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A snapshot of soil water composition as an indicator of contrasted redox environments in a hedged farmland plot

机译:土壤水分组成的快照,作为被篱笆耕地中氧化还原环境对比的指标

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摘要

While soil water composition has long been recognised as being related to soil type (characteristics of the horizons), the influence of structures resulting from agricultural activities (hedges, ditches, wheel ruts, etc) is still under discussion. This work was undertaken to show that a snapshot of spatial variability of the geochemical characteristics of soil water at the scale of a plot can improve our understanding of soil geochemistry in a farmland setting. We selected a 3 hectare hedged plot located on a hillside, limited by a stream and used as pasture where soils have developed in weathered gneiss. The water depth, electrical conductivity, major ions, temperature, pH, dissolved organic carbon (DOC) content, dissolved oxygen content, fluorescence, alkalinity, Fe~(2+), Mn~(2+), NO_2~-, Fe(III) and F~ contents were measured in 62 auger holes randomly drilled on the site. Four sectors were identified in order to describe the distribution of the main geochemical parameters. Electrical conductivity and some major ions, especially sulphate, had larger concentrations near hedges where oxic conditions prevailed. These features were attributed to the impact of the linear anthropogenic network on the circulation of subsurface soil waters and evapo-transpiration and represent sector I. Dissolved Mn was an indicator of well channelled runoff subsurfaces facilitating the circulation of more highly reducing water (sector III), while DOC probably marked areas drained less well, with a prolonged contact time between soil solutions and organic topsoil horizons (sector II). The presence of dissolved Mn and Fe(II) indicates bottomland anoxic conditions (sector IV). It is concluded that a survey of the chemical composition of soil water may be a direct approach to show the influence of permanent structures on current soil properties and dynamics.
机译:尽管人们早已认识到土壤水的成分与土壤类型(地貌特征)有关,但农业活动(树篱,沟渠,车轮车辙等)对结构的影响仍在讨论中。进行这项工作是为了证明在样地范围内土壤水的地球化学特征的空间变异性快照可以增进我们对农田环境中土壤地球化学的了解。我们选择了一块3公顷的树篱地块,位于山坡上,被一条小溪所限制,并用作在风化片麻岩中形成土壤的牧场。水深,电导率,主要离子,温度,pH,溶解有机碳(DOC)含量,溶解氧含量,荧光,碱度,Fe〜(2 +),Mn〜(2 +),NO_2〜-,Fe( III)和F〜含量是在现场随机钻出的62个螺旋孔中测量的。确定了四个部门以描述主要地球化学参数的分布。电导率和一些主要离子,尤其是硫酸根,在有氧条件盛行的树篱附近浓度较高。这些特征归因于线性人为网络对地下土壤水循环和蒸散作用的影响,代表了I区。溶解的Mn指示了径流良好的地下地下通道,促进了还原性更高的水的流通(III区) ,而DOC可能标记的区域排水不畅,土壤溶液与有机表土层之间的接触时间延长(第二部分)。溶解的Mn和Fe(II)的存在表明了底部的缺氧条件(IV区)。结论是,对土壤水的化学成分进行调查可能是显示永久性结构对当前土壤特性和动力学影响的直接方法。

著录项

  • 来源
    《Science of the total environment》 |2009年第21期|5719-5725|共7页
  • 作者单位

    Universite d'Orleans, CNRS/INSU, Institut des Sciences de la Tenre d'Orleans (ISTO), 1A Rue de la Ferollerie, 45071 Orleans Cedex 2, France;

    Universite d'Orleans, CNRS/INSU, Institut des Sciences de la Tenre d'Orleans (ISTO), 1A Rue de la Ferollerie, 45071 Orleans Cedex 2, France;

    INRA Aix en Provence, Unite de Geochimie des Sols et des Eaux, Europole de l'Arbois, 13545 Aix-en-Provence Cedex 4, France;

    INRA Orleans, Unite de Science du Sol, Avenue de la Pomme de Pin, BP 20619, 45166 Olivet Cedex, France;

    Universite d'Orleans, CNRS/INSU, Institut des Sciences de la Tenre d'Orleans (ISTO), 1A Rue de la Ferollerie, 45071 Orleans Cedex 2, France;

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

    oxic; anoxic; soil water solutes; planosol; manganese; dissolved organic matter;

    机译:有氧缺氧土壤水溶质平溶胶锰;溶解有机物;
  • 入库时间 2022-08-17 13:57:34

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