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Progresses and Tendencies of Granite Researches in Last Decade: A Review |
XU Xi-sheng, WANG Xiao-lei, ZHAO Kai, DU De-hong |
State Key Laboratory for Mineral Deposits Research, School of Earth Sciences and Engineering, Nanjing University, Nanjing 210023, China |
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Abstract In this paper, we have summarized the status of granite researches and listed some important achievements on the petrogenesis of granitic rocks and crustal evolution by domestic and international researchers in the recent ten years, and highlighted the new findings and advances of researches on the detailed processes of magma evolution. Focusing on the incremental growth of large granitoid plutons and the connection of felsic volcanic and plutonic rocks, and combining the cutting edge studies on granites in recent years, we have concretely analyzed the new tendencies and key scientific problems in the researches of granites and related rocks in the southeastern China, aiming to provide helpful suggestions for the future researches on granites in China.
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Received: 30 June 2020
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Ackerson M R, Mysen B O, Tailby N D, Watson E B. 2018. Low-temperature crystallization of granites and the implications for crustal magmatism. Nature, 559(7712): 94-97 Annen C. 2011. Implications of incremental emplacement of magma bodies for magma differentiation, thermal aureole dimensions and plutonism-volcanism relationships. Tectonophysics, 500(1-4): 3-10 Annen C, Paulatto M, Sparks R S J, Minshull T A, Kiddle E J. 2014. Quantification of the intrusive magma fluxes during magma chamber growth at Soufrière Hills Volcano (Montserrat, Lesser Antilles). Journal of Petrology, 55(3): 529-548 Annen C, Blundy J D, Leuthold J, Sparks R S J. 2015. Construction and evolution of igneous bodies: Towards an integrated perspective of crustal magmatism. Lithos, 230: 206-221 Bachmann O, Bergantz G W. 2004. On the origin of crystal-poor rhyolites: Extracted from batholithic crystal mushes. Journal of Petrology, 45(8): 1565-1582 Bachmann O, Miller C F, De Silva S L. 2007. The volcanic-plutonic connection as a stage for understanding crustal magmatism. Journal of Volcanology and Geothermal Research, 167(1-4): 1-23 Bachmann O, Huber C. 2016. Silicic magma reservoirs in the Earth’s crust. American Mineralogist, 101(11): 2377-2404 Barboni M, Schoene B. 2014. Short eruption window revealed by absolute crystal growth rates in a granitic magma. Nature Geoscience, 7(7): 524-528 Bartoli O, Cesare B, Poli S, Bodnar R J, Acosta-Vigil A, Frezzotti M L, Meli S. 2013. Recovering the composition of melt and the fluid regime at the onset of crustal anatexis and S-type granite formation. Geology, 41(2): 115-118 Bartoli O, Cesare B, Remusat L, Acosta-Vigil A, Poli S. 2014. The H2O content of granite embryos. Earth and Planetary Science Letters, 395: 281-290 Bateman P C, Chappell B W. 1979. Crystallization, fractionation, and solidification of the Tuolumne Intrusive Series, Yosemite National Park, California. GSA Bulletin, 90(5): 465-482 Beane R, Wiebe R A. 2012. Origin of quartz clusters in Vinalhaven granite and porphyry, coastal Maine. Contributions to Mineralogy and Petrology, 163(6): 1069-1082 Brown M. 2013. Granite: From genesis to emplacement. GSA Bulletin, 125(7-8): 1079-1113 Buret Y, Wotzlaw J F, Roozen S, Guillong M, von Quadt A, Heinrich C A. 2017. Zircon petrochronological evidence for a plutonic-volcanic connection in porphyry copper deposits. Geology, 45(7): 623-626 Cashman K