Petrogenesis of Triassic granites from the Nanling Range in South China: Implications for geochemical diversity in granites
Tài liệu tham khảo
Abdel-Rahman, 1994, Nature of biotites from alkaline, calc-alkaline, and peraluminous magmas, Journal of Petrology, 35, 525, 10.1093/petrology/35.2.525
Anderson, 2002, Correction of common lead in U−Pb analyses, Chemical Geology, 192, 59, 10.1016/S0009-2541(02)00195-X
Anderson, 1985, Proterozoic anorogenic two-mica granites: silver plume and St. Vrain batholiths of Colorado, Geology, 13, 177, 10.1130/0091-7613(1985)13<177:PATGSP>2.0.CO;2
Ayres, 1997, REE fractionation and Nd-isotope disequilibrium during crustal anatexis: constraints from Himalayan leucogranites, Chemical Geology, 139, 249, 10.1016/S0009-2541(97)00038-7
Barbarin, 1998, A review of the relationships between granitoid types, their origins and their geodynamic environments, Lithos, 46, 605, 10.1016/S0024-4937(98)00085-1
Bea, 1996, Residence of REE, Y, Th and U in granites and crustal protoliths: implications for the chemistry of crustal melts, Journal of Petrology, 37, 521, 10.1093/petrology/37.3.521
Beard, 1991, Dehydration melting and water-saturated melting of basaltic and andesitic greenstones and amphibolites at 1, 3 and 6.9kb, Journal of Petrology, 32, 365, 10.1093/petrology/32.2.365
Belousova, 2002, Igneous zircon: trace element composition as an indicator of source rock type, Contributions to Mineralogy and Petrology, 143, 602, 10.1007/s00410-002-0364-7
Bonin, 2007, A-type granites and related rocks: evolution of a concept, problems and prospects, Lithos, 97, 1, 10.1016/j.lithos.2006.12.007
Bouvier, 2008, The Lu–Hf and Sm–Nd isotopic composition of CHUR: constraints from unequilibrated chondrites and implications for the bulk composition of terrestrial planets, Earth and Planetary Science Letters, 273, 48, 10.1016/j.epsl.2008.06.010
Chappell, 1999, Aluminium saturation in I- and S-type granites and the characterization of fractionated haplogranites, Lithos, 46, 535, 10.1016/S0024-4937(98)00086-3
Chappell, 1974, Two contrasting granite types, Pacific Geology, 8, 173
Chappell, 2001, Two contrasting granite types: 25years later, Australian Journal of Earth Sciences, 48, 489, 10.1046/j.1440-0952.2001.00882.x
Chappell, 2012, Origin of enclaves in S-type granites of the Lachlan Fold Belt, Lithos, 154, 235, 10.1016/j.lithos.2012.07.012
Chappell, 1987, The importance of residual source material (restite) in granite petrogenesis, Journal of Petrology, 28, 11, 10.1093/petrology/28.6.1111
Chappell, 2004, Low− and high−temperature granites, Transactions of the Royal Society of Edingburgh−Earth Sciences, 95, 125, 10.1017/S0263593304000136
Chappell, 2012, Peraluminous I-type granites, Lithos, 153, 142, 10.1016/j.lithos.2012.07.008
Charvet, 2013, The Neoproterozoic–Early Paleozoic tectonic evolution of the South China Block: an overview, Journal of Asian Earth Sciences, 74, 198, 10.1016/j.jseaes.2013.02.015
Chen, 1998, Crustal evolution of southeastern China: Nd and Sr isotopic evidence, Tectonophysics, 284, 101, 10.1016/S0040-1951(97)00186-8
Chen, 2002, Geochronology of the Karadere basement (NW Turkey) and implications for the geological evolution of the Istanbul zone, International Journal of Earth Sciences, 91, 469, 10.1007/s00531-001-0239-6
Chen, 2007, Zircon age and Nd–Hf isotopic composition of the Yunnan Tethyan belt, southwestern China, International Journal of Earth Sciences, 96, 1179, 10.1007/s00531-006-0146-y
