dc.date2016
dc.date2016-06-03T20:13:11Z
dc.date2016-06-03T20:13:11Z
dc.date.accessioned2018-03-29T01:32:19Z
dc.date.available2018-03-29T01:32:19Z
dc.identifier
dc.identifierJournal Of Asian Earth Sciences. Elsevier Ltd, v. 118, p. 125 - 137, 2016.
dc.identifier13679120
dc.identifier10.1016/j.jseaes.2015.12.021
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-84954490886&partnerID=40&md5=23eb5aa0101b3688baa3d37355afb879
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/237991
dc.identifier2-s2.0-84954490886
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1304652
dc.descriptionThe central Bundelkhand greenstone complex in Bundelkhand craton, northern India is one of the well exposed Archaean supracrustal amphibolite, banded iron formation (BIF) and felsic volcanic rocks (FV) and associated with grey and pink porphyritic granite, tonalite-trondhjemite-granodiorite (TTG). Here we present high precision zircon U-Pb geochronological data for the pinkish porphyritic granites and TTG. The zircons from the grey-pinkish porphyritic granite show three different concordia ages of 2531. ± 21. Ma, 2516. ± 38. Ma, and 2514. ± 13. Ma, which are interpreted as the best estimate of the magmatic crystallization age for the studied granites. We also report the concordia age of 2669. ± 7.4. Ma for a trondhjemite gneiss sample, which is so far the youngest U-Pb geochronological data for a TTG rock suite in the Bundelkhand craton. This TTG formation at 2669. Ma is also more similar to Precambrian basement TTG gneisses of the Aravalli Craton of north western India and suggests that crust formation in the Bundelkhand Craton occurred in a similar time-frame to that recorded from the Aravalli craton of the North-western India. © 2015 Elsevier Ltd.
dc.description118
dc.description
dc.description125
dc.description137
dc.descriptionAcharyya, S.K., Gupta, A., Orihashi, Y., New U-Pb zircon ages from Paleo-MesoArchaean TTG gneisses of the Singhbhum Craton, eastern India (2010) Geochem. J., 44, pp. 81-88
dc.descriptionArmstrong, R.L., Radiogenic isotopes: the case for crustal recycling on a near steady-stateno-continental growth Earth (1981) Philos. Trans. Royal Soc. Lond. A, 301, pp. 443-472
dc.descriptionBasu, A.K., Geology of parts of the Bundelkhand granite massif, Central India (1986) Record Geol. Survey India, 117, pp. 61-124
dc.descriptionBasu, A.K., Role of Bundelkhand granite massif and the Son-Narmada mega fault in Precambrian crustal evolution and tectonism in central and western India (2007) J. Geol. Soc. India, 70, pp. 745-770
dc.descriptionChauhan, H., Saikia, A., Kaulina, T., Bayanova, T., Ahmad, T., U-Pb ID-TIMS zircon ages of TTG gneisses of the Aravalli craton of India (2015) Geophys. Res. Abstracts, 17, p. 2015. , EGU2015-5299
dc.descriptionCondie, K.C., Davaille, A., Aster, R.C., Arndt, N., Upstairs-downstairs: supercontinents and large igneous provinces, are they related? (2015) Int. Geol. Rev., 57, pp. 1341-1348
dc.descriptionDhuime, B., Hawkesworth, C.J., Cawood, P., When continents formed (2011) Science, 331, pp. 154-155
dc.descriptionGhosh, J.G., 3.56 Ga tonalite in the central part of the Bastar craton, India: oldest Indian date (2004) J. Asian Earth Sci., 23, pp. 359-364
dc.descriptionGuitreau, M., Blichert-Toft, J., Mojzsis, S.J., Roth, A.S.G., Bourdon, B., Cates, N.L., Bleeker, W., Lu-Hf isotope systematics of the Hadean-EoArchaean Acasta Gneiss Complex (Northwest Territories, Canada) (2014) Geochim. Cosmochim. Acta, 135, pp. 251-269
dc.descriptionIizuka, T., Horie, K., Komiya, T., Maruyama, S., Hirata, T., Hidaka, H., Windley, B.F., 4.2 Ga zircon xenocryst in an Acasta gneiss from northwestern Canada: evidence for early continental crust (2006) Geology, 34, pp. 245-248
