Evolution of Jurassic-Cretaceous magmatism in the Khambin volcanotectonic complex (western Transbaikalia)

被引:17
|
作者
Andryushchenko, S. V. [1 ]
Vorontsov, A. A. [1 ]
Yarmolyuk, V. V. [2 ]
Sandimirov, I. V. [1 ]
机构
[1] Russian Acad Sci, Siberian Branch, Ap Vinogradov Geochem Inst, Irkutsk 664033, Russia
[2] Russian Acad Sci, Inst Geol Ore Deposits Petrog Mineral & Geochem, Moscow 119017, Russia
关键词
Late Mesozoic; intracontinental rifting; magmatic evolution; western Transbaikalia; Khambin volcanotectonic complex; ISLAND-ARC; AGE; HISTORY;
D O I
10.1016/j.rgg.2010.06.002
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The Khambin volcanotectonic complex is a horst framing the Late Cretaceous Lake Gusinoe basin in the northwest. This complex is due to the intracontinental rift conditions which existed in western Transbaikalia in the Late Mesozoic. They gave rise to a system of subparallel grabens and horsts in present-day topography. The magmatic evolution of this complex spans from 159 to 117 Ma and is divided into three stages. The first stage (159-156 Ma) witnessed the formation of thick (up to 1500 m) volcanic masses of trachybasalts, basaltic trachyandesites, trachytes, trachydacites, trachyrhyolites, and pantellerites. The next two stages were the formation of isolated ancient volcanoes (127-124 Ma) composed of trachybasalts, basaltic trachyandesites, phonotephrites, tephriphonolites, and alkali trachytes and the formation of the Murtoi (Lake Gusinoe) essexite dike (122-117 Ma). The main trends for igneous associations from early to late stages are reduced magmatism and reduced rock diversity because of the decreasing portion of felsic volcanic rocks. Mafic rocks show an increase in total alkalinity, the content of incompatible elements (Th, U, K, Rb, Pb, Nb, Ta, Zr, Hf), total REE content, and the LREE/HREE ratio. The Sr-Nd isotopic composition of these rocks remained nearly constant and corresponds to that of OIB-EMII mantle sources. Compositional variations are attributed to a time-dependent decrease in the degree of partial melting of a similar magma source. (C) 2010, V.S. Sobolev IGM, Siberian Branch of the RAS. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:734 / 749
页数:16
相关论文
共 50 条
  • [21] Diachronous evolution of Late Jurassic-Cretaceous continental rifting in the northeast Atlantic (west Iberian margin)
    Alves, Tiago M.
    Moita, Carlos
    Cunha, Tiago
    Ullnaess, Magnar
    Myklebust, Reidun
    Monteiro, Jose H.
    Manuppella, G.
    TECTONICS, 2009, 28
  • [22] Jurassic-cretaceous Barents-Amerasian superplume and initial stage of geodynamic evolution of the Arctic Ocean
    E. V. Shipilov
    Yu. V. Karyakin
    G. G. Matishov
    Doklady Earth Sciences, 2009, 426 : 564 - 566
  • [23] Evolution of the Molopo drainage and its possible disruption by the Morokweng impact event at the Jurassic-Cretaceous boundary
    Bootsman, CS
    Reimold, WU
    Brandt, D
    JOURNAL OF AFRICAN EARTH SCIENCES, 1999, 29 (04): : 669 - 678
  • [24] Jurassic-cretaceous Barents-Amerasian superplume and initial stage of geodynamic evolution of the Arctic Ocean
    Shipilov, E. V.
    Karyakin, Yu. V.
    Matishov, G. G.
    DOKLADY EARTH SCIENCES, 2009, 426 (01) : 564 - 566
  • [25] Jurassic-Cretaceous granitoids and related tectono-metallogenesis in the Zapug-Duobuza arc, western Tibet
    Geng, Quan-Ru
    Zhang, Zhang
    Peng, Zhi-Min
    Guan, Jun-Lei
    Zhu, Xiang-Ping
    Mao, Xiao-Chang
    ORE GEOLOGY REVIEWS, 2016, 77 : 163 - 175
  • [26] Sr Isotope Composition in Belemnites from the Jurassic-Cretaceous Boundary Section (Maurynya River, Western Siberia)
    Kuznetsov, A. B.
    Izokh, O. P.
    Dzyuba, O. S.
    Shurygin, B. N.
    DOKLADY EARTH SCIENCES, 2017, 477 (02) : 1408 - 1413
  • [27] Magneto- and biostratigraphy across the Jurassic-Cretaceous boundary in the Kurovice section, Western Carpathians, Czech Republic
    Elbra, T.
    Bubik, M.
    Rehakova, D.
    Schnabl, P.
    Cizkova, K.
    Pruner, P.
    Kdyr, S.
    Svobodova, A.
    Svabenicka, L.
    CRETACEOUS RESEARCH, 2018, 89 : 211 - 223
  • [28] Variation in sauropod trackway pattern from the Tuchengzi Formation (Jurassic-Cretaceous boundary) in western Liaoning, China
    Xing, Lida
    Lockley, Martin G.
    Jiang, Zikun
    Klein, Hendrik
    Persons, W. Scott
    Zhang, Peifu
    Wan, Xiaoqiao
    CRETACEOUS RESEARCH, 2021, 118
  • [29] Tectono-sedimentary evolution of Jurassic-Cretaceous diapiric structures: Miravete anticline, Maestrat Basin, Spain
    Verges, Jaume
    Poprawski, Yohann
    Almar, Ylenia
    Drzewiecki, Peter A.
    Moragas, Mar
    Bover-Arnal, Telm
    Macchiavelli, Chiara
    Wright, Wayne
    Messager, Gregoire
    Embry, Jean-Christophe
    Hunt, David
    BASIN RESEARCH, 2020, 32 (06) : 1653 - 1684
  • [30] Tectonic evolution of the Selkirk fan, southeastern Canadian Cordillera: A composite Middle Jurassic-Cretaceous orogenic structure
    Gibson, H. Daniel
    Brown, Richard L.
    Carr, Sharon D.
    TECTONICS, 2008, 27 (06)