Chen, 2012, Element geochemistry, mineralogy, geochronology and zircon Hf isotope of the Luxi and Xiazhuang granites in Guangdong province, China: implications for U mineralization, Lithos, 150, 119, 10.1016/j.lithos.2012.06.025
Clemens, 2003, S-type granitic magmas—petrogenetic issues, models and evidence, Earth-Science Reviews, 61, 1, 10.1016/S0012-8252(02)00107-1
Clemens, 2012, What controls chemical variation in granitic magmas?, Lithos, 134–135, 317, 10.1016/j.lithos.2012.01.001
Clemens, 1986, Origin of an A-type granite: experimental constraints, American Mineralogist, 71, 317
Clemens, 2010, Chemical structure in granitic magmas—a signal from the source?, Earth and Environmental Science Transactions of the Royal Society of Edinburgh, 100, 159, 10.1017/S1755691009016053
Coleman, 2004, Rethinking the emplacement and evolution of zoned plutons: Geochronologic evidence for incremental assembly of the Tuolumne Intrusive Suite, California, Geology, 32, 433, 10.1130/G20220.1
Collins, 1996, Lachlan Fold Belt granitoids: products of three-component mixing, Transactions of the Royal Society of Edinburgh: Earth Sciences, 87, 171, 10.1017/S0263593300006581
Collins, 1982, Nature and origin of A-type granites with particular reference to southeastern Australia, Contributions to Mineralogy and Petrology, 80, 189, 10.1007/BF00374895
Creaser, 1991, A-type granites revisited: assessment of a residual-source model, Geology, 19, 163, 10.1130/0091-7613(1991)019<0163:ATGRAO>2.3.CO;2
Dahlquist, 2010, Fault controlled Carboniferous A−type magmatism in the proto−Andean foreland (Sierras Pampeanas Argentina): Geochemical constraints and petrogenesis, Lithos, 115, 65, 10.1016/j.lithos.2009.11.006
Dahlquist, 2013, Devonian F-rich peraluminous A-type magmatism in the proto-Andean foreland (Sierras Pampeanas, Argentina): geochemical constraints and petrogenesis from the western-central region of the Achala batholiths, Mineralogy and Petrology, 1–27
DePaolo, 1981, Trace element and isotopic effects of combined wallrock assimilation and fractional crystallization, Earth and Planetary Science Letters, 53, 189, 10.1016/0012-821X(81)90153-9
DePaolo, 1988, Neodymium Isotope Geochemistry: An Introduction, 187
Frost, 1997, Reduced rapakivi-type granites: the tholeiite connection, Geology, 25, 647, 10.1130/0091-7613(1997)025<0647:RRTGTT>2.3.CO;2
Frost, 2008, A geochemical classification for feldspathic igneous rocks, Lithos, 49, 1955
Frost, 2011, On ferroan (A-type) granitoids: their compositional variability and modes of origin, Journal of Petrology, 52, 39, 10.1093/petrology/egq070
Frost, 2001, A geochemical classification for granitic rocks, Journal of Petrology, 42, 2033, 10.1093/petrology/42.11.2033
Glazner, 2004, Are plutons assembled over millions of years by amalgamation from small magma chambers?, GSA Today, 14, 4, 10.1130/1052-5173(2004)014<0004:APAOMO>2.0.CO;2
Griffin, 2000, The Hf isotope composition of cratonic mantle: LAM-MC-ICPMS analysis of zircon megacrysts in kimberlites, Geochimica et Cosmochimica Acta, 64, 133, 10.1016/S0016-7037(99)00343-9
Griffin, 2002, Zircon chemistry and magma mixing, SE China: in-situ analysis of Hf isotopes, Tonglu and Pingtan igneous complexes, Lithos, 61, 237, 10.1016/S0024-4937(02)00082-8
Guo, 1997, Sm–Nd dating and petrogenesis of Mesozoic gabbro xenolith in Daoxian County, Hunan Province, Chinese Science Bulletin, 42, 1814, 10.1007/BF02882650
Hammerli, 2014, Neodymium isotope equilibration during crustal metamorphism revealed by in situ microanalysis of REE-rich accessory minerals, Earth and Planetary Science Letters, 392, 133, 10.1016/j.epsl.2014.02.018
