Age and sedimentary provenance of the Southern Granulites, South India: U-Th-PbSHRIMP secondary ion mass spectrometry

被引:168
作者
Collins, Alan S. [1 ]
Santosh, M.
Braun, I.
Clark, C.
机构
[1] Univ Adelaide, Continental Evolut Res Grp, Sch Earth & Environm Sci, Adelaide, SA 5005, Australia
[2] Kochi Univ, Fac Sci, Kochi 7808520, Japan
[3] Univ Bonn, Mineral Petrol Inst, D-53115 Bonn, Germany
基金
澳大利亚研究理事会;
关键词
Gondwana; SIMS U-Pb geochronology; zircon; Southern India; provenance; metamorphic age;
D O I
10.1016/j.precamres.2007.01.006
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Southern India lies at a junction in the Gondwana-forming orogenic belts, between the East African Orogen and the Kuunga Orogen. It contains voluminous high-grade metasedimentary gneisses that make up an important component of the record of collision and amalgamation of Gondwana. Here we present U-Pb Secondary Ion Mass Spectrometry (SIMS) isotopic data from detrital zircon cores from throughout southern India that demonstrate dominant Neoarchaean to Palaeoproterozoic age components that are incompatible with the known ages of potential southern and central Indian source regions. The original sediments to the Trivandrum Block gneisses were deposited between similar to 1900 and similar to 515 Ma, whereas a sample from the Achancovil Unit, and possible also a sample from the Madurai Block, were deposited in Neoproterozoic times. We speculate that these rocks broadly correlate with southern and western Malagasy metasedimentary rocks (including the Itremo and Molo Groups) and formed an extensive basin (or basins) that lay on the west side (present orientation) of the Neoproterozoic continent Azania. In addition, metamorphic zircon from four samples yielded an age of 513 6 Ma that is interpreted as dating high-grade metamorphism throughout much of the Southern Granulite Terrane. (C) 2007 Elsevier B.V. All rights reserved.
引用
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页码:125 / 138
页数:14
相关论文
共 77 条
[1]  
[Anonymous], COMPILATION SHRIMP U
[2]  
[Anonymous], REV MINERAL GEOCHEM
[3]   The application of single zircon evaporation and model Nd ages to the interpretation of polymetamorphic terrains: an example from the Proterozoic mobile belt of south India [J].
Bartlett, JM ;
Dougherty-Page, JS ;
Harris, NBW ;
Hawkesworth, CJ ;
Santosh, M .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 1998, 131 (2-3) :181-195
[4]  
Bhaskar Rao Y. J., 2003, Geol. Soc. India Memoirs, V50, P297
[5]   Terminal suturing of Gondwana and the onset of the Ross-Delamerian Orogeny: the cause and effect of an Early Cambrian reconfiguration of plate motions [J].
Boger, SD ;
Miller, JM .
EARTH AND PLANETARY SCIENCE LETTERS, 2004, 219 (1-2) :35-48
[6]   Isotopic age data of single zircons from the Archæan Sukumaland Greenstone Belt, Tanzania [J].
Borg, G ;
Krogh, T .
JOURNAL OF AFRICAN EARTH SCIENCES, 1999, 29 (02) :301-312
[7]   Dehydration-melting phenomena in leptynitic gneisses and the generation of leucogranites: A case study from the Kerala Khondalite Belt, southern India [J].
Braun, I ;
Raith, M ;
Kumar, GRR .
JOURNAL OF PETROLOGY, 1996, 37 (06) :1285-1305
[8]  
Braun I, 2003, GEOL SOC SPEC PUBL, P169
[9]   Electron microprobe dating of monazites from high-grade gneisses and pegmatites of the Kerala Khondalite Belt, southern India [J].
Braun, I ;
Montel, JM ;
Nicollet, C .
CHEMICAL GEOLOGY, 1998, 146 (1-2) :65-85
[10]   Monazite dating of granitic gneisses and leucogranites from the Kerala Khondalite Belt, southern India:: implications for Late Proterozoic crustal evolution in East Gondwana [J].
Braun, I ;
Bröcker, M .
INTERNATIONAL JOURNAL OF EARTH SCIENCES, 2004, 93 (01) :13-22