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Fluid inclusions as a tool to constrain the preservation conditions of sub-seafloor cryptoendoliths

机译:流体包裹体作为约束海底隐岩层保存条件的工具

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摘要

The combination of fluid inclusion analyses and microfossil analyses is an excellent method to study the preservation process of deep sub-seafloor microorganisms. By studying fluid inclusions in the same mineral phases as microfossils, it is possible to reconstruct the conditions that prevailed when the microorganisms where entombed and to put them in a geological and environmental context.rnThis study has been performed on carbonate and gypsum veins in drilled basalt samples from three seamounts belonging to the Emperor Seamounts in the Pacific Ocean: Detroit, Nintoku and Koko Seamounts. The study show that variations in salt composition (MgCl_2, NaCl, KC1 and CaCl_2) and salinity (2.1 and 10.5 eq. wt% NaCl) of the hydrothermal fluids do not have an influence on the occurrence of microfossils throughout the samples. The microorganisms were trapped and entombed at minimum temperatures of ~130 ℃ which implies that the microorganisms could have existed at temperatures of ~130℃ for shorter periods of time. The microorganisms were entrapped at shallow-marine to submarine conditions and the entrapment of the microorganisms occurred relatively late compared to the volcanic activity.
机译:流体包裹体分析和微化石分析的结合是研究深海海底微生物保存过程的一种极好的方法。通过研究与微化石处于相同矿物相中的流体包裹体,可以重建微生物被包埋时普遍存在的条件,并将其置于地质和环境环境中。rn该研究是在钻孔玄武岩中的碳酸盐和石膏脉上进行的。来自太平洋皇帝海山的三个海山的样本:底特律,Nintoku和Koko海山。研究表明,热液的盐组成(MgCl_2,NaCl,KCl和CaCl_2)和盐度(2.1和10.5 eq。wt%NaCl)的变化不会影响整个样品中微化石的发生。微生物在最低温度〜130℃被捕获并被包埋,这意味着微生物可能在〜130℃的温度下存在了较短的时间。微生物被困在浅海到海底条件下,与火山活动相比,微生物的滞留发生得相对较晚。

著录项

  • 来源
    《Planetary and space science》 |2009年第4期|477-490|共14页
  • 作者单位

    Department of Geology and Geochemistry, Stockholm University, Frescativagen 8, S-W6 91 Stockholm, Sweden;

    Department of Geology and Geochemistry, Stockholm University, Frescativagen 8, S-W6 91 Stockholm, Sweden;

    Department of Geology and Geochemistry, Stockholm University, Frescativagen 8, S-W6 91 Stockholm, Sweden;

    Department of Geology and Geochemistry, Stockholm University, Frescativagen 8, S-W6 91 Stockholm, Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    fluid inclusions; deep biosphere; hydrothermal systems; fossilized microorganisms;

    机译:流体包裹体深层生物圈热液系统;化石微生物;

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