v. 43, p. 1–7. doi:10.1016/j.oregeorev.2011.09.003
  • Mao, J.W., and Wang, Z.L., 2000, A preliminary study on time limits and geodynamic setting of large-scale metallogeny in East China: Mineral Deposits, v. 19, p. 289–296. [ in Chinese with English abstract.]
  • Mao, J.W., Xie, G.Q., Guo, C.L., and Chen, Y.C., 2007, Large-scale tungsten–tin mineralization in the Nanling region, South China: Metallogenic ages and corresponding geodynamic processes: Acta Petrologica Sinica, v. 23, p. 2329–2338. [ in Chinese with English abstract.]
  • Mao, J.W., Xie, G.Q., Guo, C.L., Yuan, S.D., Chen, Y.B., and Chen, Y.C., 2008, Spatial–temporal distribution of Mesozoic ore deposits in South China and their metallogenic settings: Geological Journal of China Universities, v. 14, p. 510–526. [ in Chinese with English abstract.]
  • Mao, J.W., Xie, G.Q., Li, X.F., Zhang, C.Q., and Wang, Y.T., 2006, Mesozoic large-scale mineralization and multiple lithospheric extensions in South China: Acta Petrologica Sinica, v. 80, p. 420–431. [ in Chinese with English abstract.]
  • Mao, J.W., Zhang, J.D., and Guo, C.L., 2010, Porphyry Cu, epithermal Ag–Pb–Zn, distal hydrothermal Au deposits: A new model of mineral deposit—taking the Dexing area as an example: Journal of Earth Sciences and Environment, v. 32, p. 1–13. [ in Chinese with English abstract.]
  • Maruyama, S., Isozaki, Y., Kimura, G., and Terabayashi, M., 1997, Paleogeographic maps of the Japanese Islands: Plate tectonic synthesis from 750 Ma to the present: The Island Arc, v. 6, p. 121–142. doi:10.1111/iar.1997.6.issue-1
  • McDonough, W.F., and Sun, -S.-S., 1995, The composition of the Earth: Chemical Geology, v. 120, p. 223–253. doi:10.1016/0009-2541(94)00140-4
  • Meng, X.J., Hou, Z.Q., Dong, G.Y., Liu, J.G., Qu, W.J., Yang, Z.S., Zuo, L.Y., Wan, L.J., and Xiao, M.Z., 2007, The geological characteristics and Re-Os isotope age of molybdenite of the Xiongjiashan molybdenum deposit, Jiangxi Province: Acta Petrologica Sinica, v. 81, p. 946–951. [ in Chinese with English abstract.]
  • Morel, M.L.A., Nebel, O., Nebel-Jacobsen, Y.J., Miller, J.S., and Vroon, P.Z., 2008, Hafnium isotope characterization of the GJ-1 zircon reference material by solution and laser-ablation MC–ICPMS: Chemical Geology, v. 255, p. 231–235. doi:10.1016/j.chemgeo.2008.06.040
  • Nasdala, L., Hofmeister, W., Norberg, N., Martinson, J.M., Corfu, F., Dörr, W., Kamo, S.L., Kennedy, A.K., Kronz, A., Reiners, P.W., Frei, D., Kosler, J., Wan, Y., Götze, J., Häger, T., Kröner, A., and Valley, J.W., 2008, Zircon M257-a homogeneous natural reference material for the ion microprobe U–Pb analysis of zircon: Geostandards and Geoanalytical Research, v. 32, p. 247–265. doi:10.1111/ggr.2008.32.issue-3
  • Ni, P., Pan, J.-Y., Wang, G.-G., Chi, Z., Qin, H., Ding, J.-Y., and Chen, H., 2017, A CO2-rich porphyry ore-forming fluid system constrained from a combined cathodoluminescence imaging and fluid inclusion studies of quartz veins from the Tongcun Mo deposit, South China: Ore Geology Reviews, v. 81, p. 856–870. doi:10.1016/j.oregeorev.2016.07.007
  • Ni, P., Tian, J.H., Zhu, X.T., Ling, H.F., Jiang, S.Y., and Gu, L.X., 2005, Fluid inclusion studies on footwall stringer system mineralization of Yongping massive copper deposit, Jiangsu province, China: Acta Petrologica Sinica, v. 21, p. 1339–1346. [ in Chinese with English abstract.]
