Important crustal growth in the Phanerozoic: Isotopic evidence of granitoids from east-central Asia

Bor–ming Jahn1, Fu‐Yuan Wu2, Deshun Hong3
1Géosciences Rennes, Université de Rennes 1, Rennes Cedex, France
2Géosciences Rennes, Université de Rennes 1, 35042 Rennes, Cedex, France
3Lithosphere Research Centre, CAGS, Beijing, China

Tóm tắt

Từ khóa


Tài liệu tham khảo

Anderson J L and Morrison J 1992 The role of anorogenic granites in the Proteorozic crustal development of North America. In:Proterozoic Crustal Evolution (ed) K C Condie, Amsterdam: Elsevier, 263–299

Arakawa Y and Shimura T 1995 Nd-Sr isotopic and geochemical characteristics of two contrasting types of calc-alkaline plutons in the Hida belt;Japan. Chem. Geol. 124 217–232

Armstrong R L 1968 A model for Sr and Pb isotope evolution in a dynamic earth;Rev. Geophys. 6 175–199

Armstrong R L 1981 Radiogenic isotopes: The case for crustal recycling on a near-steady state no-continental-growth earth;Phil. Trans. Royal Soc. London, A 301 443–472

Armstrong R L 1991 The persistent myth of crustal growth;Australia J. Earth Sci. 38 613–630

Arndt N T and Goldstein S L 1987 Use and abuse of crustformation ages;Geology 15 893–895

Bernard-Griffiths J, Peucat J J, Sheppard S and Vidal P 1985 Petrogenesis of Hercynian leucogranites from the southern Armorican Massif: contribution of REE and isotopic (Sr, Nd, Pb, and O) geochemical data to the study of source rock characteristics and ages;Earth Planet. Sci. Lett 74 235–250

Boher M, Abouchami W, Michard A, Albarède F and Arndt NT 1992 Crustal growth in West Africa at 2.1 Ga;J. Geophys. Res. 97 345–369

Charoy B and Raimbault L 1994 Zr-, Th- and REE-rich biotite differentiates in the A-type granites pluton of Suzhou (eastern China): the key role of fluorine;J. Petrology 35 919–962

Chen J F and Jahn B M 1998 Crustal evolution of southeastern China: Nd and Sr isotopic evidence;Tectonophysics 284 101–133

Chen J F, Man F S and Ni S B 1995 Nd and Sr isotopic geochemistry of mafic-ultramafic intrusions from Qinbulake, West Tianshan Mountain, Xinjiang;Geochimica 24 121–127 (in Chinese with English abstract)

Cluzel D 1991 Late Palaeozoic to early Mesozoic geodynamic evolution of the circum-Pacific orogenic belt in South Korea and Southwest Japan;Earth Planet Sci. Lett. 108 289–305

Cocherie A, Rossi Ph, Fouillac A M and Vidal Ph 1994 Crust and mantle contributions to granite genesis: An example from the Variscan batholith of Corsica, France, studied by trace-element and Nd-Sr-O isotope systemetics;Chem. Geol. 115 173–211

Coleman R G 1989 Continental growth of northwest China;Tectonics 8 621–635

Collins W J, Beams S D, White A J R and Chappell B W 1982 Nature and origin of A-type granites with particular reference to southeastern Australia;Contrib. Mineral. Petrol. 80 189–200

Costa S and Rey P 1995. Lower crustal rejuvenation and growth during post-thickening collapse: Insights from a crustal cross section through a Variscan metamorphic core complex;Geology 23 905–908

Creaser R A, Price R C and Wormald R J 1991 A-type granites revisited: assessment of a residual-source model;Geology 19 163–166

Darbyshire D P F, Sewell R J 1997 Nd and Sr isotope geochemistry of pjutonic rocks from Hong Kong: implications for granite petrogenesis, regional structure and crustal evolution;Chem. Geol. 143 81–93

DePaolo D J 1981 A neodynium and strontium isotopic study of the Mesozoic calc-alkaline granitic batholiths of the Sierra Nevada and Peninsular Ranges, California;J. Geophys. Res. 86 10470–10488.

