Zircon Hf–O isotope evidence for crust–mantle interaction during continental deep subduction
Tài liệu tham khảo
Blichert-Toft, 1997, The Lu–Hf isotope geochemistry of chondrites and the evolution of the mantle–crust system, Earth Planet. Sci. Lett., 148, 243, 10.1016/S0012-821X(97)00040-X
Bonin, 2004, Do coeval mafic and felsic magmas in post-collisional to within-plate regimes necessarily imply two contrasting, mantle and crustal, sources? A review, Lithos, 78, 1, 10.1016/j.lithos.2004.04.042
Bryant, 2004, Geochemical, age, and isotopic constraints on the location of the Sino-Korean/Yangtze Suture and evolution of the Northern Dabie Complex, east central China, Geol. Soc. Am. Bull., 116, 698, 10.1130/B25302.2
Chen, 2002, Petrogenesis of Mesozoic granitoids in the Dabie UHP complex, Central China: trace element and Nd–Sr isotope evidence, Lithos, 60, 67, 10.1016/S0024-4937(01)00077-9
Chen, 2003, U–Pb zircon ages for a collision-related K-rich complex at Shidao in the Sulu ultrahigh pressure terrane, China, Geochem. J., 37, 35, 10.2343/geochemj.37.35
Chen, 2007, Origin of retrograde fluid in ultrahigh-pressure metamorphic rocks: constraints from mineral hydrogen isotope and water content changes in eclogite-gneiss transitions in the Sulu orogen, Geochim. Cosmochim. Acta, 71, 2299, 10.1016/j.gca.2007.02.012
Chen, 2011, Mineral hydrogen isotopes and water contents in ultrahigh-pressure metabasite and metagranite: constraints on fluid flow during continental subduction-zone metamorphism, Chem. Geol., 281, 103, 10.1016/j.chemgeo.2010.12.002
Chopin, 2003, Ultrahigh-pressure metamorphism: tracing continental crust into the mantle, Earth Planet. Sci. Lett., 212, 1, 10.1016/S0012-821X(03)00261-9
Chu, 2002, Hf isotope ratio analysis using multi-collector inductively coupled plasma mass spectrometry: an evaluation of isobaric interference corrections, J. Anal. Atom. Spectrom., 17, 1567, 10.1039/b206707b
Chung, 2005, Tibetan tectonic evolution inferred from spatial and temporal variations in post-collisional magmatism, Earth Sci. Rev., 68, 173, 10.1016/j.earscirev.2004.05.001
Coltice, 2000, 40K–40Ar Constraints on recycling continental crust into the mantle, Science, 288, 845, 10.1126/science.288.5467.845
Elhlou, 2006, Trace element and isotopic composition of GJ red zircon standard by laser ablation, Geochim. Cosmochim. Acta, 70, A158, 10.1016/j.gca.2006.06.1383
Eyal, 2010, Origin and evolution of post-collisional magmatism: Coeval Neoproterozoic calc-alkaline and alkaline suites of the Sinai Peninsula, Chem. Geol., 269, 153, 10.1016/j.chemgeo.2009.09.010
Fan, 2004, Late Mesozoic volcanism in the northern Huaiyang tectono-magmatic belt, central China: partial melts from a lithospheric mantle with subducted continental crust relicts beneath the Dabie orogen?, Chem. Geol., 209, 27, 10.1016/j.chemgeo.2004.04.020
Ferrando, 2005, Multiphase solid inclusions in UHP rocks (Su-Lu, China): Remnants of supercritical silicate-rich aqueous fluids released during continental subduction, Chem. Geol., 223, 68, 10.1016/j.chemgeo.2005.01.029
Griffin, 2000, The Hf isotope composition of cratonic mantle: LA–MC–ICPMS analysis of zircon megacrysts in kimberlites, Geochim. Cosmochim. 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, 2004, Origin of early Cretaceous calc-alkaline lamprophyres from the Sulu orogen in eastern China: implications for enrichment processes beneath continental collisional belt, Lithos, 78, 291, 10.1016/j.lithos.2004.05.001
Hoefs, 2009
Hofmann, 1997, Mantle geochemistry: the message from oceanic volcanism, Nature, 385, 219, 10.1038/385219a0
Huang, 2006, Melting of subducted continent: element and isotopic evidence for a genetic relationship between Neoproterozoic and Mesozoic granitoids in the Sulu orogen, Chem. Geol., 229, 227, 10.1016/j.chemgeo.2005.11.007
Huang, 2007, Recycling of deeply subducted continental crust in the Dabie Mountains, central China, Lithos, 96, 151, 10.1016/j.lithos.2006.09.019
