Provenances of the paleozoic terrigenous sequences of the Oldoi terrane of the Central Asian orogenic belt: Sm-Nd isotope geochemistry and U-Pb geochronology (LA-ICP-MS)

被引:0
作者
A. A. Sorokin
Yu. N. Smirnova
A. B. Kotov
V. P. Kovach
E. B. Sal’nikova
L. I. Popeko
机构
[1] Russian Academy of Sciences,Institute of Geology and Natural Management, Far East Branch
[2] Russian Academy of Sciences,Institute of Precambrian Geology and Geochronology
[3] Russian Academy of Sciences,Institute of Tectonics and Geophysics, Far East Branch
来源
Geochemistry International | 2015年 / 53卷
关键词
Central Asian orogenic belt; Oldoi terrane; terrigenous sediments; detrital zircons; Sm-Nd; LA-ICP-MS;
D O I
暂无
中图分类号
学科分类号
摘要
The results of Sm-Nd isotope geochemical investigations of the Paleozoic terrigenous sequences of the Oldoi terrane and U-Pb dating of detrital zircons by the LA-ICP-MS technique showed that the clastic material was mainly derived from Late Precambrian granitoids and Early to Middle Paleozoic granitoids and volcanics, which were formed owing to the reworking of the Late Precambrian continental crust. During the Silurian, the main source of terrigenous material in the sedimentation basin was the erosion of Late Precambrian and Early Paleozoic granitoids. In the Devonian, provenances became more diverse, and the sedimentation basin was additionally supplied by the decomposition products of Middle Paleozoic granitoids and silicic volcanics. The age ranges obtained for detrital zircons from the sandstones of the Middle-Late Devonian Oldoi Formation and the Early Carboniferous Tipara Formation are almost identical to the stratigraphic ages of the formations, which indicates that terrigenous sedimentation in the Oldoi terrane had been accompanied, at least since the Middle Devonian, by vigorous magmatic activity and occurred in an environment of a mature island arc or an active continental margin.
引用
收藏
页码:534 / 544
页数:10
相关论文
共 147 条
[1]  
Goldstein S J(1988)Nd and Sr isotopic systematic of river water suspended material: implications for crustal evolution Earth Planet. Sci. Lett. 87 249-265
[2]  
Jacobsen S B(2011)Origin of terranes in the eastern Central Asian Orogenic Belt, NE China: U-Pb ages of detrital zircons from Ordovician-Devonian sandstones, North Da Xing’an Mts. Tectonophysics 511 109-124
[3]  
Han G(1984)Sm-Nd evolution of chondrites and achondrites Earth Planet. Sci. Lett. 67 137-150
[4]  
Liu Y(1995)Stages in the formation of continental crust in the central part of the Aldan granulite-gneiss terrane: U-Pb and Sm-Nd isotope data on granitoids Petrologiya 3 99-110
[5]  
Neubauer F(2003)Precambrian tectonics of East Asia and relevance to supercontinent evolution Precambrian Res. 122 1-6
[6]  
Genser J(2010)Detrital zircon U-Pb ages and Hf isotopes of the Early Paleozoic flysch sequence in the Chinese Altai, NW China: new constrains on depositional age, provenance and tectonic evolution Tectonophysics 480 213-231
[7]  
Li W(2012)Geochemistry and U-Pb detrital zircon dating of Paleozoic graywackes in East Junggar, NW China: insights into subduction-accretion processes in the southern Central Asian Orogenic Belt Gondwana Res. 21 637-653
[8]  
Zhao Y(2003)Provenances of Riphean sedimentary basins at the Russian Platform-Southern Urals junction: evidence from petrographic, petrochemical, and geochemical data Dokl. Earth Sci. 389 180-183
[9]  
Liang C(2006)Systematics of rare earth elements, Th, Hf, Sc, Co, Cr, and Ni in the Vendian pelitic rocks of the Serebryanka and Sylvitsa groups from the western slope of the Central Urals: a tool for monitoring provenance composition Geochem. Int. 44 559-580
[10]  
Jacobsen S B(2008)Riphean fine-grained aluminosilicate clastic rocks in the Southern Urals, Uchur-Maya area, and the Yenisei Kryazh: principal litho-geochemical characteristics Geochem. Int. 11 1117-1144