Authigenic calcium carbonate precipitation in the “bathtub ring” around the anoxic Alum Shale Basin during the Furongian SPICE event (Baltic Basin, northern Poland)

IF 1.2 4区 地球科学 Q2 GEOLOGY Gff Pub Date : 2021-09-08 DOI:10.1080/11035897.2021.1941239
Aleksander Majchrzyk, W. Kozłowski, A. Żylińska
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Abstract

ABSTRACT The precipitation of both biotic and abiotic calcium carbonate is of great importance in modern and ancient global biogeochemical cycles. In the present-day oceans, the widespread precipitation of inorganic CaCO3 on the seafloor or in the water column is possible only under extraordinary circumstances. By contrast, in the geological record, authigenic seafloor carbonate cements were widespread in the supersaturated, anoxic oceans of the Precambrian. Widespread authigenic carbonate precipitation ceased by the end of the Neoproterozoic as a consequence of global oceanic oxygenation: in the Phanerozoic, it occurred only during major anoxic events (for example, at the Permian/Triassic boundary) or in restricted, stagnant basins. Here, we present an anomalous record of CaCO3 precipitation from the Cambrian Alum Shale Basin of the Baltica palaeocontinent with Precambrian-like authigenic, seafloor encrusting, crystalline carbonates. The depositional environment of this well-recognized, cool-water, stagnant anoxic basin favoured local carbonate precipitation via the surplus generation of alkalinity in anoxic bottom waters. However, the correlation of the acme of authigenic carbonate formation with the onset and peak of the Steptoean Positive Carbon Isotope Excursion (SPICE) suggests a driver−trigger relation between the two phenomena. On a smaller scale, carbonate authigenic precipitation is manifested by a cement-supported texture of the limestone intercalations in the Alum Shale facies. Instantaneous calcification of the faunal remains, termed here the Snedronningen phenomenon, must have been of great importance in the formation of Orsten-type Konservat Lagerstätten.
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富隆期SPICE事件(波兰北部波罗的海盆地)缺氧明矾页岩盆地周围“浴缸环”自生碳酸钙沉淀
生物和非生物碳酸钙的沉淀在现代和古代全球生物地球化学循环中都具有重要意义。在当今的海洋中,无机物CaCO3在海底或水柱上的广泛沉淀只有在特殊情况下才有可能。相比之下,在地质记录中,自生的海底碳酸盐胶结物广泛存在于前寒武纪过饱和、缺氧的海洋中。由于全球海洋的氧化作用,广泛的自生碳酸盐降水在新元古代末期停止了;在显生宙,它只发生在主要的缺氧事件期间(例如,在二叠纪/三叠纪的边界)或在有限的停滞盆地中。本文对波罗的海古大陆寒武纪明矾页岩盆地的CaCO3降水进行了异常记录,该盆地具有前寒武纪样自生、海底覆壳、结晶碳酸盐。这个众所周知的、冷水、停滞的缺氧盆地的沉积环境有利于通过缺氧底部水的剩余碱度产生局部碳酸盐降水。然而,自生碳酸盐形成的顶峰与阶梯正碳同位素偏移(SPICE)的开始和峰值的相关性表明,这两种现象之间存在驱动-触发关系。在较小的尺度上,碳酸盐自生降水表现为明矾页岩相灰岩夹层的水泥支撑结构。动物遗骸的瞬时钙化,在这里被称为Snedronningen现象,在orsten型Konservat Lagerstätten的形成中一定是非常重要的。
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来源期刊
Gff
Gff 地学-地质学
CiteScore
2.80
自引率
10.00%
发文量
11
审稿时长
>12 weeks
期刊介绍: GFF is the journal of the Geological Society of Sweden. It is an international scientific journal that publishes papers in English covering the whole field of geology and palaeontology, i.e. petrology, mineralogy, stratigraphy, systematic palaeontology, palaeogeography, historical geology and Quaternary geology. Systematic descriptions of fossils, minerals and rocks are an important part of GFF''s publishing record. Papers on regional or local geology should deal with Balto-Scandian or Northern European geology, or with geologically related areas. Papers on geophysics, geochemistry, biogeochemistry, climatology and hydrology should have a geological context. Descriptions of new methods (analytical, instrumental or numerical), should be relevant to the broad scope of the journal. Review articles are welcome, and may be solicited occasionally. Thematic issues are also possible.
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