期刊文献+

A review of the~1600 Ma sedimentation,volcanism,and tectono-thermal events in the Singhbhum craton,Eastern India 被引量:2

A review of the~1600 Ma sedimentation,volcanism,and tectono-thermal events in the Singhbhum craton,Eastern India
下载PDF
导出
摘要 The Palaeoproterozoic-Mesoproterozoic transition ( -1600 Ma) is a significant event in the Earth history as a global thermal perturbation affected the pre-1600 Ma landmasses. Like other cratonic blocks of the world, lithospheric thinning, sedimentation, magmatism, metamorphism and crustal melting/anatexis are associated with this significant geological event in the Singhbhum cratonic province of India. This paper is a review of sedimentological, magmatic and tectono-thermal events in the Singhbhum craton at 1600 Ma. The Palaeo-Mesoproterozoic sedimentation and volcanism in the Singhbhum craton took place in a terrestrial intracontinental rift setting. The available geochronological data are indicative of late Palaeoproterozoic to Neoproterozoic tectono-thermal events in the Chhotanagpur Granite Gneissic Complex (CGGC), an east-west trending arcuate belt of granite gneisses, migmatites and metasedi- mentary rocks. A detailed multidisciplinary geo-scientific investigation of the Dalma volcanic belt and the area to its north (Chandil Formation) and further north in CGGC will enable us to constrain the extant surface processes and crust-mantle interactions, the collision events between the North and South Indian cratonic blocks, and the position of India in the Columbia supercontinent. The Palaeoproterozoic-Mesoproterozoic transition ( -1600 Ma) is a significant event in the Earth history as a global thermal perturbation affected the pre-1600 Ma landmasses. Like other cratonic blocks of the world, lithospheric thinning, sedimentation, magmatism, metamorphism and crustal melting/anatexis are associated with this significant geological event in the Singhbhum cratonic province of India. This paper is a review of sedimentological, magmatic and tectono-thermal events in the Singhbhum craton at 1600 Ma. The Palaeo-Mesoproterozoic sedimentation and volcanism in the Singhbhum craton took place in a terrestrial intracontinental rift setting. The available geochronological data are indicative of late Palaeoproterozoic to Neoproterozoic tectono-thermal events in the Chhotanagpur Granite Gneissic Complex (CGGC), an east-west trending arcuate belt of granite gneisses, migmatites and metasedi- mentary rocks. A detailed multidisciplinary geo-scientific investigation of the Dalma volcanic belt and the area to its north (Chandil Formation) and further north in CGGC will enable us to constrain the extant surface processes and crust-mantle interactions, the collision events between the North and South Indian cratonic blocks, and the position of India in the Columbia supercontinent.
出处 《Geoscience Frontiers》 SCIE CAS CSCD 2013年第3期277-287,共11页 地学前缘(英文版)
基金 Financial support for this research came from the Department of Science and Technology,Government oF India(to RM,SD and PC) the Yokohama National University,Japan(to MR and MA) the School of Biology,Earth and Environmental Sciences.the University of New South Wales,Australia(to RM)
关键词 Late Palaeoproterozoic Mesoproterozoic Sedimentation Volcanism Geochronology Singhhhum Late Palaeoproterozoic Mesoproterozoic Sedimentation Volcanism Geochronology Singhhhum
  • 相关文献

参考文献105

  • 1Acharyya, S.K., 2003. A plate tectonic model for Proterozoic Crustal evolution of Central Indian Tectonic Zone. Gondwana Geological Magazine 7, 9-31.
  • 2Acharyya, S.K., Gupta, A., Orihashi, Y., 2010a. New U-Pb zircon ages from Palaeo- Mesoarchean TFG gneisses of the Singhbhum Craton, eastern India. Geochemical Journal 44, 81-88.
  • 3Acharyya, S.K., Gupta, A., Orihashi, Y., 2010b. Neoarchaean-Palaeoproterozoic stra- tigraphy of the Dhanjori basin, Singhbhum Craton, Eastern India and recording of a few U-Pb zircon dates from its basal part. Journal of Asian Earth Science 39, 527-536.
  • 4Ainsworth, B.R., Hasiotis, S.T., Amos, K.J., Krapf, C.B.E., Payenberg, T.H.D., Sandstrom, M.L., Vakarelov, B.K., Lang, S.C., 2012. Tidal signatures in an intra- cratonic playa lake. Geology 40, 607-610.
  • 5Arndt, N.T., Fowler, A., 2004. Textures in komatiites and variolitic basalts. In: Eriksson, P.G., Altermann, W., Nelson, D.R., Mueller, W.U., Catuneanu, O. (Eds.), The Precambrian Earth: Tempos and Events. Elsevier, Amsterdam, pp. 298-311.
  • 6Arndt, N.T., Nesbitt, R.W., 1982. Geochemistry of Munro Township basalts. In: Arndt, N.T., Nisbet, E.G. (Eds.), Komatiites. George Allen and Unwin, London, pp. 309-330.
  • 7Arndt, N., Lesher, C.M., Barnes, S.J., 2008. Komatiites. Cambridge University Press, p. 467. Bandyopadhyay, P.K., Chakrabarti, A.K. Deomurari, M.P., Misra, S., 2001.2.8.
  • 8Ga old anorogenic granite-acid volcanic association from western margin of Singhbhum-Orissa craton, eastern India. Gondwana Research 4, 465-475.
  • 9Basu, A.R., Sharma, M., Premo, W.R., 1996. U-Pb age of an older Metamorphic Group mica schist: earliest terrain of the eastern Indian Craton. In: Saha, A.K. (Ed.), Recent Researches in Geology and Geophysics of the Precambrians, Recent Researches in Geology 16. Hindustan Publishing Corporation, New Delhi, pp. 93-102.
  • 10Basu, A.R., 8andyopadhyay, P.K. Chakraborti, R., Zou, H., 2008. Large 3.4 Ga Algoma type BIF in the Eastern Indian Craton. Geochimica et Cosmochimica Acta 72, A59.12S-Goldschmidt 2008 Conference Abstract Volume. Basu, S.K., 1993.

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部