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U-Pb geochronology and geochemistry of late Palaeozoic volcanism in Sardinia(southern Variscides) 被引量:2

U-Pb geochronology and geochemistry of late Palaeozoic volcanism in Sardinia(southern Variscides)
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摘要 The latest Carboniferous to lower Permian volcanism of the southern Variscides in Sardinia developed in a regional continental transpressive and subsequent transtensile tectonic regime.Volcanism produced a wide range of intermediate-silicic magmas including medium-to high-K calc-alkaline andesites,dacites,and rhyolites.A thick late Palaeozoic succession is well exposed in the four most representative Sardinian continental basins(Nurra,Perdasdefogu,Escalaplano,and Seui-Seulo),and contains substantial stratigraphic,geochemical,and geochronological evidence of the area's complex geological evolution from the latest Carboniferous to the beginning of the Triassic.Based on major and trace element data and LA-ICP-MS U-Pb zircon dating,it is possible to reconstruct the timing of postVariscan volcanism.This volcanism records active tectonism between the latest Carboniferous and Permian,and post-dates the unroofing and erosion of nappes in this segment of the southern Variscides.In particular,igneous zircon grains from calc-alkaline silicic volcanic rocks yielded ages between299±1 and 288±3 Ma,thereby constraining the development of continental strike-slip faulting from south(Escalaplano Basin)to north(Nurra Basin).Notably,andesites emplaced in medium-grade metamorphic basement(Mt.Cobingius,Ogliastra)show a cluster of older ages at 332±12 Ma.Despite the large uncertainty,this age constrains the onset of igneous activity in the mid-crust.These new radiometric ages constitute:(1)a consistent dataset for different volcanic events;(2)a precise chronostratigraphic constraint which fits well with the biostratigraphic data and(3)insights into the plate reorganization between Laurussia and Gondwana during the late Palaeozoic evolution of the Variscan chain. The latest Carboniferous to lower Permian volcanism of the southern Variscides in Sardinia developed in a regional continental transpressive and subsequent transtensile tectonic regime.Volcanism produced a wide range of intermediate-silicic magmas including medium-to high-K calc-alkaline andesites,dacites,and rhyolites.A thick late Palaeozoic succession is well exposed in the four most representative Sardinian continental basins(Nurra,Perdasdefogu,Escalaplano,and Seui-Seulo),and contains substantial stratigraphic,geochemical,and geochronological evidence of the area's complex geological evolution from the latest Carboniferous to the beginning of the Triassic.Based on major and trace element data and LA-ICP-MS U-Pb zircon dating,it is possible to reconstruct the timing of postVariscan volcanism.This volcanism records active tectonism between the latest Carboniferous and Permian,and post-dates the unroofing and erosion of nappes in this segment of the southern Variscides.In particular,igneous zircon grains from calc-alkaline silicic volcanic rocks yielded ages between299±1 and 288±3 Ma,thereby constraining the development of continental strike-slip faulting from south(Escalaplano Basin)to north(Nurra Basin).Notably,andesites emplaced in medium-grade metamorphic basement(Mt.Cobingius,Ogliastra)show a cluster of older ages at 332±12 Ma.Despite the large uncertainty,this age constrains the onset of igneous activity in the mid-crust.These new radiometric ages constitute:(1)a consistent dataset for different volcanic events;(2)a precise chronostratigraphic constraint which fits well with the biostratigraphic data and(3)insights into the plate reorganization between Laurussia and Gondwana during the late Palaeozoic evolution of the Variscan chain.
出处 《Geoscience Frontiers》 SCIE CAS CSCD 2017年第6期1263-1284,共22页 地学前缘(英文版)
基金 substantially supported by the University of Genova(PRA 2012 grant to Laura Gaggero) University of Pavia(PRIN 2008 to Ausonio Ronchi)
关键词 PERMIAN VOLCANISM SARDINIA UePb GEOCHRONOLOGY CALC-ALKALINE VOLCANISM Permian volcanism Sardinia U-Pb geochronology Calc-alkaline volcanism
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  • 1Amarasinghe, U., Chaudhuri, A., Collins, A.S., Deb, G., Patranabis-Deb, S., 2015. Evolving provenance in the Proterozoic Pranhita-Godavari Basin, India. Geoscience Frontiers 6, 453-463. http://dx.doi.Org/10.1016/j.gsf.2014.03.009.
  • 2Amato, J.M., Mack, G.H., 2012. Detrital zircon geochronology from the Cambrian-Ordovician Bliss Sandstone, New Mexico: evidence for contrasting Grenville-age and Cambrian sources on opposite sides of the Transcontinental Arch. Geological Society of America Bulletin 124, 1826-1840. http://dx.doi.org/ 10.1130/B30657.1.
  • 3Bickford, M., Chase, R., Nelson, B., 1981. U-Pb studies of zircon cores and overgrowths, and monazite: implications for age and petrogenesis of the northeastern Idaho batholith. The Journal of Geology 89 (4), 433-457.
  • 4Boehnke, P., Harrison, T.M., 2014. A meta-analysis of geochronologically relevant half-lives: what’s the best decay constant? International Geology Review 56, 905-914. http://dx.doi.org/10.1080/00206814.2014.908420.
  • 5Botev, Z.I., Grotowski, J.F., Kroese, D.P., 2010. Kernel density estimation via diffusion. Annals of Statistics 38, 2916-2957.
  • 6Cherniak, D.J., Watson, E.B., 2000. Pb diffusion in zircon. Chemical Geology 172, 5-24.
  • 7Condon, D.J., Bowring, S.A., 2011. Chapter 9 a user’s guide to Neoproterozoic geochronology. Geological Society, London, Memoirs 36, 135-149. http:// dx.doi.org/10.1144/M36.9.
  • 8Corfu, F., 2013. A century of U-Pb geochronology: the long quest towards concordance. Geological Society of America Bulletin 125, 33-47. http://dx.doi.org/ 10.1130/B30698.1.
  • 9Coleman, D.S., Gray, W., Glazner, A.F., 2004. Rethinking the emplacement and evolution of zoned plutons: geochronologic evidence for incremental assembly of the Tuolumne Intrusive Suite, California. Geology 32, 433. http://dx.doi.org/ 10.1130/G20220.1.
  • 10Dehler, C.M., Fanning, C.M., Link, P.K., Kingsbury, E.M., Rybczynski, D., 2010. Maximum depositional age and provenance of the Uinta mountain group and big cottonwood formation, northern Utah. Paleogeography of Rifting Western Laurentia: Geological Society of America Bulletin 122 (9-10), 1686-1699. http:// dx.doi.org/10.1130/B30094.1.

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