首页> 外文期刊>地质学报(英文版) >The U-Pb Geochronology and Lu-Hf Isotope Compositions of Detrital Zircons from the Nanhua Group of the Longsheng Region, South China and their Implications for Pan-African Events
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The U-Pb Geochronology and Lu-Hf Isotope Compositions of Detrital Zircons from the Nanhua Group of the Longsheng Region, South China and their Implications for Pan-African Events

机译:来自南华南华南华南华群组的拆除锆石的U-PB地质学和Lu-HF同位素组成及其对泛非事件的影响

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摘要

It is unclear whether the South China blocks have an affinity with continental Gondwana due to a lack of direct Pan-African magmatic and metamorphic features.In this study,we conducted U-Pb geochronological and Lu-Hf isotopic analyses for detrital zircons from a sandstone of the Chang'an Formation of the Nanhua Group in the Longsheng region of northern Guangxi,with the aim of constraining the timing of sedimentation and information as to its source,as well as seeking evidence for Pan-African events in the South China blocks.The results show that the ages of detrital zircons peaked at 654.7±6.2 Ma,773.2±4.1 Ma and 821.9±6.5 Ma,with some at 920–870 Ma;the youngest age indicates the existence of the Pan-African thermal event.The ε_(Hf)(t)and T_(DM2) values demonstrate that the study area has experienced three stages of crustal growth at 3.0–2.4 Ga,2.1–1.5 Ga and 1.3–0.9 Ga.With intensively distributed Neoproterozoic mafic-ultramafic and granitic plutons emplaced at 830–810 Ma along the southwestern section of the Jiangnan Orogenic Belt and positiveεHf(t)values from a large group of zircon grains,it is proposed that the sediments of the Chang'an Formation(of Nanhua Group)were largely sourced from the southeastern margin of the Yangtze block.Comparison with the zircon age spectra of the Cathaysian block shows that about 79%of the Pan-African aged detrital zircon grains that have TDM2=1352–1031 Ma andεHf(t)=3.68–8.79,were sourced from the recycled Grenvillian crust of the Cathaysian block,suggesting that the Cathaysian block had a close connection with Gondwana.

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  • 来源
    《地质学报(英文版)》 |2021年第3期|740-749|共10页
  • 作者单位

    Collaborative Innovation Center for the Exploration of Hidden Nonferrous Metal Deposits and the Development of New Materials in Guangxi & Guangxi Key Laboratory of Hidden Metallic Ore Exploration Guilin University of Technology Guilin Guangxi 541004 China;

    Collaborative Innovation Center for the Exploration of Hidden Nonferrous Metal Deposits and the Development of New Materials in Guangxi & Guangxi Key Laboratory of Hidden Metallic Ore Exploration Guilin University of Technology Guilin Guangxi 541004 China;

    Collaborative Innovation Center for the Exploration of Hidden Nonferrous Metal Deposits and the Development of New Materials in Guangxi & Guangxi Key Laboratory of Hidden Metallic Ore Exploration Guilin University of Technology Guilin Guangxi 541004 China;

    Collaborative Innovation Center for the Exploration of Hidden Nonferrous Metal Deposits and the Development of New Materials in Guangxi & Guangxi Key Laboratory of Hidden Metallic Ore Exploration Guilin University of Technology Guilin Guangxi 541004 China;

    Collaborative Innovation Center for the Exploration of Hidden Nonferrous Metal Deposits and the Development of New Materials in Guangxi & Guangxi Key Laboratory of Hidden Metallic Ore Exploration Guilin University of Technology Guilin Guangxi 541004 China;

    Collaborative Innovation Center for the Exploration of Hidden Nonferrous Metal Deposits and the Development of New Materials in Guangxi & Guangxi Key Laboratory of Hidden Metallic Ore Exploration Guilin University of Technology Guilin Guangxi 541004 China;

    Collaborative Innovation Center for the Exploration of Hidden Nonferrous Metal Deposits and the Development of New Materials in Guangxi & Guangxi Key Laboratory of Hidden Metallic Ore Exploration Guilin University of Technology Guilin Guangxi 541004 China;

    University of Maine at Presque Isle Maine ME 04769 USA;

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  • 入库时间 2022-08-19 04:58:07
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