dc.descriptionJayananda, M., Moyen, J.-F., Martin, H., Peucat, J.-J., Auvray, B., Mahabaleswar, B., Late Archaean (2550-2520 Ma) juvenile magmatism in the Eastern Dharwar craton, southern India: constraints from geochronology, Nd-Sr isotopes and whole rock geochemistry (2000) Precambr. Res., 99, pp. 225-254
dc.descriptionJayananda, M., Chardon, D., Peucat, J.-J., Tushipokla Fanning, C.M., Paleo- to Mesoarchean TTG accretion and continental growth in the western Dharwar craton, Southern India: constraints from SHRIMP U-Pb zircon geochronology, whole-rock geochemistry and Nd-Sr isotopes (2015) Precambr. Res., 268, pp. 295-322
dc.descriptionJoshi, K.B., Bhattacharjee, J., Rai, G., Halla, J., Kurhilla, M., Heilimo, E., Ahmad, T., Whitehouse, M., High-K granitoids from Bundelkhand craton: Manifestation near Archaean-Proterozoic transition (2013), pp. 67-68. , In: Singh, V.K., Chandra, R. (Eds.), International Association for Gondwana research Conference Series No. 16, 3rd International conference Precambrian Continental Growth and Tectonism, Jhansi, IndiaKaur, P., Chaudhri, N., Hofmann, A.W., New evidence for two sharp replacement fronts during albitization of granitoids from northern Aravalli orogen, northwest India (2015) Int. Geol. Rev., 57, pp. 1660-1685
dc.descriptionKaur, P., Chaudhri, N., Raczek, I., Kröner, A., Hofmann, A.W., Record of 1.82 Ga Andean-type continental arc magmatism in NE Rajasthan, India: insights from zircon and Sm-Nd ages, combined with Nd-Sr isotope geochemistry (2009) Gondwana Res., 16, pp. 56-71
dc.descriptionKaur, P., Chaudhri, N., Raczek, I., Kröner, A., Hofmann, A.W., Okrusch, M., Zircon ages of late Palaeoproterozoic (ca. 1.72-1.70 Ga) extension-related granitoids in NE Rajasthan, India: regional and tectonic significance (2011) Gondwana Res., 19, pp. 1040-1053
dc.descriptionKaur, P., Zeh, A., Chaudhri, N., Characterisation and U-Pb-Hf isotope record of the 3.55 Ga felsic crust from the Bundelkhand craton, northern India (2014) Precambr. Res., 255, pp. 236-244
dc.descriptionKumar, S., Bora, S., Raju, S., Yi, K., Pathak, M., Kim, N., Lee, T.H., Crustal Evolution of Bundelkhandcraton: Constrains from whole rock geochemistry and U-Pb SHRIMP zircon chronology (2013), pp. 89-90. , In: Singh, V.K., Chandra, R. (Eds.), International Association for Gondwana research Conference Series No. 16, 3rd International conference Precambrian Continental Growth and Tectonism, Jhansi, IndiaKumar, S., Raju, S., Pathak, M., Pandey, A., Magnetic susceptibility mapping of felsic magmatic lithounits in the central part of Bundelkhand massif, central India (2010) J. Geol. Soc. India, 75, pp. 539-548
dc.descriptionLaurent, O., Martin, H., Moyen, J.-F., Doucelance, R., The diversity and evolution of late-Archaean granites: Evidence for the onset of "modern-style" plate tectonics between 3.0 and 2.5 Ga (2014) Lithos, 205, pp. 208-235
dc.descriptionMalviya, V.P., Arima, M., Pati, J.K., Kaneko, Y., Petrology and geochemistry of metamorphosed basaltic pillow lava and basaltic komatiite in the Mauranipur area: subduction related volcanism in the Archaean Bundelkhand craton, Central India (2006) J. Mineral. Petrol. Sci., 101, pp. 199-217
dc.descriptionMohan, M.R., Singh, S.P., Santosh, M., Siddiqui, M.A., Balaram, V., TTG suite from the Bundelkhand Craton, Central India: geochemistry, petrogenesis and implications for Archean crustal evolution (2012) J. Asian Earth Sci., 58, pp. 38-50
dc.descriptionMohan, M.R., Piercey, S.J., Kamber, B.S., Sarma, D.S., Subduction related tectonic evolution of the Neoarchean eastern Dharwar Craton, southern India: new geochemical and isotopic constraints (2013) Precambr. Res., 227, pp. 204-226