V, Sparks R S J, Blundy J D. 2017. Vertically extensive and unstable magmatic systems: A unified view of igneous processes. Science, 355(6331): eaag3055 Chappell B W, Wyborn D. 2012. Origin of enclaves in S-type granites of the Lachlan Fold Belt. Lithos, 154: 235-247 Chen X, Lee C T A, Wang X L, Tang M. 2019. Influence of water on granite generation: Modeling and perspective. Journal of Asian Earth Sciences, 174: 126-134 Clemens J D, Stevens G, Farina F. 2011. The enigmatic sources of I-type granites: The peritectic connexion. Lithos, 126(3-4): 174-181 Clemens J D, Stevens G. 2012. What controls chemical variation in granitic magmas? Lithos, 134-135: 317-329 Coleman D S, Gray W, Glazner A F. 2004. Rethinking the emplacement and evolution of zoned plutons: Geochronologic evidence for incremental assembly of the Tuolumne Intrusive Suite, California. Geology, 32(5): 433-436 Cooper K M, Kent A J R. 2014. Rapid remobilization of magmatic crystals kept in cold storage. Nature, 506(7489): 480-483 Deering C D, Keller B, Schoene B, Bachmann O, Beane R, Ovtcharova M. 2016. Zircon record of the plutonic-volcanic connection and protracted rhyolite melt evolution. Geology, 44(4): 267-270 Díaz-Alvarado J, Castro A, Fernández C, Moreno-Ventas I. 2011. Assessing bulk assimilation in cordierite-bearing granitoids from the Central System Batholith, Spain: Experimental, geochemical and geochronological constraints. Journal of Petrology, 52(2): 223-256 Dorais M J, Tubrett M. 2012. Detecting peritectic garnet in the peraluminous Cardigan Pluton, New Hampshire. Journal of Petrology, 53(2): 299-324 Du D H, Wang X L, Yang T, Chen X, Li J Y, Li W Q. 2017. Origin of heavy Fe isotope compositions in high-silica igneous rocks: A rhyolite perspective. Geochimica et Cosmochimica Acta, 218: 58-72 Du D H, Li W Q, Wang X L, Shu X J, Yang T, Sun T. 2019. Fe isotopic fractionation during the magmatic-hydrothermal stage of granitic magmatism. Lithos, 350-351: 105265 Farina F, Dini A, Rocchi S, Stevens G. 2014. Extreme mineral-scale Sr isotope heterogeneity in granites by disequilibrium melting of the crust. Earth and Planetary Science Letters, 399: 103-115 Fiedrich A M, Bachmann O, Ulmer P, Deering C D, Kunze K, Leuthold J. 2017. Mineralogical, geochemical, and textural indicators of crystal accumulation in the Adamello Batholith (Northern Italy). American Mineralogist, 102(12): 2467-2483 Foden J, Sossi P A, Wawryk C M. 2015. Fe isotopes and the contrasting petrogenesis of A-, I- and S-type granite. Lithos, 212-215: 32-44 Foley F V, Pearson N J, Rushmer T, Turner S, Adam J. 2013. Magmatic evolution and magma mixing of quaternary adakites at solander and Little Solander Islands, New Zealand. Journal of Petrology, 54(4): 703-744 Gao P, Zheng Y F, Zhao Z F. 2017. Triassic granites in South China: A geochemical perspective on their characteristics, petrogenesis, and tectonic significance. Earth-Science Reviews, 173: 266-294 Gelman S E, Gutiérrez F J, Bachmann O. 2013. On the longevity of large upper crustal silicic magma reservoirs. Geology, 41(7): 759-762 Gelman S E, Deering C D, Bachmann O, Huber C, Gutiérrez F J. 2014. Identifying the crystal graveyards remaining after large silicic eruptions. Earth and Planetary Science Letters, 403: 299-306 Glazner A F, Bartley J M, Coleman D S, Gray W, Taylor R Z. 2004. Are plutons assembled over millions of years by amalgamation from small magma chambers? GSA Today, 14(4-5): 4-11 Glazner A F, Coleman D S, Bartley J M. 2008. The tenuous connection between high-silica rhyolites and granodiorite plutons. Geology, 36(2): 183-186 Hartung E, Weber G, Caricchi L. 2019. The role of H2O on the extraction of melt