首页> 外文期刊>Geodinamica Acta >Peri-Gondwanan Ordovician crustal fragments in the high-grade basement of the Eastern Rhodope Massif, Bulgaria: evidence from U-Pb LA-ICP-MS zircon geochronology and geochemistry
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Peri-Gondwanan Ordovician crustal fragments in the high-grade basement of the Eastern Rhodope Massif, Bulgaria: evidence from U-Pb LA-ICP-MS zircon geochronology and geochemistry

机译:保加利亚东罗多彼州地块的高级地下室中的Peri-Gondwanan奥陶纪地壳碎片:U-Pb LA-ICP-MS锆石的年代学和地球化学证据

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Field, geochemical, and geochronologic data of high-grade basement metamafic and evolved rocks are used to identify the nature and timing of pre-Alpine crustal growth of the Rhodope Massif. These rocks occur intrusive into clastic-carbonate metasedimentary succession. Petrography and mineral chemistry show compositions consistent with Alpine amphibolite-facies metamorphism that obliterated the original igneous textures of the protoliths. Bulk-rock geochemistry identifies low-Ti tholeiitic to calc-alkaline gabbroic-basaltic and plagiogranite precursors, with MORB-IAT supra-subduction zone signature and trace elements comparable to modern back-arc basalts. The U-Pb zircon dating revealed a mean age of 455?Ma for the magmatic crystallization of the protoliths that contain inherited Cambrian (528–534?Ma) zircons. Carboniferous, Jurassic, and Eocene metamorphic events overprinted the Ordovician protoliths. The radiometric results of the metamorphic rocks demonstrate that Ordovician oceanic crust was involved in the build-up of the Rhodope high-grade basement. Dating of Eocene-Oligocene volcanic rocks overlying or cross-cutting the metamorphic rocks supplied Neoproterozoic, Ordovician and Permo-Carboniferous xenocrystic zircons that were sampled en route to the surface from the basement. The volcanic rocks thus confirm sub-regionally present Neoproterozoic and Paleozoic igneous and metamorphic basement. We interpret the origin of the Middle-Late Ordovician oceanic magmatism in a back-arc rift-spreading center propagating along peri-Gondwanan Cadomian basement terrane related to the Rheic Ocean widening. The results highlight the presence of elements of Cadomian northern Gondwana margin in the high-grade basement and record of Rheic Ocean evolution. The eastern Rhodope Massif high-grade basement compared to adjacent terranes with Neoproterozoic and Cambro-Ordovician evolution shares analogous tectono-magmatic record providing a linkage among basement terranes incorporated in the Alpine belt of the north Aegean region.
机译:利用高级地下变质岩和演化岩石的野外,地球化学和地质年代学数据来确定罗多彼山脉的阿尔卑斯前地壳生长的性质和时间。这些岩石侵入到碎屑碳酸盐岩的沉积物中。岩石学和矿物化学表明,其成分与高山闪石岩相变质相符,从而消除了原石的原始火成岩质地。块状岩石地球化学确定了低钛高辉石到钙碱性辉长岩玄武岩和斜长花岗岩的前体,具有MORB-IAT超俯冲带特征和与现代后弧玄武岩相当的微量元素。 U-Pb锆石测年显示原生岩浆岩浆结晶的平均年龄为455?Ma,其中含有继承的寒武纪(528-534?Ma)锆石。石炭纪,侏罗纪和始新世变质事件覆盖了奥陶纪的原石。变质岩的辐射测量结果表明,奥陶纪大洋地壳参与了罗多彼高档地基的形成。覆盖或横切变质岩的始新世-渐新世火山岩的年代提供了新元古代,奥陶纪和二化石炭化的锆石,这些锆石是从地下到地面的。因此,火山岩证实了该地区存在新元古代和古生代的火成岩和变质基底。我们在沿弧形裂谷扩张中心传播的晚奥陶纪洋性岩浆作用的解释,该中心沿着与变质海洋拓宽有关的冈瓦南卡多洋基底基底地层传播。结果突出了在高品位基底中存在卡多北北部冈瓦纳边缘的元素,并记录了流变海洋的演化。与新元古代和坎布罗-奥陶纪演化的相邻地层相比,东罗多彼州地块的高等级基底具有相似的构造-岩浆记录,提供了北爱琴海地区高山带中合并的基底层之间的联系。

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