Tephrostratigraphy of Jurassic-Cretaceous boundary beds of Western Siberia

IF 0.7 Q4 GEOSCIENCES, MULTIDISCIPLINARY
I. Panchenko, M. Rogov, I. Sobolev, A. Latyshev, V. Zakharov
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引用次数: 1

Abstract

The age of tuffaceous interlayers, represented by tuffs and tuffites, which are common in the Upper Jurassic-Lower Cretaceous deposits of Western Siberia (the Bazhenovo, Tutleim and Frolov Formations), is discussed. The nature of these interlayers is associated with the subglobal (transfer of more than 1--2 thousand km) spread of volcanic ash (0.001--0.1 mm) and its sedimentation and burial in a vast epicontinental marine basin during episodes of low sedimentation rates, weak hydrodynamic activity and in the absence of bioturbation. Despite the extremely low thickness of these pyroclastic layers (<1 mm -- first cm), they are systematically noted in the drill core at certain stratigraphic levels. Tuffs and tuffites are clearly recognized due to sharp boundaries and contrasting color and mineral composition comparing to the host rocks. Moreover, these layers often demonstrate exceptionally bright luminescence in yellow and orange tones in the ultraviolet. Some of these pyroclastic layers can be traced over a vast area (more than 700,000 sq km) and hence can be used as isochronous stratigraphic markers. Considering the importance of the information about the distal pyroclastics in sedimentary strata, we have summarized data on boreholes in Western Siberia, containing tuffs and tuffites in the Upper Jurassic - Lower Cretaceous. Detailed linking of interlayers by drilling depth and geophysical logging was performed. The findings of more than 370 tuff and tuffite interlayers in the core of 136 wells have been catalogued. The age of tuffaceous interlayers is justified by the combination of lithostratigraphic and biostratigraphic methods, and geophysical logging. The key ammonite taxa recovered from tuff-bearing boreholes are figured. A brief description of the zones of the Ryazanian stage of Western Siberia and the principles of their identification are given. We suggest to replace the type index of the Surites analogus zone with S. subanalogus. The described sequence of tuffaceous interlayers is combined into 8 sub-regional pyroclastic levels traced throughout the central part of Western Siberia in the Middle Volgian (4 pyroclastic levels), Ryazanian (3 levels) and Lower Valanginian (1 level) intervals. The trace elements content composition of tuffaceous layers is characterized. The enrichment of rare earth elements in the direction from the oldest to the youngest interlayers ones was revealed, and the ratios Gd/Yb, Ho/Yb, Yb/Lu, Zr/Hf, Nd/Sm determine the stratigraphic correspondence of the tuffaceous interlayer to the subregional pyroclastic level. Our results can be used as a tephrostratigraphic scale for the Jurassic-Cretaceous boundary beds. Catalog of finds of Upper Jurassic -- Lower Cretaceous tuffs and tuffites in the core of wells in Western Siberia [https://doi.org/10.2205/2022ES000817-data] in text format is available on the website of the Earth Sciences Database Repository (BDNS) [http://esdb.wdcb.ru/], located at the Geophysical Center of the Russian Academy of Sciences.
西伯利亚西部侏罗系-白垩纪交界层的地层
讨论了西西伯利亚上侏罗统—下白垩统(Bazhenovo组、Tutleim组和Frolov组)中常见的以凝灰岩和凝灰岩为代表的凝灰岩间层的年龄。这些间层的性质与亚全球(超过1—2千公里)火山灰(0.001—0.1毫米)的传播及其在低沉积速率、弱流体动力活动和缺乏生物扰动的时期在一个巨大的陆表海相盆地中的沉积和埋藏有关。尽管这些火山碎屑层的厚度极低(<1毫米-第一厘米),但它们在某些地层水平的钻芯中被系统地记录下来。凝灰岩和凝灰岩由于其鲜明的边界和对比的颜色和矿物组成与宿主岩石相比,可以清楚地识别出来。此外,这些层在紫外线下经常表现出异常明亮的黄色和橙色色调。其中一些火山碎屑层可以在大片区域(超过70万平方公里)上找到,因此可以用作等时地层标志。考虑到沉积地层中远端火山碎屑信息的重要性,我们总结了西伯利亚西部地区上侏罗统—下白垩统含凝灰岩和凝灰岩的钻孔资料。通过钻井深度和地球物理测井进行了层间的详细连接。在136口井的岩心中发现了370多个凝灰岩和凝灰岩夹层。结合岩石地层学、生物地层学和地球物理测井等方法,确定了凝灰岩夹层的年龄。绘制了含凝灰岩钻孔中发现的主要菊石类群。简要介绍了西伯利亚西部梁赞期的构造带及其识别原则。我们建议用S. subanalogus代替S. analogus带的类型指标。所描述的凝灰质夹层序列被组合成8个亚区域火山碎屑层,分布于西西伯利亚中部的中伏叠统(4个火山碎屑层)、梁赞叠统(3个火山碎屑层)和下瓦兰吉尼统(1个火山碎屑层)。对凝灰岩层的微量元素含量组成进行了表征。揭示了从最老到最年轻间层稀土元素富集方向,Gd/Yb、Ho/Yb、Yb/Lu、Zr/Hf、Nd/Sm比值决定了凝灰岩间层与分区域火山碎屑水平的地层对应关系。我们的研究结果可以作为侏罗系-白垩纪界线层的地层尺度。西伯利亚西部井芯的上侏罗统—下白垩统凝灰岩和凝灰岩发现目录[https://doi.org/10.2205/2022ES000817-data]的文本格式可在位于俄罗斯科学院地球物理中心的地球科学数据库存储库(BDNS) [http://esdb.wdcb.ru/]的网站上找到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Russian Journal of Earth Sciences
Russian Journal of Earth Sciences GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
15.40%
发文量
41
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