from crystallising magmas. Earth and Planetary Science Letters, 508: 85-96 He Y S, Wu H J, Ke S, Liu S A, Wang Q. 2017. Iron isotopic compositions of adakitic and non-adakitic granitic magmas: Magma compositional control and subtle residual garnet effect. Geochimica et Cosmochimica Acta, 203: 89-102 Heimann A, Beard B L, Johnson C M. 2008. The role of volatile exsolution and sub-solidus fluid/rock interactions in producing high 56Fe/54Fe ratios in siliceous igneous rocks. Geochimica et Cosmochimica Acta, 72(17): 4379-4396 Hildreth W, Wilson C J N. 2007. Compositional zoning of the bishop tuff. Journal of Petrology, 48(5): 951-999 Holness M B, Clemens J D, Vernon R H. 2018. How deceptive are microstructures in granitic rocks? Answers from integrated physical theory, phase equilibrium, and direct observations. Contributions to Mineralogy and Petrology, 173(8): 62 Hopkinson T N, Harris N B W, Warren C J, Spencer C J, Roberts N M W, Horstwood M S A, Parrish R R, EIMF. 2017. The identification and significance of pure sediment-derived granites. Earth and Planetary Science Letters, 467: 57-63 Hou Z Q, Yang Z M, Lu Y J, Kemp A, Zheng Y C, Li Q Y, Tang J X, Yang Z S, Duan L F. 2015. A genetic linkage between subduction- and collision-related porphyry Cu deposits in continental collision zones. Geology, 43(3): 247-250 Huang F F, Scaillet B, Wang R C, Erdmann S, Chen Y, Faure M, Liu H S, Xie L, Wang B, Zhu J C. 2019. Experimental constraints on intensive crystallization parameters and fractionation in A-type granites: A case study on the Qitianling Pluton, South China. Journal of Geophysical Research: Solid Earth, 124(10): 10132-10152 Huang H, Wang T, Tong Y, Qin Q, Ma X X, Yin J Y. 2020. Rejuvenation of ancient micro-continents during accretionary orogenesis: Insights from the Yili Block and adjacent regions of the SW central Asian Orogenic Belt. Earth-Science Reviews, 208: 103255 Hutton D H W, Dempster T J, Brown P E, Becker S D. 1990. A new mechanism of granite emplacement: Intrusion in active extensional shear zones. Nature, 343(6257): 452-455 Iles K A, Hergt J M, Woodhead J D. 2018. Modelling isotopic responses to disequilibrium melting in granitic systems. Journal of Petrology, 59(1): 87-113 Iles K A, Hergt J M, Woodhead J D, Ickert R B, Williams I S. 2020. Petrogenesis of granitoids from the Lachlan Fold Belt, southeastern Australia: The role of disequilibrium melting. Gondwana Research, 79: 87-109 Jackson M D, Blundy J, Sparks R S J. 2018. Chemical differentiation, cold storage and remobilization of magma in the Earth’s crust. Nature, 564(7736): 405-409 Jeon H, Williams I S, Chappell B W. 2012. Magma to mud to magma: Rapid crustal recycling by Permian granite magmatism near the eastern Gondwana margin. Earth and Planetary Science Letters, 319-320: 104-117 Ji W Q, Wu F Y, Chung S L, Liu C Z. 2014. The Gangdese magmatic constraints on a latest Cretaceous lithospheric delamination of the Lhasa Terrane, southern Tibet. Lithos, 210-211: 168-180 Jiang D S, Xu X S, Xia Y, Erdmann S. 2018. Magma mixing in a granite and related rock association: Insight from its mineralogical, petrochemical, and “reversed isotope” features. Journal of Geophysical Research: Solid Earth, 123(3): 2262-2285 Karakas O, Degruyter W, Bachmann O, Dufek J. 2017. Lifetime and size of shallow magma bodies controlled by crustal-scale magmatism. Nature Geoscience, 10(6): 446-450 Keller C B, Schoene B, Barboni M, Samperton K M, Husson J M. 2015. Volcanic-plutonic parity and the differentiation of the continental crust. Nature, 523(7560): 301-307 Laurent O, Martin H, Moyen J F, Doucelance R. 2014. The diversity and evolution of late-Archean