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首页> 外文期刊>Contributions to Mineralogy and Petrology >Intrusive rocks in the ophiolitic melange of Crete - Witnesses to a Late Cretaceous thermal event of enigmatic geological position
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Intrusive rocks in the ophiolitic melange of Crete - Witnesses to a Late Cretaceous thermal event of enigmatic geological position

机译:克里特蛇绿混杂岩中的侵入岩-目睹神秘地质位置的晚白垩世热事件。

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The ophiolitic melange in the uppermost tee-tonic unit of the Cretan nappe pile contains crystalline slices which consist of a low-pressure/high-temperature metamorphic sequence and synmetamorphic intrusions, ranging in composition from diorite to granite. The plutonic rocks conform to two different igneous suites, dominated by diorites in eastern, and granites in central Crete, displaying I-type and A-type characters, respectively. Some of the granites from central Crete are classified as transitional 1/5-tyfle. They are closely associated with migmatitic paragneisses. Based on major and trace element, REF, Sr- and Nd-isotope geochemistry, the mafic members of both suites are derived from a depleted mantle source. The higher concentrations of P and Ti in the mafic members of the igneous suite in central Crete and the deviant trend of the whole suite may be explained by a different mantle source or a lower degree of partial melting. In both suites, magmatic evolution was governed by fractional crystallization of amphibole/clinopyroxene, plagioclase and minor phases. In addition, mixing or mingling of compositionally different magmas is indicated for the intrusive suite of eastern Crete whereas in central Crete the magma composition was at least partially modified through assimilation of (meta) pelites. The geochemical results suggest that the plutonic rocks formed in a supra-subduction zone setting. However, a formation during continental lithospheric extension cannot be ruled out. Published and new Rb-Sr and K-Ar dates on amphiboles and biotites from intrusive rocks and their metamorphic country rocks show that the peak of the low-P/ high-T metamorphism and the intrusion of the two igneous suites testify to the same thermal event of Late Cretaceous age. A similar Late Cretaceous association of metamorphic and plutonic rocks has been described from the uppermost tectonic unit in the Attic-Cycladic Crystalline Complex. Together with the Cretan occurrences, they form a small sector radiating SSW along a distance of 300 km, across the general trend of the tectonic zones in the Hellenic orogen. This N-S alignment is regarded as a primary feature which may delineate the frontier zone between the Hellenides and the Taurides. The real paleogeographic position and geodynamic significance of the Late Cretaceous low-pressure/high-temperature belt, however, remains enigmatic.
机译:Cretan尿布桩的最高三通带单元中的脂滑混杂岩包含晶体切片,该晶体切片由低压/高温变质层序和同变变质侵入体组成,成分从闪长岩到花岗岩。古生岩符合两个不同的火成岩组,东部为闪长岩,在克里特岛中部为花岗岩,分别表现出I型和A型特征。克里特岛中部的某些花岗岩被归类为过渡1/5砂岩。它们与巨大的帕拉尼索斯病密切相关。基于主要和微量元素,REF,Sr和Nd同位素地球化学,这两个组的镁铁质成员都来自贫化地幔源。克里特岛中部火成岩组的镁铁质岩体中较高的P和Ti浓度以及整个套件的异常趋势可能是由不同的幔源或较低程度的部分熔融所解释的。在这两个套件中,岩浆的演化都是由闪石/斜生辉石,斜长石和次生相的部分结晶控制的。另外,克里特东部的侵入性岩浆表明混合或混合了成分不同的岩浆,而在克里特岛中部,岩浆成分至少是通过(元)白云岩的同化作用而改变的。地球化学结果表明,在上俯冲带中形成了深成岩。但是,不能排除大陆岩石圈扩展期间的地层。侵入岩及其变质的乡村岩石的闪石和黑云母上的已发布和新的Rb-Sr和K-Ar数据表明,低P /高T变质的峰值以及两个火成岩的侵入证明了相同的热力。白垩纪晚期事件。从阁楼-基克拉迪结晶复合体的最上层构造单元中,已经描述了类似的晚白垩纪变质岩和古生界岩石组合。它们与克里特岛事件一起,沿着希腊造山带构造带的总体趋势,形成了一个沿300 km的距离向南向辐射的小扇区。这种N-S对准被认为是主要特征,可以勾勒出海伦尼德斯和陶里德斯之间的边界区域。然而,白垩纪晚期低压/高温带的真实古地理位置和地球动力学意义仍然是个谜。

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