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首页> 外文期刊>Swiss Journal of Geosciences >Bio- and chronostratigraphy of the Middle Triassic Reifling Formation of the westernmost Northern Calcareous Alps
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Bio- and chronostratigraphy of the Middle Triassic Reifling Formation of the westernmost Northern Calcareous Alps

机译:北钙质阿尔卑斯山最西端的三叠纪中层三叠系的生物地层和年代地层

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New finds of fossils including bivalves, ammonoids, brachiopods and palynomorphs from the Middle Triassic Reifling Formation significantly improve the age assignment for this unit in Liechtenstein and Vorarlberg. The lower part of the Reifling Formation is tentatively referred to the Late Anisian Paraceratites trinodosus Zone and somewhat older levels, whereas the uppermost part reaches the Ladinian Protrachyceras archelaus Zone (ammonoid zonation). The Middle Triassic successions of the study area are correlated with the coeval South Alpine reference section at Bagolino (Brescian Prealps), which also bears the Ladinian GSSP. The comparison shows that the Reifling Formation in the study area is age-equivalent with the South Alpine Prezzo Limestone and the Buchenstein Formation. A volcanoclastic layer in the upper part of the Reifling Formation at Flexenpass yields a U-Pb zircon age of 239.3 +/- 0.2 Ma. This value is slightly older than previously published minimum ages from equivalent horizons in the Southern Alps; the difference is thought to be mainly due to improved pre-treatment of zircons (annealing/chemical abrasion), which significantly reduces the effects of Pb loss. The new radio-isotope age further constrains the stratigraphical age of the Reifling Formation and supports the proposed biostratigraphy-based correlation of Middle Triassic successions in the Eastern and Southern Alps.
机译:来自中三叠纪雷福林组的化石的新发现,包括双壳类,铵类,腕足类和类孢子体,显着改善了列支敦士登和福拉尔贝格州该单元的年龄分配。 Reifling组的下部暂定为Anisian Paraceratites trinodosus晚期区和较老的层,而最上部则到达Ladinian Protrachyceras archelaus区(氨化带)。该研究区的中三叠纪演替与巴古里诺(Brescian Prealps)的同时代南阿尔卑斯山参考剖面相关,该剖面也带有拉丁尼亚GSSP。比较表明,研究区的雷夫林组与南高山普雷佐石灰岩和布痕施泰因组年龄相等。 Flexenpass的Reifling地层上部的火山碎屑层产生的U-Pb锆石年龄为239.3 +/- 0.2 Ma。该值比南阿尔卑斯山地区之前发布的最低年龄稍高。认为差异主要是由于锆石的预处理(退火/化学磨蚀)得到改善,这大大降低了铅损失的影响。新的放射性同位素年龄进一步限制了雷夫林组的地层年龄,并支持了提议的基于生物地层学的东阿尔卑斯山和南阿尔卑斯山中三叠世演替的相关性。

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