granitoids: Evidence for the onset of “modern-style” plate tectonics between 3.0 and 2.5 Ga. Lithos, 205: 208-235 Laurent O, Björnsen J, Wotzlaw J F, Bretscher S, Silva M P, Moyen J F, Ulmer P, Bachmann O. 2020. Earth’s earliest granitoids are crystal-rich magma reservoirs tapped by silicic eruptions. Nature Geoscience, 13(2): 163-169 Lee C T A, Morton D M. 2015. High silica granites: Terminal porosity and crystal settling in shallow magma chambers. Earth and Planetary Science Letters, 409: 23-31 Leuthold J, Müntener O, Baumgartner L P, Putlitz B, Ovtcharova M, Schaltegger U. 2012. Time resolved construction of a bimodal laccolith (Torres del Paine, Patagonia). Earth and Planetary Science Letters, 325-326: 85-92 Li J, Huang X L, Wei G J, Liu Y, Ma J L, Han L, He P L. 2018. Lithium isotope fractionation during magmatic differentiation and hydrothermal processes in rare-metal granites. Geochimica et Cosmochimica Acta, 240: 64-79 Li W Q, Jackson S E, Pearson N J, Alard O, Chappell B W. 2009. The Cu isotopic signature of granites from the Lachlan Fold Belt, SE Australia. Chemical Geology, 258(1-2): 38-49 Li W Y, Teng F Z, Ke S, Rudnick R L, Gao S, Wu F Y, Chappell B W. 2010. Heterogeneous magnesium isotopic composition of the upper continental crust. Geochimica et Cosmochimica Acta, 74(23): 6867-6884 Lipman P W, Bachmann O. 2015. Ignimbrites to batholiths: Integrating perspectives from geological, geophysical, and geochronological data. Geosphere, 11(3): 705-743 Liu C, Wang R C, Wu F Y, Xie L, Liu X C, Li X K, Yang L, Li X J. 2020. Spodumene pegmatites from the Pusila pluton in the higher Himalaya, South Tibet: Lithium mineralization in a highly fractionated leucogranite batholith. Lithos, 358-359: 105421 Liu H S, Martelet G, Wang B, Erdmann S, Chen Y, Faure M, Huang F F, Scaillet B, le-Breton N, Shu L S, Wang R C, Zhu J C. 2018. Incremental emplacement of the Late Jurassic midcrustal, lopolith-like Qitianling pluton, South China, revealed by AMS and Bouguer gravity data. Journal of Geophysical Research: Solid Earth, 123(10): 9249-9268 Liu S A, Teng F Z, He Y S, Ke S, Li S G. 2010. Investigation of magnesium isotope fractionation during granite differentiation: Implication for Mg isotopic composition of the continental crust. Earth and Planetary Science Letters, 297(3-4): 646-654 London D, Morgan VI G B, Acosta-Vigil A. 2012. Experimental simulations of anatexis and assimilation involving metapelite and granitic melt. Lithos, 153: 292-307 Ma L, Wang Q, Kerr A C, Yang J H, Xia X P, Ou Q, Yang Z Y, Sun P. 2017. Paleocene (c. 62 Ma) leucogranites in southern Lhasa, Tibet: Products of syn-collisional crustal anatexis during slab roll-back? Journal of Petrology, 58(11): 2089-2114 McCarthy T C, Groves D I. 1979. The blue tier batholith, northeastern Tasmania: A cumulate-like product of fractional crystallization. Contributions to Mineralogy and Petrology, 71(2): 193-209 McLeod C L, Davidson J P, Nowell G M, de Silva S L. 2012. Disequilibrium melting during crustal anatexis and implications for modeling open magmatic systems. Geology, 40(5): 435-438 Miller C F, Wark D A. 2008. Supervolcanoes and their explosive supereruptions. Elements, 4(1): 11-15 Moyen J F, Martin H. 2012. Forty years of TTG research. Lithos, 148: 312-336 Moyen J F, Stevens G, Kisters A F M, Belcher R W, Lemirre B. 2019. TTG plutons of the barberton granitoid-greenstone terrain, South Africa. In: van Kranendonk M J, Bennett V C, Hoffmann J E(eds.). Earth’s Oldest Rocks. 