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首页> 外文期刊>Vadose Zone Journal >Interpretation of Dye Transport in a Macroscopically Heterogeneous, Unsaturated Subsoil with a One-Dimensional Model
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Interpretation of Dye Transport in a Macroscopically Heterogeneous, Unsaturated Subsoil with a One-Dimensional Model

机译:用一维模型解释宏观非均质不饱和土壤中的染料迁移

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摘要

The objective of this study was to identify physical and chemical processes affecting Brilliant Blue (BB) transport in an unsaturated, macroscopically heterogeneous subsoil. We performed a BB leaching experiment in a 1-m-long undisturbed sandy monolith with a 10-cm-thick discontinuous clay layer 0.2 m below the surface. Two-dimensional BB concentration distributions were derived from image analysis at several depths in the monolith. Results showed several features of nonideal transport: (i) a deeper than expected travel depth, (ii) extensive tailing and a secondary peak in the BB depth profile, (iii) a lower than expected BB concentration in the upper part of the soil profile where the invading dye tracer solution was assumed to have replaced the initial solution, and (iv) a decrease in the concentration variability between the surface and the 2-cm depth. These results were in sharp contrast with inert transport experiments that suggested homogeneous flow and transport characterized by small dispersivity lengths. The macrostructure (i.e., the discontinuous clay layer and the nonuniform irrigation) determined the BB transport. A simulation with a one-dimensional transport model using an effective water content and sorption isotherm that was directly derived from the cross-sectional area of the clay layer suggested that the macrostructure alone was not sufficient to explain the BB distribution. Moreover, a two-site kinetic sorption model was needed to reproduce the tailing of the BB profile and the lower than expected concentrations at the soil surface. Since batch sorption experiments did not reveal rate-limited sorption, we postulate that the unsaturated flow conditions led to reduced accessibility of the sorption sites, thus decreasing the sorption rate.
机译:这项研究的目的是确定在不饱和,宏观上非均质地层中影响亮蓝(BB)传输的物理和化学过程。我们在一个长度为1 m的未扰动砂质整料中进行了BB浸出实验,该整料具有低于表面0.2 m的10 cm厚的不连续黏土层。二维 BB浓度分布是根据图像分析 在整体中的几个深度得出的。结果显示了非理想运输的几个特征 :(i)比预期的行进深度更深, (ii)广泛的拖尾和BB深度的第二个峰值 上部的BB浓度低于预期,假定入侵的染料示踪剂 溶液已代替了初始溶液, 和(iv) 表面和2 cm深度之间浓度变化的减小。这些结果与惰性传输实验形成明显的 对比,表明以均匀的 流动和传输为特征,具有较小的分散长度。 宏观结构(即不连续的粘土层和 非均匀灌溉)决定了BB的运移。使用有效水含量和吸附等温线的一维传输模型模拟 ,该有效水含量直接来自 的横截面面积粘土层表明仅 宏观结构不足以解释BB的分布。 此外,还需要一个两点动力学吸附模型来再现 BB曲线的拖尾以及土壤表面的浓度低于预期浓度 。由于分批吸附实验没有显示速率限制的吸附,因此我们假设不饱和的 流动条件导致吸附 位置的可及性降低,因此降低吸附率。

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  • 来源
    《Vadose Zone Journal》 |2006年第2期|529-538|共10页
  • 作者单位

    Dep. of Environmental Sciences and Land Use Planning, Université catholique de Louvain (UCL), Croix du Sud, 2 Bte 2, B-1348 Louvain-la-Neuve, Belgium|Agrosphere, ICG-IV, Forschungszentrum Jülich, D-52425 Jülich, Germany;

    Agrosphere, ICG-IV, Forschungszentrum Jülich, D-52425 Jülich, Germany;

    Agrosphere, ICG-IV, Forschungszentrum Jülich, D-52425 Jülich, Germany;

    Dep. of Environmental Sciences and Land Use Planning, Université catholique de Louvain (UCL), Croix du Sud, 2 Bte 2, B-1348 Louvain-la-Neuve, Belgium;

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