Sources of Phanerozoic granitoids in the transect Bayanhongor–Ulaan Baatar, Mongolia: geochemical and Nd isotopic evidence, and implications for Phanerozoic crustal growth

Journal of Asian Earth Sciences - Tập 23 Số 5 - Trang 629-653 - 2004
Bor‐ming Jahn1, Ramón Buxó i Capdevila1, Dunyi Liu2, Antoine Vernon1, Gombosuren Badarch3
1Geosciences Rennes, Universite de Rennes 1, 35042 Rennes Cedex, France
2Institute of Geology, Chinese Academy of Geological Sciences, 26 Baiwanzhuang Road, Beijing 100037, China
3Institute of Geology and Mineral Resources, Mongolian Academy of Sciences, Ulaanbaatar 210351, Mongolia

Tóm tắt

Từ khóa


Tài liệu tham khảo

Antipin, 1999, Rare-metal lithium–fluorine granites, ongonites, and topazites of the southern Baikal region, Petrology, 7, 147

Badarch, 2002, A new terrane subdivision for Mongolia: implications for the Phanerozoic crustal growth of Central Asia, Journal of Asian Earth Sciences, 21, 87, 10.1016/S1367-9120(02)00017-2

Bau, 1996, Controls on the fractionation of isovalent trace elements in magmatic and aqueous system: evidence from Y/Ho, Zr/Hf, and lanthanide tetrad effect, Contributions to Mineralogy and Petrology, 123, 323, 10.1007/s004100050159

Buchan, 1999, The Bayankhongor ophiolite zone, central Mongolia: a suture in the Altaids, 8

Buchan, 2001, Structural and lithological characteristics of the Bayankhongor ophiolite zone, Central Mongolia, Journal of the Geological Society, London, 158, 445, 10.1144/jgs.158.3.445

Buchan, 2002, Timing of accretion and collisional deformation in the Central Asian orogenic Belt: implications of granite geochronology in the Bayankhongor Ophiolite Zone, Chemical Geology, 192, 23, 10.1016/S0009-2541(02)00138-9

Budnikov, 1999, The ages and sources of the Hangay batholith (Central Mongolia), 11

Chen, 2003, Genesis of post-collisional granitoids and basement nature of the Junggar Terrane, NW China: Nd–Sr isotope and trace element evidence, Journal of Asian Earth Sciences

Chen, 2000, Two contrasting Paleozoic magmatic belts in northern Inner Mongolia, China: petrogenesis and tectonic implications, Tectonophysics, 328, 157, 10.1016/S0040-1951(00)00182-7

Condie, 1993, Chemical composition and evolution of the upper continental crust: contrasting results from surface samples and shales, Chemical Geology, 104, 1, 10.1016/0009-2541(93)90140-E

Gordienko, 1987

Hong, 1995, Permian alkaline granites in central Inner Mongolia and their geodynamic significance, Acta Geologica Sinica, 8, 27, 10.1111/j.1755-6724.1995.mp8001003.x

Hong, 1996, Post-orogenic alkaline granites from China and comparisons with anorogenic alkaline granites elsewhere, Journal of SE Asian Earth Sciences, 13, 13, 10.1016/0743-9547(96)00002-5

Irber, 1999, The lanthanide tetrad effect and its correlation with K/Rb, Eu/Eu*, Sr/Eu, Y/Ho, and Zr/Hf of evolving peraluminous granite suites, Geochimica Cosmochimica Acta, 63, 489, 10.1016/S0016-7037(99)00027-7

Jahn, B.M., 2003. The Central Asian Orogenic Belt and growth of the continental crust in the Phanerozoic. Geological Society of London Special Publications. Accepted for publication.

Jahn, 1996, Ultrahigh-εNd eclogites from an ultrahigh-pressure metamorphic terrane of China, Chemical Geology, 127, 61, 10.1016/0009-2541(95)00108-5

Jahn, 1999, Crust-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, Chemical Geology, 157, 119, 10.1016/S0009-2541(98)00197-1

Jahn, 2000, Granitoids of the Central Asian Orogenic Belt and continental growth in the Phanerozoic, Transactions Royal Society of Edinburgh: Earth Sciences, 91, 181, 10.1017/S0263593300007367

Jahn, 2000, Massive granitoid generation in Central Asia: Nd isotope evidence and implication for continental growth in the Phanerozoic, Episodes, 23, 82, 10.18814/epiiugs/2000/v23i2/001

Jahn, 2001, Highly evolved juvenile granites with tetrad REE patterns: the Woduhe and Baerzhe granites from the Great Xing'an Mountain in NE China, Lithos, 59, 171, 10.1016/S0024-4937(01)00066-4

Kepezhinskas, 1991, Lower Paleozoic oceanic crust in Mongolian Caledonides: Sm–Nd isotope and trace element data, Geophysical Research Letters, 18, 1301, 10.1029/91GL01643

Keto, 1987, Nd and Sr isotopic variations of Early Paleozoic oceans, Earth and Planetary Science Letters, 84, 27, 10.1016/0012-821X(87)90173-7

Kotov, 1995, Duration of regional metamorphic episodes in areas of polycyclic endogenic processes: a U–Pb geochronological study, Petrology, 3, 621

Kovalenko, 1969

Kovalenko, 1992, Sr–Nd isotopic compositions and the age of rare-metal peralkaline granitoids from western Mongolia, Dokladi Akademiia Nauk, 237, 570

Kovalenko, 1995

Kovalenko, 1996, Sources of Phanerozoic granitoids in Central Asia: Sm–Nd isotope data, Geochemistry International, 34, 628

Kovalenko, 2003, Isotope provinces, mechanisms of generation and sources of the continental crust in the Central Asian Mobile Belt: geological and isotopic evidence, Journal of Asian Earth Sciences

