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首页> 外文期刊>Geochemistry: Interdisciplinary Journal for Chemical Problems of the Geosciences and Geoecology >Petrogenesis of a late-Variscan rhyodacite at the Ossa Morena-Central Iberian zones boundary, Iberian Massif, Central Portugal: Evidence for the involvement of lithospheric mantle and meta-igneous lower crust
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Petrogenesis of a late-Variscan rhyodacite at the Ossa Morena-Central Iberian zones boundary, Iberian Massif, Central Portugal: Evidence for the involvement of lithospheric mantle and meta-igneous lower crust

机译:葡萄牙中部伊比利亚地块,Ossa Morena-中部伊比利亚地带边界的晚瓦里斯坎流纹岩的成岩作用:岩石圈地幔和下火成岩下地壳参与的证据

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A late-Variscan rhyodacite is exposed at the contact between the Ossa Morena Zone and the Central Iberian Zone of the Iberian Massif, Central Portugal. Dykes of rhyodacite intruded the Serie Negra Unit and the Sardoal Complex that are part of the Cadomian basement. The igneous crystallization age of the rhyodacite (308 +/- 1 Ma) was obtained on igneous monazite by the ID-TIMS U-Pb method. It is broadly coeval with the emplacement of late-Variscan granitoids during the last deformation phase of the Variscan Orogeny (ca. 304-314 Ma) and with the development of the large late-Variscan strike-slip shear zones (ca. 307 Ma). The rhyodacite samples are calc-alkaline, show identical composition and belong to the same magmatic sequence. The rhyodacite isotopic signatures (Sm-Nd and delta O-18) are consistent with depleted-mantle juvenile sources and the contribution of the meta-igneous lower crust. The input of mantle juvenile sources is related to Variscan reactivation of lithospheric fractures. The inherited Neoproterozoic (ca. 619 Ma) and Mesoproterozoic (ca. 1054 Ma) zircon ages, are similar to those of the Central Iberian Zone. This suggests that lower crust of the Central Iberian Zone was involved in the magma generation of the rhyodacite. Coeval late-Variscan magmatic rocks display a larger contribution from ancient crustal components, which may be attributed to the smaller volume and faster cooling rate of the rhyodacite and consequent lower melting of the crust. Mixing of juvenile mantle-derived melts with melts from the lower continental crust was followed by fractional crystallization of garnet and amphibole that remained in the source. Fractional crystallization of plagioclase, biotite, quartz and zircon occurred in shallower magma chambers. Fractional crystallization of zircon was not significant. (C) 2016 Elsevier GmbH. All rights reserved.
机译:在葡萄牙中部伊比利亚地块的Ossa Morena区和伊比利亚中部地区之间的接触下,暴露了一种晚期的瓦里斯坎流纹岩。流纹岩堤坝侵入了属于卡多马地下室的意甲内格拉单位和萨多尔情结。通过ID-TIMS U-Pb方法在独居石火成岩上获得了流纹岩的火成晶年龄(308 +/- 1 Ma)。它与瓦里斯卡造山带的最后变形阶段(大约304-314 Ma)期间晚期瓦里斯卡花岗岩的沉积以及大的晚期瓦里斯卡纳走滑剪切带(大约307 Ma)的发展同时期。 。流纹岩样品是钙碱性的,显示出相同的组成并且属于相同的岩浆序列。流纹岩的同位素特征(Sm-Nd和δO-18)与地幔贫化的幼虫来源以及下火成岩的贡献一致。地幔少年源的输入与岩石圈裂缝的Variscan复活有关。继承的新元古代(大约619 Ma)和中元古代(大约1054 Ma)的锆石年龄,与伊比利亚中部地区相似。这表明,伊比利亚中部地区的下地壳参与了流纹岩的岩浆生成。远古晚期的瓦里斯坎岩浆岩显示出古代地壳成分的贡献较大,这可能是由于流纹岩的体积较小,冷却速度较快以及地壳的熔融度较低所致。将幼年地幔衍生的熔体与下部大陆壳的熔体混合,然后将石榴石和角闪石进行部分结晶,这些结晶会保留在源中。斜长石,黑云母,石英和锆石的部分结晶发生在较浅的岩浆室内。锆石的部分结晶不显着。 (C)2016 Elsevier GmbH。版权所有。

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