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首页> 外文期刊>Swiss Journal of Geosciences >Laser ablation U/Pb age patterns of detrital zircons in the Schlieren Flysch (Central Switzerland): new evidence on the detrital sources
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Laser ablation U/Pb age patterns of detrital zircons in the Schlieren Flysch (Central Switzerland): new evidence on the detrital sources

机译:Schlieren Flysch(瑞士中部)碎屑锆石的激光烧蚀U / Pb年龄模式:碎屑源的新证据

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摘要

The palaeogeographic attribution of the Schlieren Flysch and its counterparts in the Gurnigel Nappe is still a matter of debate. These Late Alpine deep-sea trench deposits show a variable tectonic thrust relationship with other nappes inferring either an Ultrahelvetic or South Penninic origin of the elongated trench basin. An improved knowledge of the supplying source terranes of the Schlieren Flysch basin may add to the palaeogeographic ascription. Detrital zircons from seven representative samples have been dated by laser ablation ICP-MS analysis methods. The obtained age patterns are compared with standard provenance analysis methods including modal grain and heavy mineral statistics of the sandstones. The detrital zircons show two major populations of Pan-African (ca. 650–450 Ma) and Variscan (ca. 360–320 Ma) ages. A low abundance of Devonian detrital zircons separates the two main age populations. The Th/U signature of the zircons implies that igneous rocks of these two orogenic cycles directly, or indirectly (by multicyclic reworking of zircons) have strongly contributed to the clastic input. The earlier described bimodal turbiditic supply to the Schlieren Flysch basin is matched by the geochronologic data. With regard to the other petrographic signatures of the sandstones, it becomes evident that the granitic-rhyolitic source terrane derived (K-feldspar bearing) sandstones show a higher abundance of Pan-African zircons and a higher abundance of tourmaline in the heavy mineral fractions. In contrast, the exclusively plagioclase-bearing sandstones from the tonalitic–andesitic source contain a majority of Variscan zircons and higher contents of apatite. In addition, we observe a third minor population comprising Triassic–Early Jurassic detrital zircons. The correlation of the obtained detrital zircon ages with pre-Cretaceous igneous, metamorphic and geodynamic events, which affected the basement of the northern and southern margins of the Alpine Tethys reveals a major difference by the presence of Triassic magmatic products and volcaniclastics in South Alpine and Austroalpine units. The discovery of the minor Triassic–Early Jurassic population in both sandstone types of the Schlieren Flysch would argue for the derivation of the clastic material from the southern Alpine Tethys or Adriatic–Apulian margin.
机译:Schlieren Flysch及其在古尼格勒纳普(Gurnigel Nappe)的古地理特征仍然是一个争论的问题。这些晚高山深海沟沉积物显示出与其他推覆构造的推力关系可变,从而推断出拉长的海槽盆地的超螺旋或南彭尼纪成因。对Schlieren Flysch盆地的供应源地层的进一步了解可能会增加古地理学归属。通过激光烧蚀ICP-MS分析方法对来自七个代表性样品的碎屑锆石进行了测年。将获得的年龄模式与标准出处分析方法(包括模态颗粒和砂岩的重矿物统计数据)进行比较。碎屑锆石显示了两个主要的泛非年龄(约650-450 Ma)和瓦里斯坎(约360-320 Ma)年龄。泥盆纪碎屑锆石的含量低,将两个主要年龄人群分开。锆石的Th / U特征暗示着这两个造山循环的火成岩直接或间接地(通过锆石的多环改造)对碎屑输入有很大贡献。较早描述的向Schlieren Flysch盆地的双峰湍流供应与地质年代数据相匹配。关于砂岩的其他岩石学特征,很明显的是,花岗石-流纹岩烃源岩(含钾长石)砂岩在重矿物组分中显示出较高的泛非锆石丰度和较高的电气石丰度。相比之下,仅从斜长安山岩中生斜长石的砂岩含有大部分的瓦里斯坎锆石和较高含量的磷灰石。此外,我们观察到了第三个未成年人,包括三叠纪—早侏罗世碎屑锆石。所获得的碎屑锆石年龄与白垩纪前的火成岩,变质和地球动力学事件之间的相关性影响了高山特提斯北缘和南缘的基底,这揭示了南阿尔卑斯山和南缘三叠纪岩浆产品和火山碎屑岩的存在存在重大差异。奥山单位。在Schlieren Flysch的两种砂岩类型中都发现少量的三叠纪—早侏罗世种群,这可能表明碎屑物质是从南部的特提斯山脉或亚得里亚海—普利亚边缘得到的。

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