Iizuka, 2005, Improvements of precision and accuracy in in situ Hf isotope microanalysis of zircon using the laser ablation-MC-ICPMS technique, Chem. Geol., 220, 121, 10.1016/j.chemgeo.2005.03.010
Irvine, 1971, A guide to the chemical classification of the common volcanic rocks, Can. J. Earth Sci., 8, 523, 10.1139/e71-055
Jahn, 1999, Crustal–mantle interaction induced by deep subduction of the continental crust: geochemical and Sr–Nd isotopic evidence from post-collisional mafic–ultramafic intrusions of the northern Dabie complex, central China, Chem. Geol., 157, 119, 10.1016/S0009-2541(98)00197-1
Lackey, 2008, Dynamic magma systems, crustal recycling, and alteration in the central Sierra Nevada batholith: the oxygen isotope record, J. Petrol., 49, 1397, 10.1093/petrology/egn030
Lei, 2008, Zircon U–Pb age, trace element, and Hf isotope evidence for Paleoproterozoic granulite-facies metamorphism and Archean crustal remnant in the Dabie orogen, J. China Univ. Geosci., 19, 110, 10.1016/S1002-0705(08)60031-X
Li, 1999, Sm/Nd, Rb/Sr, and 40Ar/39Ar isotopic systematics of the ultrahigh-pressure metamorphic rocks in the Dabie–Sulu belt, central China: a retrospective view, Int. Geol. Rev., 41, 1114, 10.1080/00206819909465195
Li, 2009, Precise determination of Phanerozoic zircon Pb/Pb age by multicollector SIMS without external standardization, Geochem. Geophys. Geosyst., 10, Q04010, 10.1029/2009GC002400
Li, 2010, Petrogenesis and tectonic significance of the 850Ma Gangbian alkaline complex in South China: evidence from in situ zircon U–Pb dating, Hf–O isotopes and whole-rock geochemistry, Lithos, 114, 1, 10.1016/j.lithos.2009.07.011
Li, 2010, Penglai zircon megacrysts: a potential new working reference material for microbeam determination of Hf–O isotopes and U–Pb age, Geostand. Geoanal. Res., 34, 117, 10.1111/j.1751-908X.2010.00036.x
Liégeois, 1998, Preface—some words on the post-collisional magmatism, Lithos, 45, 15
Liou, 1997, Lack of fluid during ultrahigh-P metamorphism in the Dabie–Sulu region, Eastern China, 17, 141
Liou, 2009, Ultrahigh-pressure minerals and metamorphic terranes—the view from China, J. Asian Earth Sci., 35, 199, 10.1016/j.jseaes.2008.10.012
Liu, 2008, Detachment within subducted continental crust and multi-slice successive exhumation of ultrahigh-pressure metamorphic rocks: evidence from the Dabie–Sulu orogenic belt, Chin. Sci. Bull., 53, 3105, 10.1007/s11434-008-0387-1
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, J. Petrol., 51, 537, 10.1093/petrology/egp082
Ludwig, 2003
Ma, 1998, A post-collisional magmatic plumbing system: Mesozoic granitoid plutons from the Dabieshan high-pressure and ultrahigh-pressure metamorphic zone, east-central China, Lithos, 45, 431, 10.1016/S0024-4937(98)00043-7
Machado, 2001, U–Pb dating and Hf isotopic composition of zircons by laser ablation-MC-ICP-MS, 29, 121
McDonough, 1995, The composition of the Earth, Chem. Geol., 120, 223, 10.1016/0009-2541(94)00140-4
Middlemost, 1994, Naming materials in magma/igneous rock system, Earth Sci. Rev., 37, 215, 10.1016/0012-8252(94)90029-9
Nowell, 1998, High precision Hf isotope measurements of MORB and OIB by thermal ionisation mass spectrometry: insights into the depleted mantle, Chem. Geol., 149, 211, 10.1016/S0009-2541(98)00036-9
Okay, 1989, Coesite from the Dabie Shan eclogites, central China, Eur. J. Mineral., 1, 595, 10.1127/ejm/1/4/0595
Scherer, 2001, Calibration of the lutetium–hafnium clock, Science, 293, 683, 10.1126/science.1061372
Simon, 2005, Continental recycling: the oxygen isotope point of view, Geochem. Geophy. Geosyst., 6, Q08004, 10.1029/2005GC000958
Stacey, 1975, Approximation of terrestrial lead isotope evolution by a two-stage model, Earth Planet. Sci. Lett., 26, 207, 10.1016/0012-821X(75)90088-6