  • Ni, P., Wang, X.-D., Wang, G.-G., Huang, J.-B., Pan, J.-Y., and Wang, T.-G., 2015, An infrared microthermometric study of fluid inclusions in coexisting quartz and wolframite from Late Mesozoic tungsten deposits in the Gannan metallogenic belt, South China: Ore Geology Reviews, v. 65, p. 1062–1077. doi:10.1016/j.oregeorev.2014.08.007
  • Peng, J.T., Hu, R.Z., Yuan, S.D., and Shen, N.P., 2008, The time ranges of granitoid emplacement and related nonferrous metallic mineralization in southern Hunan: Geological Review, v. 54, p. 617–625. [ in Chinese with English abstract.]
  • Pettke, T., Audétat, A., Schaltegger, U., and Heinrich, C.A., 2005, Magmatic-to- hydrothermal crystallization in the W–Sn mineralized Mole Granite (NSW, Australia): Part II: Evolving zircon and thorite trace element chemistry: Chemical Geology, v. 220, p. 191–213. doi:10.1016/j.chemgeo.2005.02.017
  • 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
  • Qi, J.Z., Liu, H.Y., and Jiang, Y.H., 2000, Yanshanian subduction and strikestrike-slipping regime of East China, and its control of ore localization: Volcanology & Mineral Resources, v. 21, p. 244–265. [ in Chinese with English abstract.]
  • Qu, H.Y., Chen, M.H., Yang, F.C., Gao, Z.H., Wang, Y.W., Zhao, H.J., and Yu, Z.F., 2014, Metallogenic chronology of stratiform Cu orebody in the Dabaoshan Cu polymetallic deposit, northern Guangdong Province and its geological significance: Acta Petrologica Sinica, v. 30, p. 152–162. [ in Chinese with English abstract.]
  • Ren, J.X., Wang, Z.X., and Chen, B.W., 1999, View on China tectonics from the globe: Brief introduction of the tectonic map of China and adjacent area: Beijing, Geological Publishing House, p. 1–50. [ in Chinese with English abstract.]
  • Shen, P., Hattori, K., Pan, H.D., Jackson, S., and Seitmuratova, E., 2015, Oxidation condition and metal fertility of granitic magmas: Zircon trace-element data from porphyry Cu deposits in the Central Asian Orogenic Belt: Economic Geology, v. 110, p. 1861–1878. doi:10.2113/econgeo.110.7.1861
  • Shu, L.S., Faure, M., Jiang, S.Y., Yang, Q., and Wang, Y.J., 2006, SHRIMP zircon U–Pb age, litho- and biostratigraphic analyses of the Huaiyu Domain in South China: Evidence for a Neoproterozoic orogen, not Late Paleozoic-Early Mesozoic collision: Episodes, v. 29, p. 244–252.
  • Shu, L.-S., Faure, M., Yu, J.-H., and Jahn, B.-M., 2011a, Geochronological and geochemical features of the Cathaysia block (South China): New evidence for the Neoproterozoic breakup of Rodinia: Precambrian Research, v. 187, p. 263–276. doi:10.1016/j.precamres.2011.03.003
  • Shu, L.S., Yu, J.H., Jia, D., Wang, B., Shen, W.Z., and Zhang, Y.Q., 2008, Early Paleozoic orogenic belt in the eastern segment of South China: Geological Bulletin of China, v. 27, p. 1581–1593. [ in Chinese with English abstract.]
  • Shu, X.-J., Wang, X.-L., Sun, T., Xu, X.S., and Dai, M.-N., 2011b, Trace elements, U–Pb ages and Hf isotopes of zircons from Mesozoic granites in the western Nanling Range, South China: Implications for petrogenesis and W–Sn mineralization: Lithos, v. 127, p. 468–482. doi:10.1016/j.lithos.2011.09.019
  • Si, T.H., Zheng, C.N., and Huang, D.X., 2004, The geological characteristics and prospecting prospect of Tiantang chalcopyrite polymetallic deposit: West-China Exploration Engineering, v. 5, p. 76–77. [ in Chinese with English abstract.]
