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Retention of liquid contaminants in layered soils

机译:保留层状土壤中的液体污染物

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Observations of organic contaminant liquids retained in layered soil profiles indicate contami- nant saturations much greater than residual, where residual saturation would be expected, if one assumes a static distribution of fluid pressure. It is theorized that the increased retention of fluid is caused by coarse soil layers that reach a very small unsaturated hydraulic conductivity early in the drainage process, and thus prevent further drainage. The results from a retention experiment in a one-dimensional column were used to test this hypothesis. A vertical column was dry packed with a layer of fine sand (high entry pressure head) overlaying a layer of coarse sand (low entry pressure head). The column was saturated with an organic liquid and then drained. The saturation and pressure profiles were monitored over an extended period of time. A dual-gamma system was used to determine the liquid saturation, and specially fitted ring tensiometers were used to measure the capillary pressure at selected points along the column. The pressure readings and saturation profiles showed a high retention of oil in the fine layer above the interface of the two soils. The profiles were compared first with static pressure and corresponding saturation profiles, and secondly with profiles calculated assuming a very small steady flow through the column. The experimental profiles closely resemble those profiles that assume small flow rates, and display a much higher retention above coarse layers than the static profiles.
机译:在分层土壤剖面中保留的有机污染物液体的观察结果表明,如果假定流体压力是静态分布的,则污染物的饱和度要远大于残余物,而残余物的饱和度是可以预期的。从理论上讲,增加的流体滞留性是由粗糙的土壤层引起的,这些土壤层在排水过程的早期就达到了非常小的不饱和水力传导率,从而阻止了进一步的排水。一维列保留实验的结果用于检验该假设。将立柱干式填充一层细砂(高入口压力头),覆盖一层粗砂(低入口压力头)。该柱用有机液体饱和,然后排出。在延长的时间段内监测饱和度和压力曲线。使用双伽马系统确定液体饱和度,并使用专门安装的环形张力计测量沿色谱柱选定点的毛细管压力。压力读数和饱和度曲线表明,在两种土壤的界面上方的细层中,油的保留率很高。首先将曲线与静压曲线和相应的饱和度曲线进行比较,然后将曲线与假定通过色谱柱的稳定流量非常小的计算曲线进行比较。实验剖面与那些假定流量较小的剖面非常相似,并且在粗糙层上方的保留比静态剖面高得多。

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