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首页> 外文期刊>Geoscience frontiers >Tectono-magmatic evolution of Tethyan oceanic lithosphere in supra subduction zone fore arc regime: Geochemical fingerprints from crust-mantle sections of Naga Hills Ophiolite
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Tectono-magmatic evolution of Tethyan oceanic lithosphere in supra subduction zone fore arc regime: Geochemical fingerprints from crust-mantle sections of Naga Hills Ophiolite

机译:八岩海洋岩石岩石郊区前弧制度的构造 - 岩石岩石岩石岩石:纳卡山甲硫酸根壳岩石区的地球化学指纹

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The Naga Hills Ophiolite (NHO) belt in the Indo-Myanmar range (IMR) represents a segment of Tethyan oceanic crust and upper mantle that was involved in an eastward convergence and collision of the Indian Plate with the Burmese Plate during the Late Cretaceous-Eocene. Here, we present a detailed petrological and geochemical account for the mantle and crustal sections of NHO, northeastern India to address (i) the mantle processes and tectonic regimes involved in their genesis and (ii) their coherence in terms of the thermo-tectonic evolution of Tethyan oceanic crust and upper mantle. The NHO suite comprises well preserved crustal and mantle sections discretely exposed at Moki, Ziphu, Molen, Washelo and Lacham areas. The ultramafic-mafic lithologies of NHO are mineralogically composed of variable proportions of olivine, orthopyroxene, clinopyroxene and plagioclase. The primary igneous textures for the mantle peridotites have been overprinted by extensive serpentinisation whereas the crustal section rocks reflect crystal cumulation in a magma chamber. Chondrite normalised REE profiles for the cumulate peridotite-olivine gabbro-gabbro assemblage constituting the crustal section of NHO show flat to depleted LREE patterns consistent with their generation from depleted MORB-type precursor melt in an extensional tectonic setting, while the mantle peridotites depict U-shaped REE patterns marked by relative enrichment of LREE and HREE over MREE. These features collectively imply a dual role of depleted MORB-type and enriched arc-type mantle components for their genesis with imprints of melt-rock and fluid-rock interactions. Tectonically, studied lithologies from NHO correspond to a boninitic to slab-proximal Island Arc Tholeiite affinity thereby conforming to an intraoceanic supra subduction zone (SSZ) fore-arc regime coherent with the subduction initiation process. The geochemical attributes for the crustal and mantle sections of NHO as mirrored by Zr/Hf, Zr/Sm, Nb/Ta, Zr/Nb, Nb/U, Ba/Nb, Ba/Th, Ba/La and Nd/Hf ratios propound a two-stage petrogenetic process: (i) a depleted fore arc basalt (FAB) type tholeiitic melt parental to the crustal lithologies was extracted from the upwelling asthenospheric mantle at SSZ fore-arc extensional regime thereby rendering a refractory residual upper mantle; (ii) the crust and upper mantle of the SSZ fore arc were progressively refertilised by boninitic melts generated in response to subduction initiation and slab-dehydration. The vestiges of Tethyan oceanic lithosphere preserved in NHO represent an accreted intra-oceanic fore arc crust and upper mantle section which records a transitional geodynamic evolution in a SSZ regime marked by subduction initiation, fore arc extension and arc-continent accretion.
机译:Naga Hills Ophiolite(NHO)在Indo-Myanmar系列(IMR)中介绍了Tethyan海洋地壳和上部地幔的一段,参与印度板块的东部收敛和碰撞,在晚餐 - 何人群岛。在这里,我们为NHO,印度东北部的地幔和地壳部分提供了详细的岩石和地球化学账户,以解决(i)地幔进程和在其成因中参与的地幔过程和构造制度以及其在热构造演进方面的一致性Tethyan Oceanic Craul和上部地幔。 NHO套房包括在Moki,Ziphu,Molen,Washelo和Lacham地区离散地暴露的保存完好的地壳和地幔部分。 NHO的Ultramafic-MAFIC岩性是由可变比例的橄榄石,正交,临床和Plagioclase组成的矿物学。地幔偏见的主要成果纹理被广泛的蛇形化叠印,而地壳截面岩石反映了岩浆室中的晶体累积。 Chondrite标准化的REE型材用于CUHING eriDoTite-Olivine Gabbro-Gabbro组成,构成NHO展示的地壳部分,呈耗尽的LREE模式与它们在延伸构造环境中从耗尽的MARB型前体熔体一致,而Mantle PeriDoTes描绘了U-以麦克群的相对富集的富集而标志着的形状的REE模式。这些特征集体暗示了耗尽的Morb型和富集的弧形地幔组分的双重作用,用于其具有熔体岩石和流体岩相互作用的印记。在构造上,研究了NHO的岩性对应于BONINITION至SLAB-近端岛ARC Tholeiite亲和力,从而符合眶内俯冲区(SSZ)前弧体制与俯冲开始过程相干。由Zr / HF,Zr / SM,Nb / Ta,Zr / Nb,Nb / U,Ba / Nb,Ba / th,Ba / La和Nd / Hf比镜像的NHO的地壳和地幔部分的地球化学属性取出两级化学过程:(i)从SSZ前弧扩展状态下的升高的哮喘型垫片中提取出壳质岩性的耗尽弧玄武岩(Fab)型烟型熔融熔体父母,从而使耐火残留的上部垫片呈现出耐火性残留的上部罩; (ii)SSZ前弧的外壳和上部地幔通过响应俯冲引发和粘液脱水而产生的Boninitic Metts逐渐被解放出来。在NHO中保存的Tethyan海洋岩石圈的痕迹代表了一种凸起的内部射压地壳和上部地幔部分,其在由俯冲开始,弧形延伸和弧形弧形凸起标记的SSZ政权中记录过渡的地球动力学演变。

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