2nd ed. Amsterdam: Elsevier, 615-654 Nabelek P I, Hofmeister A M, Whittington A G. 2012. The influence of temperature-dependent thermal diffusivity on the conductive cooling rates of plutons and temperature-time paths in contact aureoles. Earth and Planetary Science Letters, 317-318: 157-164 Naslund H R. 1986. Disequilibrium partial melting and rheomorphic layer formation in the contact aureole of the Basistoppen sill, East Greenland. Contributions to Mineralogy and Petrology, 93(3): 359-367 Pankhurst M J, Schaefer B F, Betts P G. 2011. Geodynamics of rapid voluminous felsic magmatism through time. Lithos, 123(1-4): 92-101 Paterson S R, Okaya D, Memeti V, Economos R, Miller R B. 2011. Magma addition and flux calculations of incrementally constructed magma chambers in continental margin arcs: Combined field, geochronologic, and thermal modeling studies. Geosphere, 7(6): 1439-1468 Petford N, Cruden A R, McCaffrey K J W, Vigneresse J L. 2000. Granite magma formation, transport and emplacement in the Earth's crust. Nature, 408(6813): 669-673 Poitrasson F, Freydier R. 2005. Heavy iron isotope composition of granites determined by high resolution MC-ICP-MS. Chemical Geology, 222(1-2): 123-147 Raimondo T, Collins A S, Hand M, Walker-Hallam A, Smithies R H, Evins P M, Howard H M. 2010. The anatomy of a deep intracontinental orogen. Tectonics, 29(4): TC4024 Reimink J R, Davies J H F L, Chacko T, Stern R A, Heaman L M, Sarkar C, Schaltegger U, Creaser R A, Pearson D G. 2016. No evidence for Hadean continental crust within Earth’s oldest evolved rock unit. Nature Geoscience, 9(10): 777-780 Rong W, Zhang S B, Zheng Y F. 2017. Back-reaction of peritectic garnet as an explanation for the origin of mafic enclaves in S-type granite from the Jiuling batholith in South China. Journal of Petrology, 58(3): 569-598 Savage P S, Georg R B, Williams H M, Turner S, Halliday A N, Chappell B W. 2012. The silicon isotope composition of granites. Geochimica et Cosmochimica Acta, 92: 184-202 Scaillet B, Holtz F, Pichavant M. 2016. Experimental constraints on the formation of silicic magmas. Elements, 12(2): 109-114 Schoenberg R, von Blanckenburg F. 2006. Modes of planetary-scale Fe isotope fractionation. Earth and Planetary Science Letters, 252(3-4): 342-359 Schoene B, Schaltegger U, Brack P, Latkoczy C, Stracke A, Günther D. 2012. Rates of magma differentiation and emplacement in a ballooning pluton recorded by U-Pb TIMS-TEA, Adamello batholith, Italy. Earth and Planetary Science Letters, 355-356: 162-173 Schoene B, Baxter E F. 2017. Petrochronology and TIMS. Reviews in Mineralogy and Geochemistry, 83(1): 231-260 Shen B, Jacobsen B, Lee C T A, Yin Q Z, Morton D M. 2009. The Mg isotopic systematics of granitoids in continental arcs and implications for the role of chemical weathering in crust formation. Proceedings of the National Academy of Sciences of the United States of America, 106(49): 20652-20657 Singer B S, Le Mével H, Licciardi J M, Córdova L, Tikoff B, Garibaldi N, Andersen N L, Diefenbach A K, Feigl K L. 2018. Geomorphic expression of rapid Holocene silicic magma reservoir growth beneath Laguna del Maule, Chile. Science Advances, 4(6): eaat1513 Smithies R H, Howard H M, Evins P M, Kirkland C L, Kelsey D E, Hand M, Wingate M T D, Collins A S, Belousova E. 2011. High-temperature granite magmatism, crust-mantle interaction and the Mesoproterozoic intracontinental evolution of the Musgrave Province, Central Australia. Journal of Petrology, 52(5): 931-958 Sossi P A, Foden J D, Halverson G P. 2012. Redox-controlled iron isotope fractionation during magmatic differentiation: An example from the Red Hill intrusion, S. Tasmania. Contributions to Mineralogy and Petrology, 164(5): 757-772 Tang M, Wang X L, Shu X J, Wang D, Yang T, Gopon P. 2014. Hafnium isotopic heterogeneity in zircons from granitic rocks: Geochemical evaluation and modeling of “zircon effect” in crustal anatexis. Earth and Planetary Science Letters, 389: 188-199 Telus M, Dauphas N, Moynier F, Tissot F L H, Teng F Z, Nabelek P I, Craddock P R, Groat L A. 2012. Iron, zinc, magnesium and uranium isotopic fractionation during continental crust differentiation: The tale from migmatites, granitoids, and pegmatites. Geochimica et Cosmochimica Acta, 97: 247-265 Teng F Z, Li W Y, Ke S, Marty B, Dauphas N, Huang S C, Wu F Y, Pourmand A. 2010. Magnesium isotopic composition of the Earth and chondrites. Geochimica et Cosmochimica Acta, 74(14): 4150-4166 Teng F Z. 2017. Magnesium isotope geochemistry. Reviews in Mineralogy and Geochemistry, 82(1): 219-287 Trail D, Tailby N, Wang Y L, Harrison T M, Boehnke P. 2017. Aluminum in zircon as evidence for peraluminous and metaluminous melts from the Hadean to present. Geochemistry, Geophysics, Geosystems, 18(4): 1580-1593 Wang D, Wang X L, Cai Y, Goldstein S L, Yang T. 2018. Do Hf isotopes in magmatic zircons represent those of their host rocks?. Journal of Asian Earth Sciences, 154: 202-212 Wang J M, Rubatto D, Zhang J J. 2015. Timing of partial melting and cooling across the Greater Himalayan crystalline complex (Nyalam, Central Himalaya): In-sequence thrusting and its implications. Journal of Petrology, 56(9): 1677-1702 Wang Q, Chung S L, Li X H, Wyman D, Li Z X, Sun W D, Qiu H N, Liu Y S, Zhu Y T. 2012. Crustal melting and flow beneath Northern Tibet: Evidence from mid-miocene to quaternary strongly peraluminous rhyolites in the Southern Kunlun Range. Journal of Petrology, 53(12): 2523-2566 Wang T, Tong Y, Zhang L, Li S, Huang H, Zhang J J, Guo L, Yang Q D, Hong D W, Donskaya T, Gladkochub D, Tserendash N. 2017b. Phanerozoic granitoids in the central and eastern parts of Central Asia and their tectonic significance. Journal of Asian Earth Sciences, 145: 368-392 Wang W, Cawood P A, Zhou M F, Pandit M K, Xia X P, Zhao J H. 2017a. Low-δ18O rhyolites from the Malani igneous suite: A positive test for South China and NW India linkage in Rodinia. Geophysical Research Letters, 44(20): 10298-10305 Wang X C, Li Z X, Li X H, Li Q L, Tang G Q, Zhang Q R, Liu Y. 2011. Nonglacial origin for low-δ18O Neoproterozoic magmas in the South China Block: Evidence from new in-situ oxygen isotope analyses using SIMS. Geology, 39(8): 735-738 Wang X L, Zhou J C, Wan Y S, Kitajima K, Wang D, Bonamici C, Qiu J S, Sun T. 2013. Magmatic evolution and crustal recycling for Neoproterozoic strongly peraluminous granitoids from southern China: Hf and O isotopes in zircon. Earth and Planetary Science Letters, 366: 71-82 Wang Y, He Y S, Ke S. 2020. Mg isotope fractionation during partial melting of garnet-bearing sources: An adakite perspective. Chemical Geology, 537: 119478 Wilcock J, Goff F, Minarik W G, Stix J. 2013. Magmatic recharge during the formation and resurgence of the Valles Caldera, New Mexico, USA: Evidence from quartz compositional zoning and geothermometry. Journal of Petrology, 54(4): 635-664 Wu F Y, Liu X C, Liu Z C, Wang R C, Xie L, Wang J M, Ji W Q, Yang L, Liu C, Khanal G P, He S X. 2020. Highly fractionated Himalayan leucogranites and associated rare-metal mineralization. Lithos, 352-353: 105319 Xu L J, He Y S, Wang S J, Wu H J, Li S G. 2017. Iron isotope fractionation during crustal anatexis: Constraints from migmatites from the Dabie orogen, Central China. Lithos, 284-285: 171-179 Xu X S, Dong C W, Li W X, 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, 46(2): 299-315 Xu X S, Zhao K, He Z Y, Liu L, Hong W T. 2020. Cretaceous volcanic-plutonic magmatism in SE China and a genetic model. Lithos, https://doi.org/10.1016/j.lithos.2020.105728 