  • Sláma, J., Košler, J., Condon, D.J., Crowley, J.L., Gerdes, A., Hanchar, J.M., Horstwood, M.S.A., Morris, G.A., Nasdala, L., Norberg, N., Schaltegger, U., Schoene, B., Tubrett, M.N., and Whitehouse, M.J., 2008, Plešovice zircon — A new natural reference material for U–Pb and Hf isotopic microanalysis: Chemical Geology, v. 249, p. 1–35. doi:10.1016/j.chemgeo.2007.11.005
  • Streckeisen, A.L., 1976, Classification of the common igneous rocks by means of their chemical composition: A provisional attempt: Neues Jahrbuch Fur Mineralogie, Monatshefte, v. 1, p. 1–15.
  • Su, H.M., Mao, J.W., Santosh, M., and Xie, G.Q., 2014, Petrogenesis and tectonic significance of Late Jurassic–Early Cretaceous volcanic–intrusive complex in the Tianhuashan basin, South China: Ore Geology Reviews, v. 56, p. 566–583. doi:10.1016/j.oregeorev.2013.05.004
  • Sun, W.D., Arculus, R.J., Kamenetsky, V.S., and Binns, R.A., 2004, Release of gold-bearing fluids in convergent margin magmas prompted by magnetite crystallization: Nature, v. 431, p. 975–978. doi:10.1038/nature02972
  • 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., Liang, H.-Y., Ling, M.-X., Zhan, M.-Z., Ding, X., Zhang, H., Yang, X.-Y., Li, Y.-L., Ireland, T.R., Wei, Q.-R., and Fan, W.-M., 2013, The link between reduced porphyry copper deposits and oxidized magmas: Geochimica Et Cosmochimica Acta, v. 103, p. 263–275. doi:10.1016/j.gca.2012.10.054
  • Sun, W.-D., Ling, M.-X., Chung, S.-L., Ding, X., Yang, X.-Y., Liang, H.-Y., Fan, W.-M., Goldfarb, R., and Yin, Q.-Z., 2012b, Geochemical constraints on adakites of different origins and copper mineralization: The Journal of Geology, v. 120, p. 105–120. doi:10.1086/662736
  • Sun, W.-D., Yang, X.-Y., Fan, W.-M., and Wu, F.-Y., 2012a, Mesozoic large scale magmatism and mineralization in South China: Preface: Lithos, v. 150, p. 1–5. doi:10.1016/j.lithos.2012.06.028
  • Sun, W.D., Zhang, H., Ling, X., Ding, X., Chung, S.-L., Zhou, J., Yang, X.-Y., and Fan, W., 2011, The genetic association of adakites and Cu–Au ore deposits: International Geology Review, v. 53, p. 691–703. doi:10.1080/00206814.2010.507362
  • Sun, X.M., Chen, W., Wang, M., Xue, T., Sun, K., and Chen, B.H., 2003, Isochron ages of microprobe about fine disseminated type of gold deposit: Example as Changkeng large-scale gold deposit: Chinese Science Bulletin, v. 48, p. 1355–1358. [ in Chinese with English abstract.] doi:10.1007/BF03184073
  • Tao, K.Y., Mao, J.R., Xing, G.F., Yang, Z.L., and Zhao, Y., 1999, Strong Yanshanian volcanic-magmatic explosion in East China: Mineral Deposits, v. 18, p. 316–322. [ in Chinese with English abstract.]
