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首页> 外文期刊>Journal of South American earth sciences >Crustal segments in the North Patagonian Massif, Patagonia: An integrated perspective based on Sm-Nd isotope systematics
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Crustal segments in the North Patagonian Massif, Patagonia: An integrated perspective based on Sm-Nd isotope systematics

机译:巴塔哥尼亚北部巴塔哥尼亚地块的地壳片段:基于Sm-Nd同位素系统学的综合视角

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New insights on the Paleozoic evolution of the continental crust in the North Patagonian Massif are presented based on the analysis of Sm-Nd systematics. New evidence is presented to constrain tectonic models for the origin of Patagonia and its relations with the South American crustal blocks. Geologic, isotopic and tectonic characterization of the North Patagonian Massif and comparison of the Nd parameters lead us to conclude that: (1) The North Patagonian Massif is a crustal block with bulk crustal average ages between 2.1 and 1.6 Ga T_(Dm) (Nd) and (2) At least three metamorphic episodes could be identified in the Paleozoic rocks of the North Patagonian Massif. In the northeastern corner, Famatinian metamorphism is widely identified. However field and petrographic evidence indicate a Middle to Late Cambrian metamorphism pre-dating the emplacement of the ca. 475 Ma granitoids. In the southwestern area, are apparent 425-420 Ma (?) and 380-360 Ma metamorphic peaks. The latter episode might have resulted from the collision of the Antonia terrane; and (3) Early Paleozoic magmatism in the northeastern area is coeval with the Famatinian arc. Nd isotopic compositions reveal that Ordovician magmatism was associated with attenuated crust. On the southwestern border, the first magmatic recycling record is Devonian. Nd data shows a step by step melting of different levels of the continental crust in the Late Palaeozoic. Between 330 and 295 Ma magmatism was likely the product of a crustal source with an average 1.5 Ga T_(DM) (Nd). Widespread magmatism represented by the 295-260 Ma granitoids involved a lower crustal mafic source, and continued with massive shallower-acid plutono volcanic complexes which might have recycled an upper crustal segment of the Proterozoic continental basement, resulting in a more felsic crust until the Triassic. (4) Sm-Nd parameters and detrital zircon age patterns of Early Paleozoic (meta)-sedimentary rocks from the North Patagonian Massif and those from the neighboring blocks, suggest crustal continuity between Eastern Sierras Pampeanas, southern Arequipa-Antofalla and the northeastern sector of the North Patagonian Massif by the Early Paleozoic. This evidence suggests that, at least, this corner of the North Patagonian Massif is not allochthonous to Gondwana. A Late Paleozoic frontal collision with the southwestern margin of Gondwana can be reconcilied in a para-autochthonous model including a rifting event from a similar or neighbouring position to its post-collision location. Possible Proterozoic or Early Paleozoic connections of the NPM with the Kalahari craton or the western Antartic blocks should be investigated.
机译:基于对Sm-Nd系统学的分析,提出了北巴塔哥尼亚地块大陆壳古生代演化的新见解。为限制巴塔哥尼亚的起源及其与南美地壳块的关系的构造模型提供了新的证据。北巴塔哥尼亚地块的地质,同位素和构造特征以及Nd参数的比较使我们得出以下结论:(1)北巴塔哥尼亚地块是一块地壳,其平均地壳年龄在2.1至1.6 Ga T_(Dm)(Nd )和(2)在北巴塔哥尼亚地块的古生代岩石中至少可以识别出三个变质事件。在东北角,广泛地识别了法马汀变质。然而,野外和岩相证据表明,早于ca的位居中到晚寒武纪变质。 475麻粒。在西南地区,明显有425-420 Ma(?)和380-360 Ma的变质峰。后面的事件可能是由于Antonia地形的碰撞造成的; (3)东北地区早古生代岩浆作用与法马汀弧系同时期。钕同位素组成表明奥陶纪岩浆作用与地壳衰减有关。在西南边界,最早的岩浆回收记录是泥盆纪。 Nd数据显示了古生代晚期不同级别的大陆壳的逐步熔化。在330至295 Ma之间,岩浆可能是地壳源平均1.5 Ga T_(DM)(Nd)的产物。以295-260 Ma花岗岩为代表的广泛岩浆作用涉及下地壳镁铁质源,并继续伴有大量浅酸性的Plutono火山复合体,这些火山复合体可能回收了元古代大陆基底的上地壳片段,导致了三叠纪之前的地壳较硬。 。 (4)来自北巴塔哥尼亚地块和邻近地块的早古生代(元)沉积岩的Sm-Nd参数和碎屑锆石年龄模式表明东部山脉Pampeanas,南部Arequipa-Antofalla和东北部的地壳之间具有地壳连续性古生代早期的北巴塔哥尼亚地块。该证据表明,至少北巴塔哥尼亚地块的这个角与冈瓦纳不是异源的。与冈瓦纳西南缘的晚古生代正面碰撞可以在准自生模型中进行调和,包括从相似或邻近位置到其碰撞后位置的裂谷事件。 NPM与卡拉哈里克拉通或南极西部地块可能的元古代或​​早古生界联系应进行调查。

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