Hoskin, 2000, Rare earth element chemistry of zircon and its use as a provenance indicator, Geology, 28, 627, 10.1130/0091-7613(2000)28<627:REECOZ>2.0.CO;2
Hsieh, 2008, Petrogenesis of the Nanling Mountains granites from South China: constraints from systematic apatite geochemistry and whole-rock geochemical and Sr–Nd isotope compositions, Journal of Asian Earth Sciences, 33, 428, 10.1016/j.jseaes.2008.02.002
Huang, 1987
Huang, 2011, Formation of high δ18O fayalite-bearing A-type granite by high-temperature melting of granulitic metasedimentary rocks, southern China, Geology, 39, 903, 10.1130/G32080.1
Icenhower, 1997, Partitioning of fluorine and chlorine between biotite and granitic melt: experimental calibration at 200MPa H2O, Contributions to Mineralogy and Petrology, 127, 17, 10.1007/s004100050262
Jackson, 2004, The application of laser ablation-inductively coupled plasma-mass spectrometry to in situ U–Pb zircon geochronology, Chemical Geology, 211, 47, 10.1016/j.chemgeo.2004.06.017
Jahn,, 1995, Evolution of the Kaapvaal Craton as viewed from geochemical and Sm–Nd isotopic analyses of intracratonic pelites, Geochimica et Cosmochimica Acta, 59, 2239, 10.1016/0016-7037(95)00103-7
Jeon, 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, 10.1016/j.epsl.2011.12.010
Jiang, 2014, In situ zircon U–Pb and Hf–O isotopic results for ca. 73Ma granite in Hainan Island: implications for the termination of an Andean-type active continental margin in southeast China, Journal of Asian Earth Sciences, 82, 32, 10.1016/j.jseaes.2013.12.013
Jung, 2007, Source composition and melting temperatures of orogenic granitoids: constraints from CaO/Na2O, Al2O3/TiO2 and accessory mineral saturation thermometry, European Journal of Mineralogy, 19, 859, 10.1127/0935-1221/2007/0019-1774
Jung, 1999, The petrogenesis of some migmatites and granites (Central Damara Orogen, Namibia): evidence for disequilibrium melting, wall-rock contamination and crystal fractionation, Journal of Petrology, 40, 1241, 10.1093/petroj/40.8.1241
Jung, 2000, Geochronology and petrogenesis of Pan-African, syn-tectonic, S-type and post-tectonic A-type granite (Namibia): products of melting of crustal sources, fractional crystallization and wall rock entrainment, Lithos, 50, 259, 10.1016/S0024-4937(99)00059-6
Jung, 2001, Trace element and isotopic (Sr, Nd, Pb, O) arguments for a mid-crustal origin of Pan-African garnet-bearing S-type granites from the Damara orogen (Namibia), Precambrian Research, 110, 325, 10.1016/S0301-9268(01)00175-9
Kemp, 2007, Magmatic and crustal differentiation history of granitic rocks from Hf–O isotopes in zircon, Science, 315, 980, 10.1126/science.1136154
King, 1997, Characterization and origin of aluminous A-type granites from the Lachlan Fold Belt, Southeastern Australia, Journal of Petrology, 38, 371, 10.1093/petroj/38.3.371
Le Breton, 1988, Fluid-absent (dehydration) melting of biotite in metapelites in the early stages of crustal anatexis, Contributions to Mineralogy and Petrology, 99, 226, 10.1007/BF00371463
Li, 2007, Formation of the 1300-km-wide intracontinental orogen and postorogenic magmatic province in Mesozoic South China: a flat-slab subduction model, Geology, 35, 179, 10.1130/G23193A.1
Li, 2002, Grenvillian continental collision in South China: new SHRIMP U–Pb zircon results and implications for the configuration of Rodinia, Geology, 30, 163, 10.1130/0091-7613(2002)030<0163:GCCISC>2.0.CO;2
Li, 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, 174, 117, 10.1016/j.precamres.2009.07.004
