首页> 外文期刊>International Journal of Earth Sciences >Petrological, geochemical, isotopic, and geochronological constraints for the Late Devonian–Early Carboniferous magmatism in SW Gondwana (27–32°LS): an example of geodynamic switching
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Petrological, geochemical, isotopic, and geochronological constraints for the Late Devonian–Early Carboniferous magmatism in SW Gondwana (27–32°LS): an example of geodynamic switching

机译:冈瓦纳西南(27-32°LS)晚泥盆世-早石炭纪岩浆作用的岩石学,地球化学,同位素和地球年代学约束:地球动力学转换的一个例子

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We report a study integrating 13 new U-Pb LA-MC-ICP-MS zircon ages and Hf-isotope data from dated magmatic zircons together with complete petrological and whole-rock geochemistry data for the dated granitic rocks. Sample selection was strongly based on knowledge reported in previous investigations. Latest Devonian-Early Carboniferous granite samples were collected along a transect of similar to 900 km, from the inner continental region (present-day Eastern Sierras Pampeanas) to the magmatic arc (now Western Sierras Pampeanas and Frontal Cordillera). Based on these data together with ca. 100 published whole-rock geochemical analyses we conclude that Late Devonian-Early Carboniferous magmatism at this latitude represents continuous activity (ranging from 322 to 379 Ma) on the pre-Andean margin of SW Gondwana, although important whole-rock and isotopic compositional variations occurred through time and space. Combined whole-rock chemistry and isotope data reveal that peraluminous A-type magmatism started in the intracontinental region during the Late Devonian, with subsequent development of synchronous Carboniferous peraluminous and metaluminous A-type magmatism in the retro-arc region and calc-alkaline magmatism in the western paleomargin. We envisage that magmatic evolution was mainly controlled by episodic fluctuations in the angle of subduction of the oceanic plate (between flat-slab and normal subduction), supporting a geodynamic switching model. Subduction fluctuations were relatively fast (ca. 7 Ma) during the Late Devonian and Early Carboniferous, and the complete magmatic switch-off and switch-on process lasted for similar to 57 Ma. Hf T-DM values of zircon (igneous and inherited) from some Carboniferous peraluminous A-type granites in the retro-arc suggest that Gondwana continental lithosphere formed during previous orogenies was partly the source of the Devonian-Carboniferous granitic magmas, thus precluding the generation of the parental magmas from exotic terranes.
机译:我们报告了一项研究,该研究结合了13个新的U-Pb LA-MC-ICP-MS锆石年龄和过时的岩浆锆石中的Hf同位素数据,以及有关过时的花岗岩岩石的完整岩石学和全岩石地球化学数据。样本选择强烈地基于先前调查中报告的知识。从内部大陆地区(今东山脉塞班普拉斯)到岩浆弧(现为西部山脉塞班斯山脉和额地山脉)沿约900 km的样带收集了最新的泥盆纪-早期石炭纪花岗岩样品。基于这些数据以及ca。我们发表了100篇有关全岩石的地球化学分析的结论,我们得出结论,尽管发生了重要的整个岩石和同位素组成变化,但在该纬度的晚泥盆世-早期石炭纪岩浆代表着西南冈瓦纳前安第斯边缘的连续活动(范围从322Ma到379Ma)。穿越时空。结合全岩石化学和同位素数据显示,晚泥盆世期间,陆相A型岩浆活动开始于陆内地区,随后弧后地区出现了同步的石炭纪的铝质和金属质的A型岩浆作用,以及随后的钙碱性岩浆活动。西部古边缘。我们设想岩浆演化主要受海洋板俯冲角(平板和法向俯冲之间)的偶发性波动控制,从而支持了地球动力学转换模型。在泥盆纪晚期和石炭纪早期,俯冲波动相对较快(约7 Ma),整个岩浆关断和接通过程持续了约57 Ma。弧后一些石炭纪的过铝质A型花岗岩的锆石(火成岩和继承岩)的Hf T-DM值表明,在以前的造山过程中形成的冈瓦纳大陆岩石圈部分是泥盆纪-石炭纪花岗岩岩浆的来源,因此排除了这一世代来自异国地形的父母岩浆。

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