  • Trail, D., Bruce Watson, E., and Tailby, N.D., 2012, Ce and Eu anomalies in zircon as proxies for the oxidation state of magmas: Geochimica Et Cosmochimica Acta, v. 97, p. 70–87. doi:10.1016/j.gca.2012.08.032
  • Vavra, G., Schmid, R., and Gebauer, D., 1999, Internal morphology, habit and U-Th-Pb microanalysis of amphibolite-to-granulite facies zircons: Geochronology of the Ivrea Zone (Southern Alps): Contributions to Mineralogy and Petrology, v. 134, p. 380–404. doi:10.1007/s004100050492
  • Vervoort, J.D., Patchett, P.J., Gehrels, G.E., and Nutman, A.P., 1996, Constraints on early Earth differentiation from hafnium and neodymium isotopes: Nature, v. 379, p. 624–627. doi:10.1038/379624a0
  • Wang, C.M., Zhang, D., Wu, G.G., Santosh, M., Zhang, J., Xu, Y.G., and Zhang, Y.Y., 2014, Geological and isotopic evidence for magmatic-hydrothermal origin of the Ag–Pb–Zn deposits in the Lengshuikeng District, east-central China: Mineralium Deposita, v. 49, p. 733–749. doi:10.1007/s00126-014-0521-8
  • Wang, D.Z., Shu, L.S., Faure, M., and Sheng, W.Z., 2001b, Mesozoic magmatism and granitic dome in the Wugongshan Massif, Jiangxi province and their genetical relationship to the tectonic events in southeast China: Tectonophysics, v. 339, p. 259–277. doi:10.1016/S0040-1951(01)00130-5
  • 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., 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., Wang, R., Zhao, K., Chen, H., Ding, J., Zhao, C., and Cai, Y., 2013a, Geological, fluid inclusion and isotopic studies of the Yinshan Cu–Au–Pb–Zn–Ag deposit, South China: Implications for ore genesis and exploration: Journal of Asian Earth Sciences, v. 74, p. 343–360. doi:10.1016/j.jseaes.2012.11.038
  • Wang, L.K., Tan, M.T., Liu, S.X., Huang, Z.L., and Li, F.C., 2001a, The ore control condition and metallogenic prediction of copper gold deposits in Wuchuan–Sihui fault zone: Beijing, Geologocal Publishing House, p. 32–74. [ in Chinese.]
  • Wang, Q., Xu, J.F., Jian, P., Bao, Z.W., Zhao, Z.H., Li, C.F., Xiong, X.L., and Ma, J.L., 2006, Petrogenesis of adakiic porphyries in an extensional tectonic setting, Dexing, South China: Implications for the genesis of porphyry copper mineralization: Journal of Petrology, v. 47, p. 119–144. doi:10.1093/petrology/egi070
  • Wang, X.-L., Zhou, J.-C., Griffin, W.L., Wang, R.-C., Qiu, J.-S., O’Reilly, S.Y., Xu, X.S., Liu, X.-M., and Zhang, G.-L., 2007, Detrital zircon geochronology of Precambrian basement sequences in the Jiangnan orogen: Dating the assembly of the Yangtze and Cathaysia blocks: Precambrian Research, v. 159, p. 117–131. doi:10.1016/j.precamres.2007.06.005
  • 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. 297–308. doi:10.1016/j.lithos.2008.07.019
  • Wang, Y.J., Fan, W.M., Guo, F., and Peng, T.P., 2003, Geochemistry of Mesozoic mafic rocks around the Chenzhou–Linwu fault in South China: Implication for the lithospheric boundary between the Yangtze and the Cathaysia Blocks: International Geology Review, v. 45, p. 263–286. doi:10.2747/0020-6814.45.3.263
  • Wang, Y.J., Fan, W.M., Zhang, G.W., and Zhang, Y.H., 2013b, Phanerozoic tectonics of the South China Block: Key observations and controversies: Gondwana Research, v. 23, p. 1273–1305. doi:10.1016/j.gr.2012.02.019
  • Wilde, S.A., Valley, J.W., Peck, W.H., and Graham, C.M., 2001, Evidence from detrital zircons for the existence of continental crust and oceans on the Earth 4.4 Gyr ago: Nature, v. 409, p. 175–178. doi:10.1038/35051550
  • Wu, C.-L., Dong, S.-W., Wu, D., Zhang, X., and Ernst, W.G., 2017, Late mesozoic high-k calc-alkaline magmatism in southeast china: the tongling example:International Geology Review, doi: 10.1080/00206814.2017.1313137
  • Wu, F.Y., Li, X.H., Zheng, Y.F., and Gao, S., 2007, Lu-Hf isotopic systematics and their applications in petrology: Acta Petrologica Sinica, v. 23, p. 185–220. [ in Chinese with English abstract.]
