Crandallite-rich beds of the Libkovice Member, Most Basin, Czech Republic: climatic extremes or paleogeographic changes at the onset of the Miocene Climatic Optimum?

IF 1.3 4区 地球科学 Q2 GEOLOGY Geologica Acta Pub Date : 2021-09-20 DOI:10.1344/geologicaacta2021.19.11
K. Mach, V. Rapprich, M. Faměra, M. Havelcová, T. Matys Grygar, T. Novotný, M. Rehor, Yulia V. Erban Kochergina
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引用次数: 3

Abstract

We describe the occurrence and possible origin of rare beds 1–10cm thick and containing 20–70% of crandallite, a Ca-Al phosphate enriched in Sr and Ba, found within otherwise monotonous clay-rich lacustrine sediments of the Most Basin in the Central-European Neogene Ohře Rift system. The beds were formed at ca. 17.31, 17.06, and 16.88Ma, while the entire suite of monotonous clays of the Libkovice Member was deposited between 17.46 and 16.65Ma. Trace-element and organic geochemistry, Ar-Ar geochronology and C-O-Sr isotope systematics are used to infer their source and processes leading to their formation. The most enigmatic aspect of the formation of the crandallite beds is the removal of a huge amount of phosphorus from its biogenic cycle in the lacustrine system, which was otherwise stable for ca. 0.8My. Formation of detritus-poor crandallite beds could result from some exceptional environmental disruptions that hindered transport of fine clastic material to the basin floor. Silicic volcanic activity in the area of the Pannonian Basin could have triggered this disruption. Crandallite could provide evidence of long-lasting droughts and acidification of the exogenic environment, as they are roughly coeval with the onset of the Miocene Climatic Optimum at ca. 17.0Ma.
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捷克共和国大多数盆地Libkovice成员富长晶石层:中新世气候最佳期开始时的极端气候或古地理变化?
我们描述了厚度为1–10cm、含有20–70%裂隙岩(一种富含Sr和Ba的Ca-Al磷酸盐)的稀有矿层的出现和可能的起源,该矿床位于中欧新第三纪奥热裂谷系Most盆地的单调富含粘土的湖泊沉积物中。矿层形成于约17.31、17.06和16.88Ma,而Libkovice段的整套单调粘土沉积于17.46和16.65Ma之间。微量元素和有机地球化学、Ar-Ar地质年代学和C-O-Sr同位素系统学用于推断其来源和形成过程。裂隙岩床形成最神秘的方面是从湖泊系统中的生物循环中去除了大量的磷,否则湖泊系统在约0.8My内是稳定的。缺乏碎屑的裂隙岩床的形成可能是由于一些特殊的环境破坏,阻碍了细碎屑物质向盆地底部的运输。潘诺尼亚盆地地区的硅质火山活动可能引发了这种破坏。Crandallite可以提供长期干旱和外部环境酸化的证据,因为它们与约17.0Ma的中新世气候最佳期大致同期。
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来源期刊
Geologica Acta
Geologica Acta 地学-地质学
CiteScore
2.50
自引率
6.70%
发文量
13
审稿时长
>12 weeks
期刊介绍: - Relevant conceptual developments in any area of the Earth Sciences. - Studies presenting regional synthesis. - Thematic issues or monographic volumes presenting the results from one or more research groups. - Short papers reflecting interesting results or works in progress. - Contributions and results from Research Projects, Workshops, Symposiums, Congresses and any relevant scientific activity related to Earth Sciences. - Geologica Acta aims to stimulate rapid diffusion of results and efficient exchange of ideas between the widespread communities of Earth Science researchers (with special emphasis on Latinamerica, the Caribbean, Europe, the Mediterranean
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