Li, 2013, Zirconological tracing of transition between aqueous fluid and hydrous melt in the crust: constraints from pegmatite vein and host gneiss in the Sulu orogen, Lithos, 162–163, 157, 10.1016/j.lithos.2013.01.004
Liu, 2008, In situ analysis of major and trace elements of anhydrous minerals by LA-ICP-MS without applying an internal standard, Chemical Geology, 257, 34, 10.1016/j.chemgeo.2008.08.004
Liu, 2010, Continental and oceanic crust recycling-induced melt–peridotite interactions in the trans-north China Orogen: U–Pb dating, Hf isotopes and trace elements in zircons from mantle xenoliths, Journal of Petrology, 51, 537, 10.1093/petrology/egp082
Loiselle, 1979, Characteristics and origin of anorogenic granites, Geological Socoety of American Abstracts & Programs, 11, 468
Mao, 2011, Characteristics and geodynamic evolution of Indosinian magmatism in South China: a case study of the Guikeng pluton, Lithos, 127, 535, 10.1016/j.lithos.2011.09.011
Mao, 2013, The Indosinian collision-extension event between the South China Block and the Palaeo-Pacific plate: evidence from Indosinian alkaline granitic rocks in Dashuang, eastern Zhejiang, South China, Lithos, 172–173, 81, 10.1016/j.lithos.2013.04.004
McDonough, 1995, The composition of the Earth, Chemical Geology, 120, 223, 10.1016/0009-2541(94)00140-4
Miller, 1985, Are strongly peraluminous magmas derived from pelitic sedimentary sources?, The Journal of Geology, 93, 673, 10.1086/628995
Miller, 1981, Composition of plutonic muscovite: genetic implications, American Mineralogist, 90, 316
Miller, 2003, Hot and cold granites? Implications of zircon saturation temperatures and preservation of inheritance, Geology, 31, 529, 10.1130/0091-7613(2003)031<0529:HACGIO>2.0.CO;2
Montel, 1997, Partial melting of metagreywackes, Part II. Compositions of minerals and melts, Contributions to Mineralogy and Petrology, 128, 176, 10.1007/s004100050302
Morel, 2008, Hafnium isotope characterization of the GJ−1 zircon reference material by solution and laser−ablation MC−ICP−MS, Chemical Geology, 255, 231, 10.1016/j.chemgeo.2008.06.040
O'Neil, 1977, Oxygen and hydrogen isotope relations in the Berridale batholith, Journal of the Geological Society, 133, 559, 10.1144/gsjgs.133.6.0559
Patiňo Douce, 1997, Generation of metaluminous A-type granites by low-pressure melting of calc-alkaline granitoids, Geology, 25, 743, 10.1130/0091-7613(1997)025<0743:GOMATG>2.3.CO;2
Patiňo Douce, 1999, What do experiments tell us about the relative contributions of crust and mantle to the origin of granitic magmas?, Geological Society Special Publications, 168, 55, 10.1144/GSL.SP.1999.168.01.05
Patiňo Douce, 1995, Dehydration-melting of bionite gneiss and quartz amphibolite from 3 to 15kbar, Journal of Petrology, 36, 707, 10.1093/petrology/36.3.707
Patiňo Douce, 1996, Effects of P, f(O2) and Mg/Fe ratio on dehydration melting of model metagreywackes, Journal of Petrology, 37, 999, 10.1093/petrology/37.5.999
Patiňo Douce, 1998, Experimental constraints on Himalayan anatexis, Journal of Petrology, 39, 689, 10.1093/petroj/39.4.689
Patiňo Douce, 1991, Phase equilibria and melt productivity in the pelitic system: implications for the origin of peraluminous granitoids and aluminous granulites, Contributions to Mineralogy and Petrology, 107, 202, 10.1007/BF00310707
Pickering, 1998, Fluid-absent melting behavior of a two-mica metapelite: experimental constraints on the origin of Black Hill granite, Journal of Petrology, 39, 1787, 10.1093/petroj/39.10.1787
Qi, 2007, Origin of the Darong-shan–Shiwandashan S-type granitoid belt from south eastern Guangxi: geochemical and Sr–Nd–Hf isotopic constraints, Acta Petrologica Sinica, 23, 403