Downes H, Shaw A, Williamson B J and Thirlwall M F 1997 Sr, Nd and Pb isotope geochemistry of the Hercynian granodiorites and monzogranites, Massif Central, France;Chem. Geol. 136 99–122

Eby G N 1992 Chemical subdivision of the A-type granitoids: petrogenetic and tectonic implications;Geology 20 641–644

Foland K A and Allen J C 1991 Magma sources for Mesozoic anorogenic granites of the White Mountain magma series, New England, U.S.A.;Contrib. Mineral. Petrol. 109 195–211

Gilder S A, Gill J, Coe R S, Zhao X, Liu Z, Wang G, Yuan K, Liu W, Kuang G and Wu H 1996 Isotopic and paleomagmatic constraints on the Mesozoic tectonic evolution of south China;J. Geophys. Res. 101 16137–16154

Gruschka S, Kröner A, Avdeev A V, Seitov N S, Oberhänsli R 1997 Early Palaeozoic accretion of arcs and microcontinents in the Central Asian Mobile Belt of southern Kazakhstan as deduced from Pb-Pb zircon and Sm-Nd model ages;Terra Nova 9 Abstract Supplement 1, 340

Han B F, Wang S G, Jahn B M, Hong D W, Kagami H and Sun Y L 1997 Depleted-mantle magma source for the Ulungur River A-type granites from north Xinjiang, China: geochemistry and Nd-Sr isotopic evidence, and implication for Phanerozoic crustal growth;Chem Geol. 138 135–159

Hirooka K, Nakajima T, Sakai H, Date T, Nittamachi K and Hattori I 1983 Accretion tectonics inferred from paleomagnetic measurements of Paleozoic and Mesozoic rocks in central Japan. In:Accretion Tectonics in the Circum-Pacific Regions. M Hashimoto and S Uyeda (eds); Tokyo: Terra Sci. Publ. Co., 179–194

Hong D W, Huang H Z, Xiao Y J, Xu H M and Jin M Y, 1995 Permian alkaline granites in central inner Mongolia and their geodynamic significance;Acta Geologica Sinica 8 27–39

Hong D W, Wang S G, Han B F and Jin M Y 1996 Postorogenic alkaline granites from China and comparisons with anorogenic alkaline granites elsewhere;J. SE Asian Earth Sci. 13 13–27

Hsü K J, Li J L, Chen H H, Wang Q C, Sun S and Sengör A M C 1990 Tectonics of South China: key to understanding west Pacific geology;Tectonophysics 183 9–39

Hu A Q, Jahn B M, Zhang G, Zhang Q 2000a Crustal evolution and Phanerozoic crustal growth in Northern Xinjiang: Nd-Sr isotopic evidence. Part I: Isotopic characterization of basement rocks. (in preparation).

Hu A Q, Jahn B M, Zhang G, Zhang Q 2000b Crustal evolution and Phanerozoic crustal growth in Northern Xinjiang: Nd-Sr isotopic evidence. Part II: Phanerozoic granite intrusions (in preparation).

Huang X, Sun S H, DePaolo D J and Wu K L 1986 Nd-Sr isotope study of Cretaceous magmatic rocks from Fujian province;Acta Petrol. Sinica 2 50–63

Jahn B M, Chen P Y and Yen T P 1976 Rb-Sr ages of granitic rocks in southeastern China and their tectonic significance;Bull. Geol. Soc. Am. 86 763–776

Jahn B M, Martineau F, Peucat J J and Cornichet J 1986 Geochronology of the Tananao Schist complex, Taiwan, and its regional tectonic significance;Tectonophysics 125 103–124

Jahn B M, Zhou X H and Li J L 1990 Formation and tectonic evolution of southeastern China and Taiwan: Isotopic and geochemical constraints;Tectonophysics 183 145–160

Javoy M and Weiss D 1987 Oxygen isotopic composition of alkaline anorogenic granites as a clue to their origin: the problem of crustal oxygen;Earth Planet. Sci. Lett. 84 415–422

Jin C W and Zhang X Q 1993 A geochronology and genesis of the western Junggar granitoids, Xinjiang, China;Scientia Geologica Sinica 28 28–36 (in Chinese with English abstract).

