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Relationship between electrical conductivity and water content of peat and gyttja: implications for electrical surveys of drained peatlands

机译:泥炭和Gyttja电导率和水含量的关系:排水泥炭泥炭电气调查的影响

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摘要

The application of electrical resistivity tomography to peatlands supports conventional coring by providing data on the current condition of peatlands, including data on stratigraphy, peat properties and thickness of organic deposits. Data on the current condition of drained peatlands are particularly required to improve estimates of carbon storage as well as losses and emissions from agriculturally used peatlands. However, most of the studies focusing on electrical resistivity tomography surveys have been conducted on natural peatlands with higher groundwater levels. Peatlands drained for agriculture have not often been studied using geophysical techniques. Drained sites are characterized by low groundwater levels and high groundwater fluctuations during the year, which lead to varying levels of water saturation. To validate better electrical resistivity tomography surveys of drained peatlands, the aim of this laboratory study is to investigate the influence of varying water saturation levels on electrical conductivity (reciprocal of resistivity) for a variety of peat and gyttja types, as well as for different degrees of peat decomposition. Results show that different levels of water saturation strongly influence bulk electrical conductivity. Distinct differences in this relationship exist between peat and gyttja substrates and between different degrees of peat decomposition. Peat shows an exponential relationship for all degrees of decomposition, whereas gyttja, in particular organic-rich gyttja, is characterized by a rather unimodal relationship. The slopes for the relationship between electrical conductivity and water content are steeper at high degrees of decomposition than for peat of low degrees of decomposition. These results have direct implications for field electrical resistivity tomography surveys. In drained peatlands that are strongly susceptible to drying, electrical resistivity tomography surveys have a high potential to monitor the actual field wate
机译:电阻率断层扫描到Peatlands的应用支持通过提供关于泥炭地的当前条件的数据,包括地层,泥炭性质和有机沉积物厚度的数据。有关排水泥炭块现有条件的数据尤为必要改善农业使用泥炭块的碳储存估计和损失和排放。然而,专注于电阻率断层摄影调查的大多数研究已经在具有较高的地下水位的天然泥土上进行。没有经常使用地球物理技术研究用于农业的泥炭地。排水场所的特点是该年的低地下水位和高地下水波动,这导致水平的水平饱和度。为了验证排水泥炭地的更好的电阻率断层扫描调查,该实验室研究的目的是研究各种泥炭和GYTTJA类型的不同水饱和水平对电导率(电阻率往复率)的影响,以及不同程度的影响泥炭分解。结果表明,不同水平的水饱和度强烈影响散装电导率。这种关系中的明显差异存在于泥炭和Gyttja基材之间以及不同程度的泥炭分解之间存在。 Peat表明了对所有分解程度的指数关系,而Gyttja,特别是有机富有的Gytttja,其特征在于一种相当多的关系。对于电导率和水含量之间的关系的斜率是高度分解的陡峭,而不是低分解的泥炭。这些结果对现场电阻率断层扫描调查具有直接影响。在强烈易于干燥的排水泥炭块中,电阻率断层扫描调查具有高潜力,以监测实际的场地

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  • 来源
    《Near surface geophysics》 |2019年第2期|共11页
  • 作者单位

    Humboldt Univ Fac Life Sci Div Soil Sci &

    Site Sci Albrecht Thaer Weg 2 D-14195 Berlin Germany;

    Univ Potsdam Inst Earth &

    Environm Sci Karl Liebknecht Str 24-25 D-14476 Potsdam Germany;

    Hessian Agcy Nat Conservat Environm &

    Geol Rheingaustr 186 D-65203 Wiesbaden Germany;

    State Off Min Geol &

    Nat Resources Brandenburg Inselstr 26 D-03046 Cottbus Germany;

    Humboldt Univ Fac Life Sci Div Soil Sci &

    Site Sci Albrecht Thaer Weg 2 D-14195 Berlin Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Electrical conductivity; Peat; Gyttja;

    机译:电导率;泥炭;gyttja;

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