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Non-aqueous phase liquid spreading during soil vapor extraction

机译:土壤水蒸气萃取过程中的非水相液体扩散

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摘要

Many non-aqueous phase liquids (NAPLs) are expected to spread at the air-water interface, particularly under non-equilibrium conditions. In the vadose zone, this spreading should increase the surface area for mass transfer and the efficiency of volatile NAPL recovery by soil vapor extraction (SVE). Observations of spreading on water wet surfaces led to a conceptual model of oil spreading vertically above a NAPL pool in the vadose zone. Analysis of this model predicts that spreading can enhance the SVE contaminant recovery compared to conditions where the liquid does not spread. Experiments were conducted with spreading volatile oils hexane and heptane in wet porous media and capillary tubes, where spreading was observed at the scale of centimeters. Within porous medium columns up to a meter in height containing stagnant gas, spreading was less than ten centimeters and did not contribute significantly to hexane volatilization. Water film thinning and oil film pinning may have prevented significant oil film spreading, and thus did not enhance SVE at the scale of a meter. The experiments performed indicate that volatile oil spreading at the field scale is unlikely to contribute significantly to the efficiency of SVE.
机译:预计许多非水相液体(NAPL)会在空气-水界面处扩散,特别是在非平衡条件下。在渗流区,这种扩散应增加用于传质的表面积,并增加通过土壤蒸汽萃取(SVE)回收挥发性NAPL的效率。在水润湿的表面上扩散的观察结果导致了油在渗流区的NAPL池上方垂直扩散的概念模型。该模型的分析预测,与液体不扩散的情况相比,扩散可以提高SVE污染物的回收率。用挥发性油己烷和庚烷在湿的多孔介质和毛细管中散布进行了实验,其中以厘米为单位观察到散布。在高度高达一米的含有滞留气体的多孔介质柱中,扩散小于十厘米,并且对己烷挥发没有明显影响。水膜变薄和油膜钉扎可能已经阻止了油膜的显着扩散,因此并没有提高米级的SVE。进行的实验表明,在田间散布的挥发油不太可能显着提高SVE的效率。

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