Yan L L, He Z Y, Jahn B M, Zhao Z D. 2016. Formation of the Yandangshan volcanic-plutonic complex (SE China) by melt extraction and crystal accumulation. Lithos, 266-267: 287-308 Yan L L, He Z Y, Beier C, Klemd R. 2018. Geochemical constraints on the link between volcanism and plutonism at the Yunshan caldera complex, SE China. Contributions to Mineralogy and Petrology, 173(1): 4 Yan L L, He Z Y, Klemd R, Beier C, Xu X S. 2020. Tracking crystal-melt segregation and magma recharge using zircon trace element data. Chemical Geology, 542: 119596 Yang J H, Wu F Y, Wilde S A, Xie L W, Yang Y H, Liu X M. 2007. Tracing magma mixing in granite genesis: In situ U-Pb dating and Hf-isotope analysis of zircons. Contributions to Mineralogy and Petrology, 153(2): 177-190 Yu K Z, Liu Y S, Hu Q H, Ducea M N, Hu Z C, Zong K Q, Chen H H. 2018. Magma recharge and reactive bulk assimilation in enclave-bearing granitoids, Tonglu, South China. Journal of Petrology, 59(5): 795-824 Zeng L S, Asimow P D, Saleeby J B. 2005. Coupling of anatectic reactions and dissolution of accessory phases and the Sr and Nd isotope systematics of anatectic melts from a metasedimentary source. Geochimica et Cosmochimica Acta, 69(14): 3671-3682 Zhao K, Xu X S, Erdmann S. 2017a. Crystallization conditions of peraluminous charnockites: Constraints from mineral thermometry and thermodynamic modelling. Contributions to Mineralogy and Petrology, 172(5): 26 Zhao K, Xu X S, Erdmann S, Liu L, Xia Y. 2017b. Rapid migration of a magma source from mid- to deep-crustal levels: Insights from restitic granulite enclaves and anatectic granite. GSA Bulletin, 129(11-12): 1708-1725 Zhao K, Xu X S, Erdmann S. 2018. Thermodynamic modeling for an incrementally fractionated granite magma system: Implications for the origin of igneous charnockite. Earth and Planetary Science Letters, 499: 230-242 Zhao Z F, Zheng Y F, Wei C S, Wu F Y. 2011. Origin of postcollisional magmatic rocks in the Dabie orogen: Implications for crust-mantle interaction and crustal architecture. Lithos, 126(1-2): 99-114 Zhao Z F, Gao P, Zheng Y F. 2015. The source of Mesozoic granitoids in South China: Integrated geochemical constraints from the Taoshan batholith in the Nanling Range. Chemical Geology, 395: 11-26 Zhou X M, Li W X. 2000. Origin of Late Mesozoic igneous rocks in Southeastern China: Implications for lithosphere subduction and underplating of mafic magmas. Tectonophysics, 326(3-4): 269-287 Zhou X M, Sun T, Shen W Z, Shu L S, Niu Y L. 2006. Petrogenesis of Mesozoic granitoids and volcanic rocks in South China: A response to tectonic evolution. Episodes, 29(1): 26-33 Zhu D C, Wang Q, Zhao Z, D, Chung S L, Cawood P A, Niu Y L, Liu S A, Wu F Y, Mo X X. 2015. Magmatic record of India-Asia collision. Scientific Reports, 5: 14289 廖其林, 王振明, 王屏路, 余兆康, 吴宁远, 刘宝诚. 1988. 福州-泉州-汕头地区地壳结构的爆炸地震研究. 地球物理学报, 31(3): 270-280 马昌前, 李艳青. 2017. 花岗岩体的累积生长与高结晶度岩浆的分异. 岩石学报, 33(5): 1479-1488 王德滋, 周金城, 邱检生, 范洪海. 2000. 中国东南部晚中生代花岗质火山-侵入杂岩特征与成因. 高校地质学报, 6(4): 487-498 王德滋, 周新民. 2002. 中国东南部晚中生代花岗质火山-侵入杂岩成因与地壳演化. 北京: 科学出版社, 22-38 王孝磊. 2017. 花岗岩研究的若干新进展与主要科学问题. 岩石学报, 33(5): 1445-1458 王晓霞, 王涛, 柯昌辉, 杨阳, 李金宝, 李洪英, 齐秋菊. 2014. 秦岭晚中生代花岗岩的Nd-Hf同位素填图及其对基底和钼矿的约束. 矿床地质, 33(S1): 285-286 吴福元, 刘志超, 刘小驰, 纪伟强. 2015. 喜马拉雅淡色花岗岩. 岩石学报, 31(1): 1-36 吴福元, 刘小驰, 纪伟强, 王佳敏, 杨雷. 2017. 高分异花岗岩的识别与研究. 中国科学: 地球科学, 47(7): 745-765 谢家莹, 陶奎元. 1996. 中国东南大陆中生代火山地质及火山-侵入杂岩. 北京: 地质出版社, 1-2 徐夕生, 周新民, 王德滋. 1999. 壳幔作用与花岗岩成因——以中国东南沿海为例. 高校地质学报, 5(3): 240-250 翟明国. 2017. 花岗岩: 大陆地质研究的突破口以及若干关键科学问题——“岩石学报”花岗岩专辑代序. 岩石学报, 33(5): 1369-1380 张少兵, 郑永飞. 2011. 低δ18O岩浆岩的成因. 岩石学报, 27(2): 520-530 |
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