首页> 外文期刊>Gondwana research: international geoscience journal >Petrogenesis and tectonic evolution of Lianyunshan complex, South China: Insights on Neoproterozoic and late Mesozoic tectonic evolution of the central Jiangnan Orogen
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Petrogenesis and tectonic evolution of Lianyunshan complex, South China: Insights on Neoproterozoic and late Mesozoic tectonic evolution of the central Jiangnan Orogen

机译:华南连云山综合体的成因与构造演化:江南造山带中新元古代和中生代晚期构造演化的认识

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The Yangtze and Cathaysia blocks in South China are separated by the ca. 1500 km long Jiangnan Orogen. The Lianyunshan complex, located in the central segment of Jiangnan Orogen, includes wide exposures of late Mesozoic granites. Here we report geological, geochronological and geochemical data from the Lianyunshan late Mesozoic granites and their Neoproterozoic host rocks belonging to the Lengjiaxi Group. Detrital zircon U-Pb ages reveal a single prominent peak at ca. 840 Ma in the metamorphosed and deformed Lengjiaxi Group samples. Ten of the youngest zircon grains in these rocks have a weighted mean age of 828.8 +/- 7.1Ma, which is tentatively interpreted as the maximumdepositional age of the Lengjiaxi Group. Two stages of late Mesozoic S-type granites are dated at ca. 150 Ma and ca. 140 Ma from the Lianyunshan domain. From early to late, these rocks show decreasing MgO, CaO, Fe2O3T, TiO2 contents and increasing SiO2, K2O, Eu/Eu*, Rb/Sr ratios and differentiation index, suggesting continuous magmatic evolution dominated by fractional crystallization. The epsilon Hf(t) values of zircons with late Mesozoic ages are all negative, with their two-stage model ages mainly ranging from 1.9 to 1.4 Ga, which is significantly different from the model age of the host rocks belonging to the Lengjiaxi Group. These results indicate that the late Mesozoic granites were mainly derived from the partial melting of Paleo-Mesoproterozoic basement rocks that are older than Lengjiaxi Group. Major and trace element features suggest that the protoliths of these early stage granites in Lianyunshan are probably mixed greywacke and shale. The arc-like trace elements signature of all the late Mesozoic granites were possibly inherited through crustal contamination during the magma genesis caused by slab rollback associated with Paleo-Pacific subduction during 150- to 140 Ma beneath the central Jiangnan belt. (C) 2016 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.
机译:华南地区的长江和华夏地块被ca隔开。长1500公里的江南造山带。连云山综合体位于江南造山带的中段,包括大量晚生代花岗岩。在这里,我们报告了来自连云山晚中生代花岗岩及其属于冷家溪组的新元古代宿主岩的地质,地质和地球化学数据。碎屑锆石的U-Pb年龄显示出约一个峰值。变质和变形的冷甲溪群样品中的840 Ma。这些岩石中十个最年轻的锆石晶粒的加权平均年龄为828.8 +/- 7.1Ma,暂时将其解释为冷甲溪族的最大沉积年龄。晚中生代S型花岗岩的两个阶段可追溯到大约1。约150 Ma来自连云山地区的140 Ma。从早到晚,这些岩石显示出MgO,CaO,Fe2O3T,TiO2含量降低,而SiO2,K2O,Eu / Eu *,Rb / Sr比值和分化指数升高,这表明岩浆的连续演化以分步结晶为主。中生代晚期的锆石的εHf(t)值均为负,其两阶段模型年龄主要在1.9至1.4 Ga范围内,这与冷甲溪群的主岩的模型年龄显着不同。这些结果表明,晚中生代花岗岩主要来自早于冷家溪组的古中元古生界基底岩石的部分熔融。主要和微量元素特征表明,连云山这些早期花岗岩的原生岩可能是灰泥瓦克和页岩的混合体。所有晚期中生代花岗岩的弧状痕量元素特征可能是在岩浆成因过程中通过地壳污染而继承的,该岩浆是在江南中部带下150-140 Ma期间古太平洋俯冲作用引起的平板回滚所致。 (C)2016国际冈瓦那研究协会。由Elsevier B.V.发布。保留所有权利。

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