首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Switch of geodynamic setting from the Paleo-Asian Ocean to the Mongol-Okhotsk Ocean: Evidence from granitoids in the Duobaoshan ore field, Heilongjiang Province, Northeast China
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Switch of geodynamic setting from the Paleo-Asian Ocean to the Mongol-Okhotsk Ocean: Evidence from granitoids in the Duobaoshan ore field, Heilongjiang Province, Northeast China

机译:从古亚洲海洋到蒙古 - 鄂霍次海的地球动力学环境切换到蒙古鄂港海洋:来自大教堂,黑龙江省大部分地区的花岗岩证据

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This paper presents new zircon U-Pb ages and whole-rock geochemical data for Triassic granitoids in the Duobaoshan ore field, in the eastern Central Asian Orogenic Belt (CAOB). Dating results reveal that the Triassic granitoids in the Duobaoshan ore field were emplaced ca. 244-223 Ma. These samples are typical subduction-related arc magmatic rocks that are enriched with large-ion lithophile elements (LILEs), depleted in high field strength elements (HFSEs), and have relatively high Sr (average 1036 ppm) and low Y (average 10 ppm) and Yb (average 1 ppm) contents that exhibit adakite-like geochemical properties. The samples feature a juvenile whole rock average initial Sr-87/ Sr-86 ratio of 0.70394 and an average epsilon(Nd) (t), zircon epsilon(Hf) (t), and two-stage Hf model age of 4.62, 10.29, and 766 Ma respectively. These geochemical features reveal a thickened lower crust source. Comprehensive analyses of the early Paleozoic, Triassic, and early Jurassic granitoids in the Duobaoshan ore field indicate that the magmatism of these three stages was related to the melting of the juvenile lower continental crust materials. The early Paleozoic was the primary period of vertical crust growth, during which time the juvenile lower continental crust was formed. The Triassic granitoids derived from magma were generated by partial melting of the thickened juvenile lower crust and the Jurassic granitoids derived from the partial melting of the delaminated juvenile lower crust. Geological observation and tectonic setting analyses reveal that the Paleo-Asian Ocean tectonic regime in the Duobaoshan ore field switched to the Mongol-Okhotsk Ocean in the Mesozoic after its closure. The early Paleozoic granitoids were formed in a subduction setting related to the northwestward subducted Paleo-Asian Oceanic slab underlying the Erguna-Xing'an composite block. The Triassic granitoids were formed under a supra-subduction extensional regime related to the southward subduction of the Mongol-Okhotsk Ocean, and the Jurassic granitoids were generated under a slab rollback setting related to the late stage subduction of the Mongol-Okhotsk Ocean. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文介绍了Duobaoshan Ore领域三叠纪花岗岩的新锆石U-PB Ag和全岩地球化学数据,在东部中央欧洲造山带(Caob)。约会结果表明,Duobaoshan Ote领域的三叠荫花岗岩被送出了CA. 244-223 mA。这些样品是典型的俯冲相关的弧形岩石岩石,其富含大离子型鳞状物(Lille),在高场强元件(HFSES)中耗尽,并且具有相对高的Sr(平均1036ppm)和低Y(平均10ppm )和Yb(平均1ppm)含量,其表现出类似的地球化学性质。样品具有0.70394的幼年全岩平均初始SR-87 / SR-86比率和平均ε(nd)(t),锆石ε(t),以及4.62,10.29的两级HF模型年龄。分别为766 mA。这些地球化学特征揭示了加厚的下地壳源。 Duobaoshan OS领域早期古生代,三叠纪和早期侏罗纪造粒片的综合分析表明,这三个阶段的岩浆广告与少年下欧洲地壳材料的熔化有关。早期古生代是垂直地壳生长的主要时期,在此期间形成了少年较低的欧洲地壳。通过岩浆衍生自岩浆的三叠荫花岗岩通过偏厚的少年下地壳和侏罗纪花岗岩来产生,衍生自分层幼年壳的部分熔化。地质观测和构造环境分析表明,Duobaoshan矿石领域的古亚洲海洋构造制度切换到闭合后中生代的蒙古鄂康海洋。早期的古生代花岗岩形成在与Erguna-xiingan复合块的西北地下古亚洲海洋平板相关的俯冲设定。在与蒙古 - okhotsk海洋的南部俯冲相关的Supra-俯冲延伸区域下形成三叠纪的花岗岩,并且在与蒙古 - okhotsk海洋的后期俯冲相关的平板回滚设置下产生了侏罗纪花岗岩。 (c)2019年Elsevier B.V.保留所有权利。

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