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首页> 外文期刊>Journal of Asian earth sciences >Geochronology and geochemistry of Early Cretaceous igneous units from the central Sulu orogenic belt: Evidence for crustal delamination during a shift in the regional tectonic regime
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Geochronology and geochemistry of Early Cretaceous igneous units from the central Sulu orogenic belt: Evidence for crustal delamination during a shift in the regional tectonic regime

机译:苏鲁造山带中部早白垩世火成岩单元的年代学和地球化学:区域构造体制转变期间地壳分层的证据

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Widespread Late Mesozoic igneous events in northern China have been intensively investigated over the past decades and provide evidence for regional lithospheric thinning. The underlying mechanism causing lithospheric thinning remains unclear however. This study reports U-Pb zircon ages, geochemical data and isotopic ratios for Cretaceous igneous units from the central Sulu orogenic belt as it occurs in the Shandong Peninsula. LA-ICP-MS U-Pb analyses of magmatic zircons identified a relatively restricted population of ages ranging from 123 +/- 2 Ma to 120 +/- 2 Ma from four representative samples of igneous units in the study area. Geochemical analysis of the samples revealed LREE and LILE enrichment, HREE depletion, high initial Sr-87/Sr-86 values ranging from 0.7040 to 0.7096, and low negative epsilon(Nd)(t) values from 22.0 to -12.2. The data suggest lamprophyres derived separately from heterogeneous mantle inputs, which experienced crust-mantle interaction, andesitic porphyrites and syenogranites derived from enriched lithospheric mantle and rhyolites derived from partial melting of an ancient crustal component. Assimilation and fractionation processes did not contribute to lamprophyre formation, but did play an important role in generating andesitic porphyrites, syenogranites and rhyolites. The petrogenetic history of these rocks indicates intensive lithospheric thinning of the upper mantle and lower crust beneath the Sulu orogenic belt at 123-120 Ma. Given the timing and regional tectonic framework in which these units formed, thinning was likely caused by an abrupt change in the direction of the subducting Pacific plate. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在过去的几十年中,对中国北部广泛的晚中生代火成岩事件进行了深入研究,并为区域岩石圈变薄提供了证据。然而,导致岩石圈变薄的潜在机理仍不清楚。这项研究报告了山东半岛中部苏禄造山带白垩纪火成岩单元的U-Pb锆石年龄,地球化学数据和同位素比。 LA-ICP-MS对岩浆锆石的U-Pb分析从研究区域的四个火成岩样品样本中确定了相对受限的年龄范围,范围从123 +/- 2 Ma到120 +/- 2 Ma。样品的地球化学分析显示,LREE和LILE富集,HREE耗竭,高Sr-87 / Sr-86初始值介于0.7040至0.7096之间,而负ε(Nd)(t)值介于22.0至-12.2之间。数据表明,煌斑岩分别来自经历了地幔相互作用的非均质地幔输入,来自富集岩石圈地幔的安山斑岩和正花岗岩和来自古代地壳组分部分熔融的流纹岩。同化和分级分离过程不会导致煌斑岩的形成,但是在安山斑岩,堇青石和流纹岩的生成中起着重要作用。这些岩石的岩石成因史表明,苏鲁造山带下方123-120 Ma的上地幔和下地壳岩石圈强烈减薄。考虑到这些单元形成的时间和区域构造框架,减薄很可能是由于俯冲太平洋板块方向的突然变化引起的。 (C)2015 Elsevier Ltd.保留所有权利。

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