Tang, 2008, Zircon U–Pb age and geochemical constraints on the tectonic affinity of the Jiaodong terrane in the Sulu orogenm, China, Precambrian Res., 161, 389, 10.1016/j.precamres.2007.09.008
Tang, 2008, Extreme oxygen isotope signature of meteoric water in magmatic zircon from metagranite in the Sulu orogen, China: implications for Neoproterozoic rift magmatism, Geochim. Cosmochim. Acta, 72, 3139, 10.1016/j.gca.2008.04.017
Tang, 2008, Age and composition of the Rushan intrusive complex in the northern Sulu orogen, eastern China: petrogenesis and lithospheric mantle evolution, Geol. Mag., 146, 199, 10.1017/S0016756808005463
Valley, 1998, Zircon megacrysts from kimberlite: oxygen isotope variability among mantle melts, Contrib. Mineral. Petrol., 133, 1, 10.1007/s004100050432
Wallis, 2005, Role of partial melting in the evolution of the Sulu (eastern China) ultrahigh-pressure terrane, Geology, 33, 129, 10.1130/G20991.1
Wang, 1989, Coesite-bearing eclogites from the Dabie Mountains in central China, Geology, 17, 1085, 10.1130/0091-7613(1989)017<1085:CBEFTD>2.3.CO;2
Wang, 2005, Nature of the Mesozoic lithospheric mantle and tectonic decoupling beneath the Dabie Orogen, Central China: Evidence from Ar/Ar geochronology, elemental and Sr–Nd–Pb isotopic compositions of early Cretaceous mafic igneous rocks, Chem. Geol., 220, 165, 10.1016/j.chemgeo.2005.02.020
Wang, 2007, Early Cretaceous adakitic granites in the Northern Dabie Complex, central China: implications for partial melting and delamination of thickened lower crust, Geochim. Cosmochim. Acta, 71, 2609, 10.1016/j.gca.2007.03.008
Whitehouse, 2004, Assigning dates to thin gneissic veins in high-grade metamorphic terranes: a cautionary tale from Akilia, southwest Greenland, J. Petrol., 46, 291, 10.1093/petrology/egh075
Wiedenbeck, 2004, Further characterisation of the 91500 zircon crystal, Geostand. Geoanal. Res., 28, 9, 10.1111/j.1751-908X.2004.tb01041.x
Willbold, 2010, Formation of enriched mantle components by recycling of upper and lower crust, Chem. Geol., 276, 188, 10.1016/j.chemgeo.2010.06.005
Woodhead, 2005, Preliminary appraisal of seven natural zircon reference materials for in situ Hf isotope determination, Geostand. Geoanal. Res., 29, 183, 10.1111/j.1751-908X.2005.tb00891.x
Woodhead, 2004, Zircon Hf-isotope analysis with an excimer laser, depth profiling, ablation of complex geometries, and concomitant age estimation, Chem. Geol., 209, 121, 10.1016/j.chemgeo.2004.04.026
Wu, 2004, Genesis of zircon and its constraints on interpretation of U–Pb age, Chin. Sci. Bull., 49, 1554, 10.1360/04wd0130
Wu, 2006, Hf isotopic compositions of the standard zircons and baddeleyites used in U–Pb geochronology, Chem. Geol., 234, 105, 10.1016/j.chemgeo.2006.05.003
Xia, 2008, Dehydration and melting during continental collision: constraints from element and isotope geochemistry of low-T/UHP granitic gneiss in the Dabie orogen, Chem. Geol., 247, 36, 10.1016/j.chemgeo.2007.09.013
Xie, 2006, Mineral isotope evidence for the contemporaneous process of Mesozoic granite emplacement and gneiss metamorphism in the Dabie orogen, Chem. Geol., 231, 214, 10.1016/j.chemgeo.2006.01.028
Xu, 1992, Diamonds from the Dabie Shan metamorphic rocks and its implication for tectonic setting, Science, 256, 80, 10.1126/science.256.5053.80
Xu, 2004, Hf isotopic compositions of the standard zircons for U–Pb dating, Chin. Sci. Bull., 49, 1642, 10.1360/04wd0128
Xu, 2005, Element and isotope geochemistry of Mesozoic intermediate-felsic rocks at Tianzhushan in the Dabie orogen, Acta Petrol. Sin., 3, 607
Xu, 2007, Early cretaceous granitoids and their implications for the collapse of the Dabie orogen, eastern China: SHRIMP zircon U–Pb dating and geochemistry, Chem. Geol., 240, 238, 10.1016/j.chemgeo.2007.02.018
Xu, 2008, Early Cretaceous granitoids in the North Dabie and their tectonic implications: Sr–Nd and zircon Hf isotopic evidences, Acta Petrol. Sin., 24, 87
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, Chem. Geol., 247, 100, 10.1016/j.chemgeo.2007.10.003