  • Wu, F.-Y., Yang, Y.-H., Xie, L.-W., Yang, J.-H., and Xu, P., 2006, Hf isotopic compositions of the standard zircons and baddeleyites used in U–Pb geochronology: Chemical Geology, v. 234, p. 105–126. doi:10.1016/j.chemgeo.2006.05.003
  • Wu, S.H., Mao, J.W., Xie, G.Q., Geng, J.Z., and Xiong, B.K., 2015, Geology, geochronology, and Hf isotope geochemistry of the Longtougang skarn and hydrothermal vein Cu-Zn deposit, North Wuyi area, southeastern China: Ore Geology Reviews, v. 70, p. 136–150. doi:10.1016/j.oregeorev.2015.04.012
  • Xie, J.C., Yang, X.Y., Sun, W.D., and Du, J.G., 2012, Early Cretaceous dioritic rocks in the Tongling region, eastern China: Implications for the tectonic settings: Lithos, v. 150, p. 49–61. doi:10.1016/j.lithos.2012.05.008
  • Xie, J.C., Yang, X.Y., Sun, W.D., Du, J.G., Xu, W., Wu, L.B., 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
  • Xing, B., Xiang, J.F., Ye, H.S., Chen, X.D., Zhang, G.S., Yang, C.Y., and Jin, X., 2016, Rb–Sr isochron age of sulfides and sulfur isotopic composition from lamellar ores of the luotuoshan sulfur polymetallic deposit in western Henan Province and its constraints on the ore genesis: Geological Bulletin of China, v. 35, p. 998–1014. [ in Chinese with English abstract.]
  • Xu, C., Chen, H.Y., Huang, W., Qi, J., Duan, G., Zhang, L., Wu, C., Zhang, S., and Zhong, W., 2016, Mesozoic multiphase magmatism at the Xinan Cu–Mo ore deposit (Zijinshan Orefield): Geodynamic setting and metallogenic implications: Ore Geology Reviews. doi:10.1016/j.oregeorev.2016.06.019
  • 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
  • Yang, J.H., Wu, F.Y., Xie, L.W., and Liu, X.M., 2007, Petrogenesis and tectonic implications of Kuangdonggou syenites in the Liaodong Peninsula, east North China Craton: Constraints from in-situ zircon U–Pb ages and Hf isotopes: Acta Petrologica Sinica, v. 23, p. 263–276. [ in Chinese with English abstract.]
  • Yang, M.G., Huang, S.B., Lou, F.S., Tang, W.X., and Mao, S.B., 2009, Lithospheric structure and large-scale metallogenic process in Southeast China continental area: Geology in China, v. 36, p. 528–543. [ in Chinese with English abstract.]
  • Yang, M.G., and Mei, Y.W., 1997, Characteristics of geology and metallization in the Qinzhou–Hangzhou paleoplate juncture: Geology and Mineral Resources of South China, v. 3, p. 52–59. [ in Chinese with English abstract.]
  • Yang, X.Y., Yang, X.M., Zhang, Z.W., Chi, Y.Y., Yu, L.F., and Zhang, Q.M., 2011, A porphyritic copper (gold) ore-forming model for the Shaxi-Changpushan district, lower Yangtze metallogenic belt, China: Geological and geochemical constraints: International Geology Reviews, v. 53, p. 741–757. doi:10.1080/00206814.2010.533881
  • Yu, X.Q., Shu, L.S., Yan, T.Z., and Zu, F.P., 2005, Prototype and sedimentation of red basins along the Ganhang tectonic belt: Acta Sedimentologica Sinica, v. 23, p. 12–20. [ in Chinese with English abstract.]
  • Yuan, S.D., Mao, J.W., Cook, N.J., Wang, X.D., Liu, X.F., and Yuan, Y.B., 2015, A Late Cretaceous tin metallogenic event in Nanling W–Sn metallogenic province: Constraints from U–Pb, Ar–Ar geochronology at the Jiepailing Sn–Be–F deposit, Hunan, China: Ore Geology Reviews, v. 65, p. 283–293. doi:10.1016/j.oregeorev.2014.10.006
  • Zeng, Q.D., Wang, Y.B., Zhang, S., Liu, J.M., Qin, K.Z., Yang, J.H., Sun, W.D., and Qu, W.J., 2013, 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/rge.2013.63.issue-1
  • Zhang, D.Q., She, H.Q., Li, D.X., and Feng, C.Y., 2003, The porphyry–epithermal metallogenic system in the Zijinshan region, Fujian Province: Acta Geologica Sinica, v. 77, p. 253–261. [ in Chinese with English abstract.]
