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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Geochemistry and zircon U-Pb geochronology of the oxidaban intrusive complex: Implication for Paleozoic tectonic evolution of the South Tianshan Orogenic Belt, China
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Geochemistry and zircon U-Pb geochronology of the oxidaban intrusive complex: Implication for Paleozoic tectonic evolution of the South Tianshan Orogenic Belt, China

机译:奥西达班侵扰复杂的地球化学和锆石U-PB地理学:南天山造山区古生代构造演化的含义

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摘要

The South Tianshan Orogenic Belt (STOB) occupies the southwestern margin of the Central Asian Orogenic Belt (CAOB), and is the key region to understanding the Paleozoic evolution of the southern part of the Palo-Asian Ocean. Here we present an integrated study of zircon U-Pb ages, whole-rock major and trace elements and Sr-Nd isotopes on Silurian and Late Carboniferous intermediate-felsic intrusions exposed in the Oxidaban area located in the South Tianshan region in Xinjiang, NW China. The Silurian intrusion is composed of quartz diorite, granodiorite and monzogranite, whereas the Late Carboniferous rocks include granite porphyry and granite porphyry enclaves. LA-ICP-MS zircon U-Pb dating yields ages of 426.8 +/- 4 Ma for quartz diorite and 424.5 +/- 4 Ma for monzogranite, respectively. The quartz diorite shows middle-K calcic and metaluminous affinity, and the granodiorite exhibits similar features, but peraluminous. They display enrichment in large-ion lithophile elements (LILEs) and depletion of high field strength elements (HFSEs) together with negative Eu anomalies, broadly comparable with typical arc-type rocks. They have similar Sr-Nd isotopic compositions, with a narrow range in (Sr-87/Sr-86); of 0.70578 to 0.70644 and epsilon(Nd) (t) of -0.95 to -2.16. Based on geochemical and isotopic characteristics, we infer that the granodiorite is produced by fractional crystallization of quartz diorite rocks, which were dominantly produced by partial melting of medium to high-K basaltic protoliths. Besides, the monzogranite also exhibits arc-type geochemical signatures, which we correlate to partial melting of middle-lower juvenile crust and subsequent contamination by ancient crust during ascent and emplacement. Zircon LA-ICP-MS U-Pb analyses yielded crystallization ages of 300.4 +/- 1.5 Ma for the granite porphyry and 304.8 +/- 2.3 Ma for the granite porphyry enclave. These rocks are dominantly shoshonite and peraluminous, and are likely derived from partial melting of the greywacke mixed with minor pelitic components. The low Al2O3/TiO2 (100) ratios suggest a high temperature condition, which may be attributed to heat input from underplated mantle-derived magmas in the post-collision extension setting. Base on these scenarios, we propose that the bi-directional subduction of the South Tianshan Ocean occurred during the Early Paleozoic and the subduction polarity changed to northward during Middle Devonian, followed by the collision between Yili-Central Tianshan Block and Tarim Craton in the late Carboniferous. (C) 2018 Elsevier B.V. All rights reserved.
机译:南天山造山带(Stob)占据了中亚造山带(Caob)的西南部边缘,是理解帕洛亚南部南部的古生代演变的关键区域。在这里,我们展示了锆石U-PB年龄,全岩石型和微量元素和SR-ND同位素的综合研究,南天山地区南天山地区暴露的硅藻土和晚期石炭系中间肠梗出境。 Silurian侵入由石英二霰氏菌,Granodiorite和Monzogranite组成,而晚期的石炭岩石包括花岗岩斑岩和花岗岩斑岩。 La-ICP-MS Zircon U-PB分别为426.8 +/- 4 mA的226.8 +/- 4 mA,分别为Monzogranite 424.5 +/- 4 mA。石英迪氏岩显示型钙钙和金属化亲和力,Granodiorite表现出类似的特征,但灭菌。它们在大离子钢管元件(LILE)中展示富集,以及高场强元件(HFSES)的耗尽,与负欧盟异常一起,与典型的弧形岩石广泛相当。它们具有相似的SR-ND同位素组合物,窄范围(SR-87 / SR-86); 0.70578至0.70644和ε(nd)(t)的-0.95至-2.16。基于地球化学和同位素特性,我们推断Granodiorite是通过石英二流岩岩的分数结晶产生的,这通过培养基的部分熔化至高K玄武岩促酚,以级别熔化。此外,蒙扎石还表现出弧型地球化学签名,我们与中下少年地壳的部分熔化以及随后的古地壳在上升和施加期间的污染。锆石La-ICP-MS U-PB分析产生300.4 +/- 1.5 mA的结晶年龄,适用于花岗岩斑岩的花岗岩斑岩的304.8 +/- 2.3 mA。这些岩石是仿形性舒蒙特和灭菌的,并且可能从与次要鹈鹕组分混合的灰度的部分熔化。低Al 2 O 3 / TiO2(< 100)比率表明了高温条件,其可归因于碰撞后扩展设置中的底板的地幔衍生的磁带的热量。基于这些情景,我们建议在古生代早期古生代和俯冲极性发生在中部侦探期间发生的双向俯冲,随后是伊利 - 中央山区的碰撞和塔里木·克拉顿迟到石炭瑞。 (c)2018 Elsevier B.v.保留所有权利。

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