Compositional Diversity of Early Mesozoic Granites in South Qinling: Derivation from Heterogenous Basement Rocks in the Orogenic Belt

Risheng Ye, Weiyong Li, Dongyang Huo, Jingxin Zhao, Xiguang Huang, Jun He, Fukun Chen
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Abstract

Granitic rocks forming in the syn- to post-orogenic stages can trace the compositional and structural complexity of the crust beneath an orogenic belt. The Qinling orogenic belt undertook multiple stages of tectonics and magmatism, resulting in the multifaceted evolution and compositional diversity of the crust. In the present study, the Guangtoushan and Miba plutons in South Qinling were chosen to reveal the crustal heterogeneity in study area via isotopic geochemistry and zircon geochronology. The Guangtoushan pluton was emplaced between ~215 Ma and ~202 Ma and the Miba pluton formed at ~213 Ma, as constrained by zircon U-Pb isotopic dating. Granitic rocks of the Miba pluton are characterized by amphibole bearing and homogeneous composition, with relatively depleted Sr-Nd isotopic compositions (initial 87Sr/86Sr values of 0.7060 to 0.7084 and initial εNd values of −5.4 to −9.5) and high Pb isotopic values. The Guangtoushan pluton contains muscovite and complex inherited zircon grains and has variable Sr-Nd isotopic composition (initial 87Sr/86Sr values of 0.7050 to 0.7091 and initial εNd values of −4.5 to −12.9) and low Pb isotopic values. Felsic magmas of the Guangtoushan pluton should be derived mainly from meta-sedimentary rocks beneath South Qinling, while the Miba pluton originated primarily from partial melting of meta-igneous rocks. The compositional diversity recorded in the Early Mesozoic plutons was caused by the heterogeneous crust, and partial melting was induced by heating of the up-welling asthenosphere in a post-collision setting.
南秦岭早中生代花岗岩成分多样性:造山带异质基底岩石的衍生
在同步成因阶段到后成因阶段形成的花岗岩,可以追溯造山带下地壳成分和构造的复杂性。秦岭造山带经历了多个阶段的构造和岩浆活动,导致了地壳的多元演化和成分多样性。本研究选择了南秦岭的光头山和米坝两个岩体,通过同位素地球化学和锆石地质年代学揭示研究区的地壳异质性。根据锆石U-Pb同位素年代测定,广头山岩块形成于约215Ma至约202Ma之间,米坝岩块形成于约213Ma。米巴岩块的花岗岩石具有含闪石和组成均匀的特征,Sr-Nd同位素组成相对贫化(初始87Sr/86Sr值为0.7060至0.7084,初始εNd值为-5.4至-9.5),Pb同位素值较高。广头山岩浆含有黝帘石和复杂的继承锆石晶粒,具有可变的Sr-Nd同位素组成(初始87Sr/86Sr值为0.7050至0.7091,初始εNd值为-4.5至-12.9)和较低的Pb同位素值。广头山岩柱的长英质岩浆应主要来源于南秦岭下的元沉积岩,而米坝岩柱则主要来源于元成岩的部分熔融。早中生代岩浆岩的成分多样性是由异质地壳造成的,而部分熔融则是在碰撞后的环境中由上涌的星体层加热引起的。
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