Rushmer, 1991, Partial melting of two amphibolites: contrasting experimental results under fluid-absent conditions, Contributions to Mineralogy and Petrology, 107, 41, 10.1007/BF00311184
Scherer, 2001, Calibration of the lutetium–hafnium clock, Science, 293, 683, 10.1126/science.1061372
Sha, 1999, Apatite chemical composition, determined by electron microprobe and laser-ablation inductively coupled plasma mass spectrometry, as a probe into granite petrogenesis, Geochimica et Cosmochimica Acta, 63, 3861, 10.1016/S0016-7037(99)00210-0
Sisson, 2005, Voluminous granitic magmas from common basaltic sources, Contributions to Mineralogy and Petrology, 148, 635, 10.1007/s00410-004-0632-9
Skjerlie, 1993, Fluid-absent melting behavior of an F-rich tonalitic gneiss at mid-crustal pressures: implications for the generation of anorogenic granites, Journal of Petrology, 34, 785, 10.1093/petrology/34.4.785
Stevens, 2007, Selective peritectic garnet entrainment as the origin of geochemical diversity in S-type granites, Geology, 35, 9, 10.1130/G22959A.1
Sun, 2011, Geochronological and geochemical constraints on the petrogenesis of Late Triassic aluminous A-type granites in southeast China, Journal of Asian Earth Sciences, 42, 1117, 10.1016/j.jseaes.2011.06.007
Sylvester, 1998, Post-collisional strongly peraluminous granites, Lithos, 45, 29, 10.1016/S0024-4937(98)00024-3
Valley, 2003, Oxygen isotopes in zircon, Reviews in Mineralogy and Geochemistry, 53, 343, 10.2113/0530343
Valley, 1994, Oxygen isotope geochemistry of zircon, Earth and Planetary Science Letters, 126, 187, 10.1016/0012-821X(94)90106-6
Valley, 1995, UWG-2, a garnet standard for oxygen isotope ratios: strategies for high precision and accuracy with laser heating, Geochimica et Cosmochimica Acta, 59, 5223, 10.1016/0016-7037(95)00386-X
Vielzeuf, 1988, Experimental determination of the fluid-absent melting relations in the pelitic system, Contributions to Mineralogy and Petrology, 98, 257, 10.1007/BF00375178
Vielzeuf, 1994, Partial melting of metagreywackes. Part I. Fluid-absent experiments and phase relationships, Contributions to Mineralogy and Petrology, 117, 375, 10.1007/BF00307272
Villaros, 2009, The trace element compositions of S-type granites: evidence for disequilibrium melting and accessory phase entrainment in the source, Contributions to Mineralogy and Petrology, 158, 543, 10.1007/s00410-009-0396-3
Villaros, 2012, Isotopic variations in S-type granites: an inheritance from a heterogeneous source?, Contributions to Mineralogy and Petrology, 163, 243, 10.1007/s00410-011-0673-9
Waight, 2000, Fingerprinting feldspar phenocrysts using crystal isotopic composition stratigraphy: implications for crystal transfer and magma mingling in S-type granites, Contributions to Mineralogy and Petrology, 139, 227, 10.1007/s004100000128
Wang, 2005, Alkaline syenites in eastern Cathaysia (South China): link to Permian–Triassic transtension, Earth and Planetary Science Letters, 230, 339, 10.1016/j.epsl.2004.11.023
Wang, 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, 96, 475, 10.1016/j.lithos.2006.11.010
Wang, 2012, Kwangsian and Indosinian reworking of the eastern South China Block: constraints on zircon U–Pb geochronology and metamorphism of amphibolites and granulites, Lithos, 150, 227, 10.1016/j.lithos.2012.04.022
Wang, 2013, Phanerozoic tectonics of the South China Block: key observations and controversies, Gondwana Research, 23, 1273, 10.1016/j.gr.2012.02.019
