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Geochronology and geochemistry of volcanic rocks from the Jingtan Formation in the eastern Jiangnan orogen, South China: Constraints on petrogenesis and tectonic implications

机译:江南东部井原京潭岩石的火山岩地球化学和地球化学岩土,南方北部地区:对岩石生成的约束和构造含义

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An integrated study of zircon U-Pb geochronology and geochemistry, together with Nd-Hf isotopes, have been carried out on the rhyodacite and rhyolitic tuff of the Jingtan Formation in the eastern part of the Jiangnan orogen. SIMS zircon U-Pb dating of two samples yielded weighted mean Pb-206/U-238 ages of 784 +/- 6 Ma and 788 +/- 6 Ma, respectively. Geochemically, they are peraluminous (A/CNK mostly around 1.2) and are characterized by enrichments in Rb, Th, REEs and HFSEs (e.g. Zr and Y) but depletions in Ba, Sr, P, Eu and Ti. The volcanic rocks show a clear A-type granite geochemical signature with high total alkalis (K2O + Na2O = 5.3-7.64 wt%), FeOt/MgO ratios and low CaO, MgO and TiO2 contents. They have negative whole-rock epsilon(Nd)(t) (-4.2 to -1) and positive zircon epsilon(Hf)(t) (+1.26 to +11.6) values, illustrating decoupled Nd-Hf isotopes which may be genetically related to their petrogenesis process. The positive epsilon(Hf)(t) values and juvenile T-DM1(Hf) (0.89-1.3 Ga) of zircons indicate that the volcanic rocks may have been derived from the partial melting of the Neoproterozoic to late Mesoproterozoic crustal materials. Combined with the occurrence of significant volumes of contemporary bimodal volcanic rocks in eastern section of the Jiangnan orogen, it is inferred that the Jingtan felsic volcanic rocks formed during post-collisional extension shortly after the final amalgamation of Yangtze and Cathaysia blocks. (C) 2017 Elsevier B.V. All rights reserved.
机译:Zircon U-PB地理学和地球化学的综合研究与ND-HF同位素一起进行,已经在江南奥根根东部的静音组形成的晶沸石和菱形凝灰岩上进行。 SIMS锆石U-PB的两个样品的约会,其加权平均PB-206 / U-238岁分别为784 +/- 6 mA和788 +/- 6 mA。地球化学上,它们是灭菌(A / CNK大多约为1.2),其特征在于RB,TH,REES和HFSES(例如Zr和Y)的富集,但在BA,SR,P,EU和Ti中耗尽。火山岩岩石显示出透明的A型花岗岩地球化学签名,具有高总碱(K2O + Na2O = 5.3-7.64wt%),Feot / MgO比率和低CaO,MgO和TiO 2内容物。它们具有负全岩ε(Nd)(t)(t)(t)(-4.2至-1)和阳性锆ε(hf)(t)(+1.26至+11.6)值,说明可转基因相关的结去耦合的Nd-hf同位素他们的培养过程。锆的阳性ε(HF)(T)值和少年T-DM1(HF)(0.89-1.3A GA)表明火山岩可能是源自NeoProterozoic的部分熔化至晚期中间蛋白古代地壳材料。结合江南奥林东部的大量当代双峰火山岩的发生,推断出在长江和长江最终融合后不久在碰撞后延伸期间形成的景潭雀岩岩。 (c)2017 Elsevier B.v.保留所有权利。

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