Kononova V A, Pervov V A, Bogatikov O A, Upton B G J, Suddaby P and Woolley A R 1996 Geochemical constraints on the petrogenesis of the high-K rocks of the southern Sakun Massif, Aldan Shield, Siberia;J. Conf. Abst. 1 324

Kovalenko V I, Tsareva G M, Yarmolyuk V V, Troisky V A, Farmer G L and Chernishev I V 1992 Sr-Nd isotopic compositions and the age of rare-metal peralkaline granitoids from western Mongolia;Dokladi Akad. Nauk 237 570–574 (in Russian)

Kovalenko V, Yarmolyuk V and Bogatikov O 1995 Magmatism, geodynamics, and metallogeny of Central Asia. Miko Moscow: Commercial Herald Publishers 272 pp.

Kovalenko V I, Yarmolyuk V V, Kovach V P, Kotov A B, Kozakov I K, Sal’nikova E B 1996 Sources of Phanerozoic granitoids in Central Asia: Sm-Nd isotope data;Geochem. Int’l. 34 628–640

Kuzmin M I and Antipin V S 1993 Geochemical types of granitoids of the Mongol-Okhotsk belt and their geodynamic settings;Chinese J. Geochim. 12 110–117

Kwon S T, Tilton G R, Coleman R G and Feng Y 1989 Isotopic studies bearing on the tectonics of the west Junggar region, Xinjiang, China;Tectonics 8 719–727

Lan C Y, Lee T, Jahn B M and Yui T F, 1995 Taiwan as a witness of repeated mantle inputs—Sr-Nd-O isotopic geochemistry of Taiwan granitoids and metapelites;Chem. Geol. 124 287–303

Landenberger B and Collins W J 1996 Derivation of A-type granites from a dehydrated charnocktic lower crust: evidence from the Chaelundi Complex, eastern Australia;J. Petrology 37 145–170

Litvinovsky B A, Zanvilevich A N, Alakshin A M and Podladchikov Yu 1992 The Angara-Vitim batholith—the largest granitoid pluton. Novosibirsk;Nauka 141 pp.

Martin H, Bonin B, Capdevila R, Jahn B M, Lamayre J and Wang Y, 1994 The Kuiqi peralkaline granitic complex (SE China): petrology and geochemistry;J. Petrology 35 983–1015

Mizutani S and Hattori I 1983 Hida and Mino: Tectonostratigraphic terranes in central Japan. In:Accretion Tectonics in the Circum-Pacific Regions. M Hashimoto and S Uyeda (eds), Tokyo: Terra Sci. Publ. Co. 169–178

Moorbath S 1978 Age and isotopic evidence for the evolution of continental crust;Phil. Trans. R. Soc. London 288 401–413

Poitrasson F, Duthou J L and Pin C 1995 The relationship between petrology and Nd isotopes as evidence for contrasting anorogenic granite genesis: example of the Corsican Province (SE France);J. Petrol. 36 1251–1274

Reymer A and Schubert G 1984 Phanerozoic addition rates to the continental crust and crustal growth. Tectonics;3 63–77

Reymer A and Schubert G 1986 Rapid growth of some major segments of continental crust;Geology 14 299–302

Rudnick R L and Fountain D M 1995 Nature and composition of the continental crust: a lower crustal perspective;Reviews Geophys. 33 267–309

Samson S D 1998 Phanerozoic crustal growth in North America: A Cordilleran and Appalachian perspective. IGCP-420 Workshop, Xinjiang, [abstract] (in press).