  • Zhang, H., Ling, M.-X., Liu, Y.-L., Tu, X.-L., Wang, F.-Y., Li, C.-Y., Liang, H.-Y., Yang, X.-Y., Arndt, N.T., and Sun, W.-D., 2013a, High oxygen fugacity and slab melting linked to Cu mineralization: Evidence from Dexing porphyry copper deposits, southeastern China: The Journal of Geology, v. 121, p. 289–305. doi:10.1086/669975
  • Zhang, Z.H., Zhang, D., Wu, G.G., Luo, P., Chen, X.H., Di, Y.J., and Lv, L.J., 2013b, Re–Os isotopic age of molybdenite from the Meizikeng molybdenite deposit in Northern Jiangxi Province and its geological significance: Journal of Jilin University (Earth Science Edition), v. 43, p. 1851–1863. [ in Chinese with English abstract.]
  • Zhao, C., Ni, P., Wang, -G.-G., Ding, J.-Y., Chen, H., Zhao, K.-D., Cai, Y.-T., and Xu, Y.-F., 2013, Geology, fluid inclusion and isotope constraints on ore genesis of the Neoproterozoic Jinshan orogenic gold deposit, South China: Geofluids, v. 13, p. 506–527. doi:10.1111/gfl.12052
  • Zhao, G.C., and Cawood, P.A., 1999, Tectonothermal evolution of the Mayuan Assemblage in the Cathaysia Block: Implications for Neoproterozoic collision-related assembly of the South China Craton: American Journal of Science, v. 299, p. 309–339. doi:10.2475/ajs.299.4.309
  • Zhao, G.C., and Cawood, P.A., 2012, Precambrian geology of China: Precambrian Research, v. 222-223, p. 13–54. doi:10.1016/j.precamres.2012.09.017
  • Zhao, H.J., 2010, The mineralization mechanism and geochemistry of the Tonglushan skarn Cu–Fe deposit, Southeastern Hubei, China [Ph.D. thesis]: Beijing, Chinese Academy of Geological Sciences, p. 66–79 (in Chinese).
  • Zhao, H.J., Zheng, W., Yu, Z.F., Hu, Y.G., and Tian, Y., 2012, Re–Os dating of molybdenite from the Shilu Cu(Mo) deposit inwestern Guangdong Province and its geological implications:Geology in China, v. 39, p. 1604–1613. [ in Chinese with English abstract.]
  • Zhao, P.L., Yuan, S.D., Mao, J.W., Santosh, M., Li, C., and Hou, K.J., 2016, Geochronological and petrogeochemical constraints on the skarn deposits in Tongshanling ore district, southern Hunan Province: Implications for Jurassic Cu and W metallogenic events in South China: Ore Geology Reviews, v. 78, p. 120–137. doi:10.1016/j.oregeorev.2016.03.004
  • Zheng, W., 2016, The Yanshanian minerogenetic series and mineralization of polymetallic deposit in the Yangchun Basin of Yunkai area, South China [Ph.D. dissertation]: Beijing: China University of Geosciences, p. 1–298 in Chinese with English abstract.
  • Zheng, W., Chen, M.H., Xu, L.G., Zhao, H.J., Ling, S.B., Wu, Y., Hu, Y.G., Tian, Y., and Wu, X.D., 2013b, Rb–Sr isochron age of Tiantang Cu–Pb–Zn polymetallic deposit in Guangdong Province and its geological siginificance: Mineral Deposits, v. 32, p. 259–272. [ in Chinese with English abstract.]
  • Zheng, W., Chen, M.H., Zhao, H.J., Hao, H.D., Luo, D.L., Hu, Y.G., and Zhao, X.M., 2012, Characteristics of sulfides and S-Pb isotope composition in the Tiantang Cu-Pb-Zn polymetallic deposit of Guangdong Province and their geological implications: Geology in China, v. 39, p. 1830–1846. [ in Chinese with English abstract.]
  • Zheng, W., Chen, M.H., Zhao, H.J., Zhang, D.Y., Xu, L.G., Ling, S.B., Yao, L., Yu, M., and Chang, L.Z., 2013a, Skarn mineral characteristics of the Tiantang Cu–Pb–Zn polymetallic deposit in Guangdong province and their geological significance: Acta Petrologica Et Mineralogica, v. 32, p. 23–40. [ in Chinese with English abstract.]
