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Retention and Solute Transport Properties in Disturbed and Undisturbed Soil Samples

机译:扰动和未扰动土壤样品中的保留和溶质运移特性

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ABSTRACT Solute transport parameters can be determined in miscible displacement experiments, usually performed in columns with disturbed (sieved) soil samples. Experiments with undisturbed samples are uncommon, due to the difficulty of taking undisturbed samples at the size required for these experiments. Structural alteration of the disturbed material implies modifications in the pore geometry that determines hydraulic properties, including hydraulic conductivity and retention and properties related to miscible displacement. An existing model for prediction of breakthrough curves based on retention properties was tested using material from a medium-textured Ferralsol, and alterations caused by sample disturbance were investigated. Soil water retention curves and miscible displacement parameters were determined in breakthrough experiments with nitrate salts in columns filled with undisturbed and disturbed soil samples. Data obtained from the undisturbed samples showed a higher dispersion, suggesting homogenization of pore geometry and a reduction in the representative elementary volume by the disaggregation and sieving of the soil material. The transport parameters for nitrate determined in disturbed and undisturbed samples were significantly different and the model was able to simulate the observed breakthrough curves after fitting the pore connectivity parameter.
机译:摘要溶质运移参数可以在混溶驱替实验中确定,通常在带有受干扰(筛分)土壤样品的色谱柱中进行。由于难以获取这些实验所需大小的未干扰样本,因此未干扰样本的实验并不常见。受扰物质的结构变化意味着孔隙几何形状的改变,从而决定了水力特性,包括水力传导率和保持力以及与混溶位移有关的特性。使用中纹理的Ferralsol材料测试了现有的基于保留特性的突破曲线预测模型,并研究了样品扰动引起的变化。在充满未扰动和扰动土壤样品的色谱柱中使用硝酸盐进行突破性实验时,确定了土壤保水曲线和混溶位移参数。从原状样品获得的数据显示出较高的分散度,表明孔的几何形状均质化,并且由于土壤材料的分解和筛分,代表的基本元素体积减少了。在扰动和未扰动样品中确定的硝酸盐迁移参数存在显着差异,并且在拟合孔隙连通性参数后,该模型能够模拟观察到的穿透曲线。

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