Samson S D and Patchett P J 1991 The Canadian Cordillera as a modern analogue of Proterozoic crustal growth;Aust. Jour. Earth Sci. 38 595–611

Samson S D, McClelland W C, Patchett P J, Gehrels G E, Anderson R G 1989 Evidence from neodymium isotopes for mantle contributions to Phanerozoic crustal genesis in the Canadian Cordillera;Nature 337 705–709

Sengör A M C, Natal’in B A and Burtman V S 1993 Evolution of the Altaid tectonic collage and Paleozoic crustal growth in Eurasia. Nature;364 299–307, 1993

Sengör A M C and Natal’in B A 1996 Turkin-type orogeny and its role in the making of the continental crust;Annu. Rev. Earth Planet. Sci. 24 263–337

Stein M and Hofmann A W 1994 Mantle plumes and episodic crustal growth;Nature 372 63–68

Taylor S R and McLennan S M 1985 The continental crust: its composition and evolution. (Blackwell) 312 pp. 1985

Taylor S R and McLennan S M 1995 The geochemical evolution of the continental crust;Rev. Geophysics 33 241–265

Turner S P, Foden J D and Morrison R S 1992 Derivation of A-type magmas by fractionation of basaltic magma: an example from the Padthaway Ridge, South Australia;Lithos 28 151–179

Vidal P, Bernard-Griffiths J, Cocherie A, Le Fort P, Peucat J J and Sheppard S 1984 Geochemical comparison between Himalayan and Hercynian leucogranites;Phys. Earth Planet. Interiors 35 179–190

Wang S G, Han B F, Hong D W, Xu B L and Sun Y L 1994 Geochemistry and tectonic significance of alkali granites along Ulungur River, Xinjiang (in Chinese with English abstract);Scientia Geologica Sinica 29 373–383

Whalen J B, Currie K L and Chappell B W, 1987 A-type granites: geochemical characteristics, discrimination and petrogenesis;Contrib. Mineral. Petrol. 95 407–419

Whalen J B, Jenner G A, Longstaff F J, Robert F and Galiépy C 1996 Geochemical and isotopic (O, Nd, Pb and Sr) constraints on A-type granite petrogenesis based on the Topsails igneous suite, Newfoundland Appalachians;J. Petrology 37 1463–1489

Wickham S M, Litvinovsky B A, Zanvilevich A N and Bindeman I N 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;J. Geophys. Res. 100 15641–15654

Wickham S M, Alberts A D, Zanvilevich A N, Litvinovsky B A, Bindeman I N and Schuble E A 1996 A stable isotope study of anorogenic magmatism in East Central Asia;J. Petrology 37 1063–1095

Windley B 1993 Proterozoic anorogenic magmatism and its orogenic connections;J. Geol. Soc. London 150 39–50

Windley B 1995,The Evolving Continent, 3rd edition. (Chichester: John Wiley & Sons) 526 pp.

Wu F Y, Jahn B M, Lin Q, Ge WC and Sun D Y 2000 Highly fractionated I-type granites from NE China: geochemistry, petrogenesis and implications for continental growth. (to be submitted toJ. Petrology)

Xu K Q, Zhu J C, Liu C S, Shen W Z and Xu S J 1992 Genetic series and material sources of granitoids in South China. In:Petrogenesis and Mineralisation of Granitoids. G Z Tu, K Q Xu and Y Z Qiu (eds), Beijing: Science Press 3–22

Zanvilevich A N, Litvinovsky B A and Wickham S M 1995 Genesis of alkaline and peralkaline syenite-granite series: the Kharitonovo pluton (Transbaikalia, Russia);J. Geol. 103 127–145.

Zhao Z H 1993 REE and O-Pb-Sr-Nd isotopic compositions and petrogenesis of the Altai granitoids. In:New Development of Solid Earth Science in Northern Xinjiang. Beijing: Science Publishing Co., 239–266

Zhou T X, Chen J F, Chen D G and Li X M 1995 Geochemical characteristics and genesis of granitoids from Alataw Mountain, Xinjiang, China;Geochimica 24 32–42 (in Chinese with English abstract).