Wang, 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, 10.1016/j.epsl.2013.02.011
Watson, 1983, Zircon saturation revisited: temperature and composition effects in a variety of crustal magma types, Earth and Planetary Science Letters, 64, 295, 10.1016/0012-821X(83)90211-X
Whalen, 1987, A-type granites: geochemical characteristics, discrimination and petrogenesis, Contributions to Mineralogy and Petrology, 95, 407, 10.1007/BF00402202
Whitney, 2010, Abbreviations for names of rock-forming minerals, American Mineralogist, 95, 185, 10.2138/am.2010.3371
Wolf, 1994, Dehydration-melting of amphibolite at 10kbar: the effect of temperature and time, Contributions to Mineralogy and Petrology, 115, 369, 10.1007/BF00320972
Wones, 1965, Stability of biotite: experiment, theory, and application, American Mineralogist, 50, 1228
Woodhead, 2005, A preliminary appraisal of seven natural zircon reference materials for in-situ Hf isotope determination, Geostandards and Geoanalytical Research, 29, 183, 10.1111/j.1751-908X.2005.tb00891.x
Wu, 2002, A-type granites in northeastern China: age and geochemical constraints on their petrogenesis, Chemical Geology, 187, 143, 10.1016/S0009-2541(02)00018-9
Wu, 2006, Reworking of juvenile crust: element and isotope evidence from Neoproterozoic granodiorite in South China, Precambrian Research, 146, 179, 10.1016/j.precamres.2006.01.012
Xu, 2003, Single zircon LA-ICPMS U–Pb dating of Guidong complex (SE China) and its petrogenetic significance, Chinese Science Bulletin, 48, 1892, 10.1007/BF03184074
Yu, 2007, Geochemistry and geochronology of Fucheng complex in southeast of Jiangxi Province, Acta Petrologica Sinica, 23, 1441
Yuan, 2008, Simultaneous determinations of U–Pb age, Hf isotopes and trace element compositions of zircon by excimer laser-ablation quadrupole and multiple-collector ICP-MS, Chemical Geology, 247, 100, 10.1016/j.chemgeo.2007.10.003
Zeng, 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, 3671, 10.1016/j.gca.2005.02.035
Zhang, 2013, Formation and evolution of Precambrian continental lithosphere in South China, Gondwana Research, 23, 1241, 10.1016/j.gr.2012.09.005
Zhao, 2003, Calculation of oxygen isotope fractionation in magmatic rocks, Chemical Geology, 193, 59, 10.1016/S0009-2541(02)00226-7
Zhao, 2013, Zircon U–Pb chronology and elemental and Sr–Nd–Hf isotope geochemistry of two Triassic A-type granites in South China: implication for petrogenesis and Indosinian transtensional tectonism, Lithos, 160–161, 292, 10.1016/j.lithos.2012.11.001
Zheng, 2014, Geochemistry of continental subduction-zone fluids, Earth, Planets and Space, 66, 93, 10.1186/1880-5981-66-93
Zheng, 2004, Zircon U–Pb and oxygen isotope evidence for a large-scale δ18O depletion event in igneous rocks during the Neoproterozoic, Geochimica et Cosmochimica Acta, 68, 4145, 10.1016/j.gca.2004.01.007
Zheng, 2007, Contrasting zircon Hf and O isotopes in the two episodes of Neoproterozoic granitoids in South China: implications for growth and reworking of continental crust, Lithos, 96, 127, 10.1016/j.lithos.2006.10.003
Zheng, 2008, Rift melting of juvenile arc-derived crust: geochemical evidence from Neoproterozoic volcanic and granitic rocks in the Jiangnan Orogen, South China, Precambrian Research, 163, 351, 10.1016/j.precamres.2008.01.004
Zheng, 2013, Introduction to tectonics of China, Gondwana Research, 23, 1189, 10.1016/j.gr.2012.10.001
Zhou, 2007
Zhou, 2006, Petrogenesis of Mesozoic granitoids and volcanic rocks in South China: a response to tectonic evolution, Episodes, 29, 26, 10.18814/epiiugs/2006/v29i1/004