Kozakov, 1997, Crustal growth in the geological evolution of the Baidarik block, central Mongolia: evidence from Sm–Nd isotopic systematics, Petrology, 5, 201

Kozakov, 2001, Timing of the structural evolution of metamorphic rocks in the Tuva-Mongolian Massif, Geotectonics, 35, 165

Kurimoto, 1998, K–Ar ages of white micas from pelitic schists of the Bayankhongor area, west Mongolia, Bulletin of Geological Survey of Japan, 49, 19

Litvinovsky, 1994, Angara-Vitim batholith, transbaikalia: structure, petrology and petrogenesis, Russian Geology and Geophysics, 35, 190

Litvinovsky, 2002, Petrogenesis of syenite-granite suites from the Bryansky complex (Transbaikalia Russia): implications for the origin of A-type granitoid magmas, Chemical Geology, 189, 105, 10.1016/S0009-2541(02)00142-0

Liu, 1990, Ages and petrogenesis of granitoids in the Altai Mountains, Xinjiang, China, Geotectonica and Metallogenica, 14, 43

Ludwig, K.R., 1999. ISOPLOT/Ex. Version 2.06. A geochronological toolkit for Microsoft Excel. Berkeley Geochronology Center Special Publications No. 1a, 49 pp.

Maniar, 1989, Tectonic discrimination of granitoids, Geological Society of America Bulletin, 101, 635, 10.1130/0016-7606(1989)101<0635:TDOG>2.3.CO;2

Masuda, 1990, Lanthanide tetrad effect observed in leucogranites from China, Geochemical Journal, 23, 245, 10.2343/geochemj.23.245

Masuda, 1973, Fine structures of mutually normalized rare-earth patterns of chondrites, Geochimica Cosmochimica Acta, 37, 239, 10.1016/0016-7037(73)90131-2

McLennan, S.M., 2001. Relationships between the trace element composition of sedimentary rocks and upper continental crust. G3 (Geochem–Geophys–Geosys), 2000GC000109.

Mitrofanov, 1985, Archaean isotope age of tonalite (grey) gneisses in Caledonian structure of Central Mongolia, Doklady Academii Nauk SSSR, 284, 671

1999

Oyungerel, 1999, New radiometric age data of the granitoids in Bayankhongor area, Central Mongolia, Mongolian Geoscientist, 13, 38

Parfenov, 1999, The problems of tectonics of the Mongol–Okhotsk orogenic belt, Pacific Oceanic Geology, 18, 24

Rikhter, 1994, Granite-metamorphic complex in the cover of the Bumburger Massif (Mongolia), Geotektonika, 4, 73

Ruzhentsev, 1996, Geodynamics and tectonic evolution of the Central Asian Paleozoic structures as the result of the interaction between the Pacific and Indo-Atlantic segments of the earth, Geotectonics, 29, 211

Sengör, 1996, Turkin-type orogeny and its role in the making of the continental crust, Annual Review of Earth and Planetary Sciences, 24, 263, 10.1146/annurev.earth.24.1.263

Sengör, 1993, Evolution of the Altaid tectonic collage and Paleozoic crustal growth in Eurasia, Nature, 364, 299, 10.1038/364299a0

Stemprok, 1991, Ongonite from ongon khairkhan, Mongolia, Mineralogy and Petrology, 43, 255, 10.1007/BF01164530

Streckeisen, 1979, A chemical approximation to the modal QAPF classification of the igneous rocks: N, Jb. Miner. Abh., 136, 169

Sun, 1989, Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes, vol. 42, 313

Takahashi, 2000, Geochronological data of granitoids in the Bayankhongor area, central Mongolia, Bulletin of Geological Society of Japan, 51, 167

Taylor, 1985

Taylor, 1995, The geochemical evolution of the continental crust, Review of Geophysics, 33, 241, 10.1029/95RG00262

Teraoka, 1996, Tectonic framework of the Bayanhongor area, west Mongolia, Bulletin of Geological Society of Japan, 47, 447

Vladimirov, 1997, Late Paleozoic–early Mesozoic granitoid magmatism in Altai, Russian Geology and Geophysics, 38, 755

Wickham, 1995, Geochemical evolution of Phanerozoic magmatism in Transbaikalia, East Asia: a key constraint on the origin of K-rich silicic magmas and the process of cratonization, Journal of Geophysical Research, 100, 15641, 10.1029/95JB00035

Wickham, 1996, A stable isotope study of anorogenic magmatism in East Central Asia, Journal of Petrology, 37, 1063, 10.1093/petrology/37.5.1063

Williams, 1998, U–Th–Pb geochronology by ion microprobe, vol. 7, 1

Wu, 2000, Phanerozoic crustal growth: Sr–Nd isotopic evidence from the granites in northeastern China, Tectonophysics, 328, 89, 10.1016/S0040-1951(00)00179-7

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, 2003, Highly fractionated I-type granites in NE China (II): isotopic geochemistry and implications for crustal growth in the Phanerozoic, Lithos, 67, 191, 10.1016/S0024-4937(03)00015-X

Zanvilevich, 1995, Genesis of alkaline and peralkaline syenite-granite series: the Kharitonovo pluton (Transbaikalia, Russia), Journal of Geology, 103, 127, 10.1086/629732

Zonenshain, 1990, vol. 242

Zorin, 1999, Geodynamics of the western part of the Mongolia-Okhotsk collisional belt, Transbaikal region (Russia) and Mongolia, Tectonophysics, 306, 33, 10.1016/S0040-1951(99)00042-6

Zou, 1988, Discrimination of orogenic and anorogenic granites in Altai, Xinjiang, Acta Geologica Sinica, 3, 228