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首页> 外文期刊>Sedimentary geology >Evaluating iron as a biomarker of rhythmites - An example from the last Paleozoic ice age of Gondwana
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Evaluating iron as a biomarker of rhythmites - An example from the last Paleozoic ice age of Gondwana

机译:评估铁作为节奏的生物标志物 - 来自Gondwana的最后古生代冰时代的一个例子

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摘要

Microorganisms play a significant role in mineral precipitation, but detecting them in the fossil record is still a challenge. Here we offer an example of how the detection of biological activity in the sedimentary environment can modify a classical depositional model. This study describes the activity of microorganisms in sedimentary structures and the iron mineral formation during the last Paleozoic Ice Age in southwestern Gondwana, recorded by the "Itu rhythmites", Parana Basin, Brazil. The Itu rhythmites have been considered to be varve-type deposits that present alternating dark laminae (clay/silt-size sediments) and light layers (sand/gravel-size sediments) of varied thickness, forming couplets. Earlier studies focused on abiotic processes of these structures. We applied different techniques and analytical approaches were used, such as synchrotron-based techniques and rock magnetic techniques, in order to test the biogenicity of iron minerals contained in putative microbially-induced sedimentary structures. By detecting biominerals in this rock succession, the depositional model had to be reconsidered, taking into account the biological activity, the limitations on the specific conditions for bacterial growth, and for mineral precipitation. Therefore, we offer a new depositional model that considers the role of microorganisms in formation of these laminae, and this model can be considered for other iron-rich rhythmic deposits in other places of the world. Considering the effects of temperature and other factors in the bacterial productivity, the deposition of the latest couplets in the outcrop occurred in different seasons and by different depositional processes, corroborating with the non-periodicity of 1 year per lithological couplet. (C) 2019 Elsevier B.V. All rights reserved.
机译:微生物在矿物降水中发挥着重要作用,但在化石记录中检测到它们仍然是一项挑战。在这里,我们提供了如何检测沉积环境中生物活性的检测可以修改古典沉积模型。本研究描述了西南古藻泥冰时代沉积结构中微生物的活性和铁矿物质形成,由“国际电联节奏”,巴西Parana盆地拍摄。 ITU节奏已被认为是变形型沉积物,其呈现交替的暗层薄层(粘土/淤泥尺寸沉积物)和不同厚度,形成对联的光层(砂/砾石尺寸沉积物)。早期的研究专注于这些结构的非生物过程。我们应用了不同的技术和分析方法,例如基于同步的技术和岩石磁性技术,以测试推定的微生物诱导的沉积结构中包含的铁矿物的生物性。通过检测该岩石继承中的生物体,必须重新考虑沉积模型,考虑到生物活性,对细菌生长的具体条件以及矿物沉淀的限制。因此,我们提供了一种新的沉积模型,其考虑了微生物在这些薄层的形成中的作用,并且这种模型可以考虑世界其他地方的其他铁富有节奏沉积物。考虑到温度和其他因素在细菌生产率中的影响,露头中最新对联的沉积发生在不同的季节和不同的沉积过程中,以每种岩性对联的1年的非周期性。 (c)2019 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Sedimentary geology》 |2019年第4期|1-15|共15页
  • 作者单位

    Univ Estadual Campinas Inst Geociencias UNICAMP BR-13083855 Campinas SP Brazil;

    Univ Estadual Campinas Inst Geociencias UNICAMP BR-13083855 Campinas SP Brazil;

    Univ Estadual Campinas Inst Geociencias UNICAMP BR-13083855 Campinas SP Brazil;

    Brazilian Ctr Res Energy & Mat CNPEM Brazilian Synchrotron Light Lab LNLS BR-13083970 Campinas SP Brazil;

    Univ Sao Paulo Inst Chem Dept Fundamental Chem BR-05508000 Sao Paulo Brazil;

    Brazilian Ctr Res Energy & Mat CNPEM Brazilian Synchrotron Light Lab LNLS BR-13083970 Campinas SP Brazil;

    Univ Brasilia Inst Geociencias BR-70910900 Brasilia DF Brazil;

    Brazilian Ctr Res Energy & Mat CNPEM Brazilian Synchrotron Light Lab LNLS BR-13083970 Campinas SP Brazil;

    Old Dominion Univ Dept Ocean Earth & Atmospher Sci Norfolk VA 23529 USA;

    Univ Maryland Dept Astron College Pk MD 20742 USA|NASA Goddard Space Flight Ctr Greenbelt MD 20771 USA;

    Carnegie Inst Sci Geophys Lab 5251 Broad Branch Rd NW Washington DC 20015 USA;

    Univ Sao Paulo Inst Chem Dept Fundamental Chem BR-05508000 Sao Paulo Brazil;

    Univ Brasilia Inst Fis BR-70919970 Brasilia DF Brazil;

    Univ Fed Sao Carlos Dept Ecol & Biol Evolut Lab Paleoecol & Paleoicnol BR-13565905 Sao Carlos SP Brazil;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Varvite; Biomineral; Ichnofossils; Glacial deposit; Magnetite; Gondwana;

    机译:Varvite;Biomineral;Ichnofossils;冰川沉积物;磁铁矿;Gondwana;

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