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Geochronology and petrogenesis of granitoids and associated mafic enclaves from Xiate in Chinese Southwest Tianshan: Implications for early Paleozoic tectonic evolution

机译:中国西南天山县夏特花岗岩类及相关镁铁质飞地的年代学和岩石成因:对古生代早期构造演化的启示

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Mineral compositions, in-situ zircon U-Pb and Hf isotopes, and whole-rock major-trace elements and Sr-Nd isotopes are reported for the host granitoids and associated mafic microgranular enclaves (MMEs) in Dongdeguli valley, and the Changawuzi mylonitic pluton, in the Southwest Tianshan, NW China. The Dongdeguli host granitoids have LA-ICP-MS zircon U-Pb ages of 446 +/- 2 Ma and 443 +/- 3 Ma, which are comparable with those (436 +/- 6 Ma and 446 +/- 23 Ma) of their enclaves. Both the host granitoids and MMEs have relatively high initial Sr-87/Sr-86 ratios and negative epsilon(Nd)(t) values. The MMEs are enriched in large ion lithophile and light rare earth elements but depleted in high field strength elements, and they are interpreted as melts derived from the fluids/melts metasomatized mantle wedge. The emplacement of mafic arc magma is inferred to cause the partial melting of ancient crust of Yili-Central Tianshan Block, which formed the granitic magma. Magma mixing model is proposed for the origin of the host granitoids and their mafic enclaves in the Dongdeguli valley. The Changawuzi mylonitic pluton has a SHRIMP zircon U-Pb age of 453 +/- 4 Ma. It has relatively low SiO2 content, high MgO content, and negative whole-rock epsilon(Nd)(t) values and zircon epsilon(Hf)(t) values, with two-stage Nd model ages of 1.67-1.7 Ga and two-stage Hf model ages of 1635-1760 Ma, respectively. These results indicate that the Changawuzi mylonitic pluton was derived from partial melting of Paleoproterozoic crustal rocks, with involvement of some mantle-derived magma. The Dongdeguli granitoids,and associated MMEs, and the Changawuzi mylonitic pluton, were formed by the northward subduction of paleo-South Tianshan oceanic crust in the Late Ordovician-Early Silurian period. (c) 2015 Elsevier Ltd. All rights reserved.
机译:据报道,东德格德利河谷和昌古孜子带状p状岩体的宿主花岗岩和相关的镁铁质微颗粒飞地(MME)的矿物成分,原位锆石U-Pb和Hf同位素以及全岩主痕量元素和Sr-Nd同位素。 ,位于中国西北部西南天山。 Dongdeguli主体花岗岩的LA-ICP-MS锆石U-Pb年龄为446 +/- 2 Ma和443 +/- 3 Ma,与(436 +/- 6 Ma和446 +/- 23 Ma)相当他们的飞地。宿主类固醇和MME都具有相对较高的初始Sr-87 / Sr-86比和负ε(Nd)(t)值。 MME富含大型离子亲石剂和轻稀土元素,但富含高场强元素,它们被解释为源自流体/熔体交代地幔楔的熔体。据推测,镁铁质弧形岩浆的侵入引起伊犁-中天山地块古地壳的部分熔融,形成了花岗岩岩浆。提出了岩浆混合模型,以作为东德格里谷地宿主花岗岩及其镁铁质飞地的起源。 Changawuzi lon质性硅质岩的SHRIMP锆石U-Pb年龄为453 +/- 4 Ma。它具有相对较低的SiO2含量,高的MgO含量,负的全岩ε(nd)(t)值和锆石ε(Hf)(t)值为负,两阶段Nd模型年龄为1.67-1.7 Ga,两阶段阶段Hf模型年龄分别为1635-1760 Ma。这些结果表明,Changawuzi的镍铁质岩体是由古元古代地壳岩石的部分熔融而来的,其中涉及到一些地幔衍生的岩浆。东德古里花岗岩体和相关的MMEs,以及长安子仔my状岩体,是由奥陶纪晚期志留纪晚期古南天山洋壳向北俯冲形成的。 (c)2015 Elsevier Ltd.保留所有权利。

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