  • Zheng, W., Chen, M.H., Zhao, H.J., Zhao, C.S., Hou, K.J., Li, X.M., and Chang, L.Z., 2013c, Zircon U–Pb geochronological and Hf isotopic constraints on petrogenesis of Yingwuling to tungsten polymetallic deposit in Guangdong Province and its geological significance: Acta Petrologica Sinica, v. 29, p. 4121–4135. [ in Chinese with English abstract.]
  • Zheng, W., Mao, J.-W., Pirajno, F., Zhao, H.-J., Zhao, C.-S., Mao, Z.-H., and Wang, Y.-J., 2015a, Geochronology and geochemistry of the Shilu Cu–Mo deposit in the Yunkai area, Guangdong Province, South China and its implication: Ore Geology Reviews, v. 67, p. 382–398. doi:10.1016/j.oregeorev.2014.12.009
  • Zheng, W., Mao, J.-W., Zhao, C.-S., Ouyang, H.-G., and Wang, X.-Y., 2016a, Re–Os geochronology of molybdenite from Yinyan Porphyry Sn deposit in South China: Resource Geology, v. 66, p. 63–70. doi:10.1111/rge.2016.66.issue-1
  • Zheng, W., Mao, J.-W., Zhao, H.-J., Ouyang, H.-G., Zhao, C.-S., and Yu, X.-F., 2016b, Geochemistry, Sr-Nd-Pb-Hf isotopes systematics and geochronological constrains on petrogenesis of the Xishan A-type granite and associated W-Sn mineralization in Guangdong province, South China: Ore Geology Reviews. doi:10.1016/j.oregeorev.2016.12.021
  • Zheng, W., Mao, J.W., Zhao, H.J., Zhao, C.S., Lin, W.P., Ouyang, Z.X., Wu, X.D., and Tian, Y., 2015b, A preliminarystudy of minerogenetic series and geodynamic background of polymetallic deposit along Yangchun basin in western Guangdong, South China: Mineral Deposits, v. 34, p. 463–485. [ in Chinese with English abstract.]
  • Zheng, W., Mao, J.W., Zhao, H.J., Zhao, C.S., and Yu, X.F., 2017b, Two Late Cretaceous A-type granites related to the Yingwuling W–Sn polymetallic mineralization in Guangdong province, South China: Implications for petrogenesis, geodynamic setting, and mineralization: Lithos, v. 274-275, p. 106–122. doi:10.1016/j.lithos.2017.01.002
  • Zheng, W., Zhao, H.J., Ouyang, H.G., Zhao, C.S., Yu, X.F., Luo, D.L., Huang, H.G., and Ouyang, Z.X., 2017a, Re-Os dating for the molybdenite from the Xiping Mo-Cu polymetallic deposit in Guangdong Province and its geological significance: Acta Petrologica Sinica, v. 33, p. 843–858. [ in Chinese with English abstract.]
  • Zhong, J., Chen, Y.-J., and Pirajno, F., 2017, Geology, geochemistry and tectonic settings of the molybdenum deposits in South China: A review: Ore Geology Reviews, v. 81, p. 829–855. doi:10.1016/j.oregeorev.2016.04.012
  • Zhong, J., Chen, Y.-J., Pirajno, F., Chen, J., Li, J., Qi, J.-P., and Li, N., 2014, Geology, geochronology, fluid inclusion and H–O isotope geochemistry of the Luoboling Porphyry Cu–Mo deposit, Zijinshan Orefield, Fujian Province, China: Ore Geology Reviews, v. 57, p. 61–77. doi:10.1016/j.oregeorev.2013.09.004
  • 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, Y.Z., Zeng, C.Y., Li, H.Z., An, Y.F., Lu, W.C., Yang, Z.J., and Shen, W.J., 2012, Geological evolution and ore-prospecting targets in southern segment of Qinzhou Bay–Hangzhou Bay juncture orogenic belt, southern China: Geological Bulletin of China, v. 31, p. 486–491. [ in Chinese with English abstract.]
  • Zhou, Z.H., Mao, J.W., Liu, J., Ouyang, H.G., Che, H.W., and Ma, X.H., 2015, Early Cretaceous magmatism and ore mineralization in Northeast China: Examples from Taolaituo Mo and Aobaotu Pb–Zn deposits: International Geology Review, v. 57, p. 229–256. doi:10.1080/00206814.2014.1002117

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.