首页> 外文OA文献 >Combined U-Pb SHRIMP and Hf isotope study of the Late Paleozoic Yaminué Complex, Río Negro province, Argentina. Implications for the origin and evolution of the Patagonia composite terrane
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Combined U-Pb SHRIMP and Hf isotope study of the Late Paleozoic Yaminué Complex, Río Negro province, Argentina. Implications for the origin and evolution of the Patagonia composite terrane

机译:阿根廷里奥内格罗省晚古生代Yaminué复杂地带的U-Pb SHRIMP和Hf同位素联合研究。对巴塔哥尼亚复合地层的起源和演化的启示

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摘要

We have carried out zircon U-Pb SHRIMP dating and Hf isotope determinations on a biotite paraschist and on a tonalitic orthogneiss of the Yaminué Complex, and re-evaluate this complex in the broader context of the tectonic evolution of the Patagonia composite terrane. In the metasedimentary unit (msuYC), the youngest detrital zircon dated at 318 ± 5 Ma (Mississippian/Pennsylvanian boundary) indicates a Pennsylvanian (or younger) depositional age. The three main age populations peak at 474, 454 and 374 Ma. Preliminary Hf isotope data for two detrital zircons (447 and 655 Ma) yielded ε(Hf) values of −0.32 and 0.48, indicating that their primary sources contained small amounts of recycled crustal components (of Calymmian age; TDM 1.56 Ga). Zircons from the orthogneiss (miuYC; intrusive into msuYC) show a crystallization age of 261.3 ± 2.7 Ma (Capitanian; late middle Permian) which is broadly coeval with deformation, and Neoarchean–Paleoproterozoic inheritance. Meaningful core-rim relationship between Neoarchean zircon cores and late Permian rims is well defined, indicating the occurrence of Archean crust in this sector of Patagonia. Hf TDM of Permian zircons is mainly Meso-Paleoarchean (2.97–3.35 Ga), with highly negative ε(Hf) values (ca. −33). Hf TDM of inherited Neoarchean zircon cores is also Meso-Paleoarchean (3.14–3.45 Ga) but more juvenile (ε(Hf) = −0.3). Hf isotopes reinforce the presence of unexposed ancient crust in this area. Combining geological and isotope data, as well as geophysical models, we identify the Yaminué Complex within the La Esperanza-Yaminué crustal block flanked by two other, distinct crustal blocks: the Eastern block which forms part of the Patagonia terrane sensu stricto, located in the eastern Patagonian region, and the Western block forming part of the Southern Patagonia terrane. Their origins and timing of amalgamation to form the Patagonia composite terrane are also discussed.
机译:我们已经在Yaminué复杂地带的黑云母飞石和准斜长统片上进行了锆石U-Pb SHRIMP测年和Hf同位素测定,并在巴塔哥尼亚复合地层的构造演化的更广泛背景下重新评估了该复杂地带。在变质沉积单元(msuYC)中,最年轻的碎屑锆石日期为318±5 Ma(密西西比州/宾夕法尼亚州边界),表明宾夕法尼亚州(或更年轻)的沉积年龄。三个主要年龄种群的峰值分别为474 Ma,454 Ma和374 Ma。两个碎屑锆石(447和655 Ma)的初步Hf同位素数据得出的ε(Hf)值为-0.32和0.48,表明它们的主要来源包含少量的再循环地壳成分(Calymmian年龄; TDM 1.56 Ga)。斜生锆石(miuYC;侵入msuYC)的锆石显示出261.3±2.7 Ma(卡皮塔尼;中二叠世晚期)的结晶年龄,该年龄与变形和新古宙-古古生代遗传大致相同。新古纪锆石岩心和晚二叠世岩心之间有意义的岩心-岩心关系被很好地定义,表明在巴塔哥尼亚的这一区域中发生了太古岩壳。二叠纪锆石的Hf TDM主要为中古古宙(2.97–3.35 Ga),ε(Hf)值极为负(约-33)。继承的新古宙锆石岩心的Hf TDM也是Meso-Paleoarchean(3.14-3.45 Ga),但是更幼稚(ε(Hf)= -0.3)。 f同位素增强了该地区未暴露的古代地壳的存在。结合地质和同位素数据以及地球物理模型,我们确定了LaEsperanza-Yaminué地块内的Yaminué复合体,其两侧是另外两个截然不同的地块:东部地块,它是巴塔哥尼亚地层中的部分地层,位于巴塔哥尼亚东部地区,而西部街区构成了南巴塔哥尼亚地区的一部分。还讨论了它们的起源和合并形成巴塔哥尼亚复合地层的时机。

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