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Petrogenesis of Early Cretaceous silicic volcanism in SE Uruguay: The role of mantle and crustal sources

机译:乌拉圭东南部早白垩世硅质火山岩的成岩作用:地幔和地壳源的作用

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Early Cretaceous (similar to 129 Ma) silicic rocks crop out in SE Uruguay between the Laguna Merin and Santa Lucia basins in the Lascano, Sierra Sao Miguel. Salamanca and Minas areas They are mostly rhyolites with minor quartz-trachytes and are nearly contemporaneous with the Parana-Etendeka igneous province and with the first stages of South Atlantic Ocean opening A strong geochemical variability (particularly evident from Rb/Nb, Nb/Y trace element ratios) and a wide range of Sr-Nd isotopic ratios (Nd-143/Nd-144((129)) = 0.51178-0.51209, Sr-87/Sr-86((129)) = 0.70840-0.72417) characterize these rocks Geochemistry allows to distiniguish two compositional groups, corresponding to the north-eastern (Lascano and Sierra Sao Miguel, emplaced on the Neo-Proterozoic southern sector of the Dom Feliciano mobile belt) and south-eastern localities (Salamanca, Minas, emplace on the much older (Archean) Nico Perez teriane or on the boundary between the Dom Feliciano and Nico Perez termites) These compositional differences between the two groups are explained by variable mantle source and crust contributions. The origin of the silicic magmas is best explained by complex processes involving assimilation and fractional crystallization and mixing of a basaltic magma with upper crustal lithologies, for Lascano and Sierra Sao Miguel rhyolites. In the Salamanea and Minas rocks genesis, a stronger contribution from lower crust is indicated.
机译:在塞拉圣米格尔山脉拉斯卡诺的拉古纳梅林盆地和圣卢西亚盆地之间的乌拉圭东南部,出现了早白垩纪(约129 Ma)硅质岩。萨拉曼卡和米纳斯地区它们主要是流纹岩,带有细小的石英摆线,与巴拉那-埃滕德卡火成岩省以及南大西洋第一阶段的开放几乎同时期。元素比率)和广泛的Sr-Nd同位素比率(Nd-143 / Nd-144((129))= 0.51178-0.51209,Sr-87 / Sr-86((129))= 0.70840-0.72417)表征了这些岩石地球化学可以区分两个成分组,分别对应于东北(Lascano和Sierra Sao Miguel,位于Dom Feliciano移动带的新元古代南部)和东南部地区(萨拉曼卡,米纳斯, (Archean)Nico Perez白蚁或在Dom Feliciano和Nico Perez白蚁之间的边界处)两组之间的这些成分差异可以通过地幔来源和地壳贡献的变化来解释。硅质岩浆的起源可以用复杂的过程来最好地解释,这些过程包括对Lascano和Sierra Sao Miguel流纹岩的玄武岩浆同化和分步结晶,以及上地壳岩性的混合。在萨拉马尼(Salamanea)和米纳斯(Minas)岩石成因中,表明下地壳的贡献更大。

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