dc.descriptionMondal, M.E.A., Goswami, J.N., Deomurari, M.P., Sharma, K.K., Ion micro-probe 207Pb/206Pb ages of zircons from the Bundelkhand massif, northern India: implications for crustal evolution of the Bundelkhand-Aravalli protocontinent (2002) Precambr. Res., 117, pp. 85-100
dc.descriptionMoyen, J.-F., Martin, H., Jayananda, M., Auvray, B., Late Archaean granites: a typology based on the Dharwar craton (India) (2003) Precambr. Res., 127, pp. 103-123
dc.descriptionMukhopadhyay, J., Ghosh, G., Zimmermann, U., Guha, S., Mukherjee, T., A 3.51 Ga bimodal volcanics-BIF-ultramafic succession from Singhbhum Craton: implications for Palaeoarchaean geodynamic processes from the oldestgreenstone succession of the Indian subcontinent (2012) Geol. J., 47 (2-3), pp. 284-311
dc.descriptionMukhopadhyay, J., Mishra, B., Chakrabarti, K., Ghosh, G., De, H., Uraniferous paleoplacers of the MesoArchaean Mahagiri Quartzite, Singhbhum craton, India: Depositional controls, nature and source of >3.0 Ga detrital uraninites (2015), Ore Geology Reviews Naganjaneyulu, K., Santosh, M., The Central India Tectonic Zone: a geophysical perspective on continental amalgamation along a Mesoproterozoic suture (2010) Gondwana Res., 18, pp. 547-564
dc.descriptionNaqvi, S.M., Rogers, J.J.W., (1987) Precambrian Geology of India: Oxford Monographs on Geology and Geophysics, p. 223. , Oxford University Press, Oxford
dc.descriptionNaqvi, S.M., (2005) Geology and Evolution of the Indian Plate (from Hadean to Holocene - 4 Ga to 4 Ka), p. 450. , Capital Publishing Company, New Delhi
dc.descriptionNelson, D.R., Bhattacharya, H.N., Thern, E.R., Altermann, W., Geochemical and ion microprobe U-Pb zircon constraints on the Archaean evolution of Singhbhum Craton, eastern India (2014) Precambr. Res., 255, pp. 412-432
dc.descriptionPaton, C., Woodhead, J.D., Hellstrom, J.C., Hergt, J.M., Greig, A., Maas, R., Improved laser ablation U-Pb zircon geochronology through robust downhole fractionation correction (2010) Geochem. Geophys. Geosyst., 11, p. Q0AA06
dc.descriptionPearce, J.A., Geochemical fingerprinting of the Earth's oldest rocks (2014) Geology, 42, pp. 175-176
dc.descriptionPetrus, J.A., Kamber, B.S., VizualAge: a novel approach to laser ablation ICP-MS U-Pb geochronology data reduction (2012) Geostand. Geoanal. Res., 36, pp. 247-270
dc.descriptionPeucat, J.-J., Jayananda, M., Chardon, D., Capdevila, D., Capdevila, R., Fanning, C.M., Paquette, J.-L., The lower crust of the DharwarCraton, southern India: patchwork of Archaean granulite domains (2013) Precambr. Res., 227, pp. 4-28
dc.descriptionPrabhakar, B.C., Jayananda, M., Shareef, M., Kano, T., Petrology and geochemistry of Late Archaean granitoids in the northern part of the Eastern Dharwar craton, southern India: implication of transitional geodynamic setting (2009) J. Geol. Soc. India, 74, pp. 299-317
dc.descriptionPradhan, V.R., Meert, J.G., Pandit, M., Kamenov, G., Mondal, M.E.A., Paleomagnetic and geochronological studies of the mafic dyke swarms of Bundelkhand craton, central India: implications for the tectonic evolution and paleogeographic reconstructions (2012) Precambr. Res., pp. 51-76
dc.descriptionRajesh, H.M., Mukhppadhyay, D., Beukes, N.J., Gutzmer, J., Belyanin, G.A., Armstrong, R.A., Evidence of early Archaean granite from Bastar craton, India (2009) J. Geol. Soc. London, 166, pp. 193-196
dc.descriptionRamakrishnan, M., Vaidyanadhan, R., Geology of India (2010) Geol. Soc. India, p. 556
dc.descriptionRao, J.M., Rao, G.V.S.P., Widdowson, M., Kelley, S.P., Evolution of Proterozoic mafic dyke swarms of the Bundelkhand Granite Massif, Central India (2005) Curr. Sci., 88, pp. 502-506
dc.descriptionRoy, A.B., Geology of the Palaeoproterozoic Aravalli Supergroup of Rajasthan and northern Gujarat (2000) Crustal Evolution and Metallogeny in the Northwestern Indian Shield, pp. 87-114. , Narosa Publishing House, New Delhi, M. Deb (Ed.)