Zeng, 2009, Partial melting of deeply subducted continental crust and the formation of quartzo-feldspathic polyphase inclusions in the Sulu UHP eclogites, Chin. Sci. Bull., 54, 2580, 10.1007/s11434-009-0426-6
Zhang, 2002, Geochemical and Sr–Nd–Pb isotopic compositions of Cretaceous granitoids: constraints on tectonic framework and crustal structure of the Dabieshan ultrahigh-pressure metamorphic belt, China. Chem. Geol., 186, 281, 10.1016/S0009-2541(02)00006-2
Zhang, 2009, Geochemical evidence for interaction between oceanic crust and lithospheric mantle in the origin of Cenozoic continental basalts in east-central China, Lithos, 110, 305, 10.1016/j.lithos.2009.01.006
Zhang, 2010, Postcollisional magmatism: geochemical constraints on the petrogenesis of Mesozoic granitoids in the Sulu orogen, China, Lithos, 119, 512, 10.1016/j.lithos.2010.08.005
Zhao, 2003, Calculation of oxygen isotope fractionation in magmatic rocks, Chem. Geol., 193, 59, 10.1016/S0009-2541(02)00226-7
Zhao, 2009, Remelting of subducted continental lithosphere: petrogenesis of Mesozoic magmatic rocks in the Dabie–Sulu orogenic belt, Sci. China (D), 52, 1295, 10.1007/s11430-009-0134-8
Zhao, 2004, Zircon isotope evidence for recycling of subducted continental crust in post-collisional granitoids from the Dabie terrane in China, Geophys. Res. Lett., 31, L22602, 10.1029/2004GL021061
Zhao, 2005, Zircon U–Pb age, element and C–O isotope geochemistry of post-collisional mafic–ultramafic rocks from the Dabie orogen in east-central China, Lithos, 83, 1, 10.1016/j.lithos.2004.12.014
Zhao, 2007, Post-collisional granitoids from the Dabie orogen in China: Zircon U–Pb age, element and O isotope evidence for recycling of subducted continental crust, Lithos, 93, 248, 10.1016/j.lithos.2006.03.067
Zhao, 2007, Element mobility in mafic and felsic ultrahigh-pressure metamorphic rocks during continental collision, Geochim. Cosmochim. Acta, 71, 5244, 10.1016/j.gca.2007.09.009
Zhao, 2008, Zircon U–Pb ages, Hf and O isotopes constrain the crustal architecture of the ultrahigh-pressure Dabie orogen in China, Chem. Geol., 253, 222, 10.1016/j.chemgeo.2008.05.011
Zheng, 2008, A perspective view on ultrahigh-pressure metamorphism and continental collision in the Dabie–Sulu orogenic belt, Chin. Sci. Bull., 53, 3081, 10.1007/s11434-008-0388-0
Zheng, 2009, Fluid regime in continental subduction zones: petrological insights from ultrahigh-pressure metamorphic rocks, J. Geo. Soc. London, 166, 763, 10.1144/0016-76492008-016R
Zheng, 2003, Stable isotope geochemistry of ultrahigh pressure metamorphic rocks from the Dabie–Sulu orogen in China: implications for geodynamics and fluid regime, Earth Sci. Rev., 62, 105, 10.1016/S0012-8252(02)00133-2
Zheng, 2004, Zircon U–Pb and oxygen isotope evidence for a large-scale 18O depletion event in igneous rocks during the Neoproterozoic, Geochim. Cosmochim. Acta, 68, 4145, 10.1016/j.gca.2004.01.007
Zheng, 2005, Low-grade metamorphic rocks in the Dabie–Sulu orogenic belt: a passive-margin accretionary wedge deformed during continent subduction, Int. Geol. Rev., 47, 851, 10.2747/0020-6814.47.8.851
Zheng, 2005, Metamorphic effect on zircon Lu–Hf and U–Pb isotope systems in ultrahigh-pressure eclogite-facies metagranite and metabasite, Earth Planet. Sci. Lett., 240, 378, 10.1016/j.epsl.2005.09.025
Zheng, 2006, Zircon U–Pb age, Hf and O isotope constraints on protolith origin of ultrahigh-pressure eclogite and gneiss in the Dabie orogen, Chem. Geol., 231, 135, 10.1016/j.chemgeo.2006.01.005
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, 2009, Chemical geodynamics of continental subduction-zone metamorphism: insight from studies of the Chinese Scientific Drilling (CCSD) core samples, Tectonophysics, 475, 327, 10.1016/j.tecto.2008.09.014
Zindler, 1986, Chemical geodynamics, Annu. Rev. Earth. Planet. Sci., 14, 493, 10.1146/annurev.ea.14.050186.002425