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Late Carboniferous seismic and volcanic record in the northwestern margin of the Junggar Basin: Implication for the tectonic setting of the West Junggar

机译:Junggar盆地西北边缘的晚期石炭系地震和火山记录:西准噶尔西部构造环境的含义

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The northwestern margin of the Junggar Basin is a transition zone between the Zaire-Hala'alate mountains and the Junggar Basin in West Junggar, which developed a large amount of volcanic rocks in the late Carboniferous. An investigation of the tectonic evolution of this area will be helpful for understanding the accretionary process of West Junggar. Here, we selected well-preserved drill core samples of andesite and andesitic tuff for detailed petrogenesis and geochemical studies, while high-quality seismic and resistivity prospecting cross-sections were also used to reveal the tectonic setting. Zircon U-Pb dating results of three andesite and andesitic tuff samples show that these rocks were erupted at ca. 312 Ma. The results of the geochemical and isotopic analyses of seven samples are characterized by relatively high MgO (1.84-5.52 wt%), Cr (26.19-246.61 ppm), Ni (16.53-82.85 ppm) contents. Ba/La (14.19-218.48) ratios, and high positive epsilon Hf-(t) (+ 4.8 to + 14.2) values, but low TiO2 (0.68-1.25 wt%) contents, FeOT/MgO (1.18-2.81), Sr/Y (5.63-27.40), and Th/Yb (0.19-2.18) ratios, which are similar to the Bieluagaxi sanukitoids of West Junggar. LREEs are enriched in all samples, while Nb and Ta are significantly depleted. All the evidence suggests the volcanics were most likely derived from partial melting of oceanic slab that was contaminated by the overlying mantle wedge during the magma ascent. The seismic and resistivity cross-sections show apparent southeastward-vergent imbricate thrust fault systems, implying northwestward subduction in the late Carboniferous. Together with previous studies and our geochemical and geophysical data, we suggest that the formation of these late Carboniferous volcanic rocks is probably related to a northwestward ridge subduction process. (C) 2019 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.
机译:Junggar Bourin的西北边缘是扎伊尔 - 哈拉阿拉特山脉和西准噶尔的Junggar盆地之间的过渡带,在后期石炭系中开发了大量的火山岩。对这一领域的构造演变的调查将有助于理解西准噶尔的增持过程。在这里,我们选择了保存的钻孔核心样本的安塞特和安德塞蒂凝灰岩,以进行详细的培养和地球化学研究,而高质量的地震和电阻率展望横截面也用于揭示构造环境。锆科U-PB三个安捷地和安德塞蒂凝灰岩样本的约会结果表明,这些岩石被爆发在CA. 312 ma。七个样品的地球化学和同位素分析的结果特征在于相对高的MgO(1.84-5.52wt%),Cr(26.19-246.61ppm),Ni(16.53-82.85ppm)含量。 Ba / La(14.19-218.48)比率,高阳性ε(t)(+ 4.8至+ 14.2)值,但低TiO2(0.68-1.25wt%)含量,Feot / MgO(1.18-2.81),SR / y(5.63-27.40)和Th / Yb(0.19-2.18)比率类似于西准噶尔的Bieluagaxi Sanukitoids。莱斯斯在所有样品中富集,而Nb和Ta显着耗尽。所有证据表明,火山岩最有可能从岩浆上升期间被覆盖的地幔楔污染的海洋板块的部分熔化。地震和电阻率横截面显示出明显的东南部玻璃玻璃推力故障系统,暗示了晚石炭系中的西北部俯冲。我们与先前的研究和地球物学和地球物理数据一起建议,这些晚石炭系火山岩的形成可能与西北岭俯冲过程有关。 (c)2019年国际巩膜研究协会。 elsevier b.v出版。保留所有权利。

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