dc.descriptionRoy, A.B., Kröner, A., Single zircon evaporation ages constraining the growth of the Archaean Aravalli craton, northwestern Indian Shield (1996) Geol. Mag., 133, pp. 333-342
dc.descriptionSaha, L., Pant, N.C., Pati, J.K., Upadhyay, D., Berndt, J., Bhattacharya, A., Satynarayanan, M., NeoArchean high-pressure margarite-phengitic muscovite-chlorite corona mantled corundum in quartz-free high-Mg, Al phlogopite-chlorite schists from the Bundelkhand craton, north central India (2011) Contrib. Miner. Petrol., 161, pp. 511-530
dc.descriptionSarkar, G., Corfu, F., Paul, D.K., McNaughton, N.J., Gupta, S.N., Bishui, P.K., Early Archean crust in Bastar Craton, Central India - a geochemical and isotopic study (2003) Precambr. Res., 62, pp. 127-137
dc.descriptionSarkar, A., Paul, D.K., Potts, P.J., Geochronology and geochemistry of mid-Archaean trondhjemitic gneisses from the Bundelkhand craton, central India (1996), 16, pp. 76-92. , In: Saha, A.K. (Ed.), Recent Researches in GeologySharma, K.K., Rahman, A., The early Archaean-Paleoproterozoic crustal growth of the Bundelkhand craton, northern Indian shield (2000) Crustal Evolution and Metallogeny in the Northwestern Indian Shield, pp. 51-72. , Narosa Publishing House, New Delhi, M. Deb (Ed.)
dc.descriptionSingh, V.K., Slabunov, A., The greenstone belts of the Bundelkhand craton, Central India: New geochronological data and geodynamic setting (2013), pp. 170-171. , In: Singh, V.K., Chandra, R. (Eds.), International Association for Gondwana research Conference Series No. 16, 3rd International conference Precambrian Continental Growth and Tectonism, Jhansi, IndiaSingh, V.K., Slabunov, A., The central Bundelkhand Archaean greenstone complex, Bundelkhand craton, central India: geology, composition, and geochronology of supracrustal rocks (2015) Int. Geol. Rev., 57, pp. 1347-1362
dc.descriptionSingh, V.K., Slabunov, A., Geochemical characteristics of Banded Iron Formation and Metavolcanics of Babina greenstone belt of the Bundelkhand Craton, Central India (2015) J. Econ. Geol. Georesource Manage., 10, pp. 63-74
dc.descriptionSlabunov, A., Nazarova, D., Li, X., Singh, V.K., The role of the palaeoArchaean continental crust in the Bundelkhandcraton, Central India: the results of Sm-Nd and U-Pb isotopic studies (2013), pp. 178-179. , In: Singh, V.K., Chandra, R. (Eds.), International Association for Gondwana research Conference Series No. 16, 3rd International conference Precambrian Continental Growth and Tectonism, Jhansi, IndiaStacey, J.S., Kramers, J.D., Approximation of terrestrial lead isotope evolution by a 2-Stage model (1975) Earth Planet. Sci. Lett., 26, pp. 207-221
dc.descriptionTaylor, S.R., McLennan, S.M., (1985) The Continental Crust: Its Composition and Evolution, , Blackwell Scientific Publications, Oxford, pp. 312
dc.descriptionTaylor, S.R., McLennan, S.M., The geochemical evolution of the continental crust (1995) Rev. Geophys., 33, pp. 241-265
dc.descriptionUpadhyay, D., Chattopadhyay, S., Kooijman, E., Mezger, K., Berndt, J., Magmatic and metamorphic history of PaleoArchaean tonalite-trondhjemite-granodiorite (TTG) suite from the Singhbhum craton, eastern India (2014) Precambr. Res., 252, pp. 180-190
dc.descriptionWatkins, J.M., Clemens, J.D., Treloar, P.J., Archean TTGs as sources of younger granitic magmas: melting of sodic metatonalites at 0.6-1.2GPa (2007) Contrib. Miner. Petrol., 154, pp. 91-110
dc.descriptionWiedenbeck, M., Allé, P., Corfu, F., Griffin, W.L., Meier, M., Oberli, F., Von, Q.A., Spiegel, W., Three natural zircon standards for U-Th-Pb, Lu-Hf, trace element and REE analyses (1995) Geostandards Newsletter, 19, pp. 1-23
dc.descriptionWiedenbeck, M., Goswami, J.N., High-precision 207Pb/206Pb zircon geochronology using a small ion microprobe (1994) Geochim. Cosmochim. Acta, 58, pp. 2135-2141
dc.descriptionWilde, S.A., Valley, J.W., Peck, W.H., Graham, C.M., Evidence from detrital zircons for the existence of continental crust and oceans on the Earth 4.4 Gyr ago (2001) Nature, 409, pp. 175-178
dc.descriptionZeh, A., Stern, R., Gerdes, A., The oldest zircons of Africa - their U-Pb-Hf-Oisotope and trace element systematics, and implications for Hadean to Archaean crust-mantle evolution (2014) Precambr. Res., 241, pp. 203-230
dc.description
dc.description
dc.languageen
dc.publisherElsevier Ltd
dc.relationJournal of Asian Earth Sciences
dc.rightsfechado
dc.sourceScopus
dc.titleLa-sf-icp-ms Zircon U-pb Geochronology Of Granitic Rocks From The Central Bundelkhand Greenstone Complex, Bundelkhand Craton, India
dc.typeArtículos de revistas


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