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Anatexis of accretionary wedge, Pacific-type magmatism, and formation of vertically stratified continental crust in the Altai Orogenic Belt

机译:阿尔泰造山带增生楔形物的沉积,太平洋型岩浆作用和垂直分层的大陆壳形成

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摘要

Granitoid magmatism and its role in differentiation and stabilization of the Paleozoic accretionary wedge in the Chinese Altai are evaluated in this study. Voluminous Silurian-Devonian granitoids intruded a greywacke-dominated Ordovician sedimentary succession (the Habahe Group) of the accretionary wedge. The close temporal and spatial relationship between the regional anatexis and the formation of granitoids, as well as their geochemical similarities including rather unevolved Nd isotopic signatures and the strong enrichment of large-ion lithophile elements relative to many of the high field strength elements, may indicate that the granitoids are product of partial melting of the accretionary wedge rocks. Whole-rock geochemistry and pseudosection modeling show that regional anatexis of fertile sediments could have produced a large amount of melts compositionally similar to the granitoids. Such process could have left a high-density garnet-and/ or garnet-pyroxene granulite residue in the deep crust, which can be the major reason for the gravity high over the Chinese Altai. Our results show that melting and crustal differentiation can transform accretionary wedge sediments into vertically stratified and stable continental crust. This may be a key mechanism contributing to the peripheral continental growth worldwide.
机译:这项研究评价了花岗岩岩浆作用及其在中国阿尔泰古生代增生楔的分化和稳定中的作用。大量的志留纪-泥盆纪花岗岩侵入了增生楔的一个以灰泥w为主的奥陶纪沉积相(哈巴河群)。区域性食蚁动物与花岗岩的形成之间的紧密时空关系,以及它们的地球化学相似性,包括相当未发展的Nd同位素特征以及相对于许多高场强元素而言,大离子亲石元素的强烈富集,可能表明花岗岩是增生楔形岩石部分熔融的产物。全岩石地球化学和伪剖面模拟表明,肥沃沉积物的区域性麻醉作用可能产生了大量熔体,其组成与花岗岩相似。这样的过程可能在深层地壳中留下了高密度的石榴石和/或石榴石-辉石花岗石残留物,这可能是中国阿尔泰地区重力高的主要原因。我们的结果表明,融化和地壳分异可以将增生的楔形沉积物转变为垂直分层且稳定的大陆壳。这可能是促进全球外围大陆增长的关键机制。

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  • 来源
    《Tectonics》 |2016年第12期|3095-3118|共24页
  • 作者单位

    Chinese Acad Sci, Guangzhou Inst Geochem, State Key Lab Isotope Geochem, Guangzhou, Guangdong, Peoples R China|Czech Geol Survey, Ctr Lithospher Res, Prague, Czech Republic|Charles Univ Prague, Inst Petr & Struct Geol, Prague, Czech Republic;

    Czech Geol Survey, Ctr Lithospher Res, Prague, Czech Republic|Univ Strasbourg, Inst Phys Globe, EOST, UMR 7516, Strasbourg, France;

    Univ Hong Kong, Dept Earth Sci, Hong Kong, Hong Kong, Peoples R China;

    Czech Geol Survey, Ctr Lithospher Res, Prague, Czech Republic|Univ Strasbourg, Inst Phys Globe, EOST, UMR 7516, Strasbourg, France;

    Czech Geol Survey, Ctr Lithospher Res, Prague, Czech Republic;

    Czech Geol Survey, Ctr Lithospher Res, Prague, Czech Republic;

    Charles Univ Prague, Inst Petr & Struct Geol, Prague, Czech Republic;

    Chinese Acad Sci, Guangzhou Inst Geochem, State Key Lab Isotope Geochem, Guangzhou, Guangdong, Peoples R China;

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