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湿砂干燥过程中非水相液体(NAPL)的迁移增强。

Enhanced mobility of non aqueous phase liquid (NAPL) during drying of wet sand.

机构信息

Department Of Chemical Engineering, Indian Institute Of Technology Madras, Chennai, Tamilnadu 600036, India.

Department Of Chemical Engineering, Indian Institute Of Technology Madras, Chennai, Tamilnadu 600036, India.

出版信息

J Contam Hydrol. 2018 Feb;209:1-13. doi: 10.1016/j.jconhyd.2017.12.005. Epub 2018 Jan 4.

Abstract

Enhanced upward mobility of a non aqueous phase liquid (NAPL) present in wet sand during natural drying, and in the absence of any external pressure gradients, is reported for the first time. This mobility was significantly higher than that expected from capillary rise. Experiments were performed in a glass column with a small layer of NAPL-saturated sand trapped between two layers of water-saturated sand. Drying of the wet sand was induced by flow of air across the top surface of the wet sand. The upward movement of the NAPL, in the direction of water transport, commenced when the drying effect reached the location of the NAPL and continued as long as there was significant water evaporation in the vicinity of NAPL, indicating a clear correlation between the NAPL rise and water evaporation. The magnitude and the rate of NAPL rise was measured at different water evaporation rates, different initial locations of the NAPL, different grain size of the sand and the type of NAPL (on the basis of different NAPL-glass contact angle, viscosity and density). A positive correlation was observed between average rate of NAPL rise and the water evaporation while a negative correlation was obtained between the average NAPL rise rate and the NAPL properties of contact angle, viscosity and density. There was no significant correlation of average NAPL rise rate with variation of sand grain size between 0.1 to 0.5mm. Based on these observations and on previous studies reported in the literature, two possible mechanisms are hypothesized -a) the effect of the spreading coefficient resulting in the wetting of NAPL on the water films created and b) a moving water film due to evaporation that "drags" the NAPL upwards. The NAPL rise reported in this paper has implications in fate and transport of chemicals in NAPL contaminated porous media such as soils and exposed dredged sediment material, which are subjected to varying water saturation levels due to drying and rewetting.

摘要

首次报道了在自然干燥过程中,非水相液体(NAPL)在湿砂中向上迁移的增强现象,而无需任何外部压力梯度。这种迁移能力明显高于毛细上升所预期的能力。实验是在一个带有小层 NAPL 饱和砂的玻璃柱中进行的,该小层 NAPL 饱和砂夹在两层水饱和砂之间。通过空气在湿砂顶表面流动来引发湿砂的干燥。当干燥效应到达 NAPL 位置时,NAPL 开始向水输送方向向上移动,并在 NAPL 附近有大量水蒸发的情况下持续进行,这表明 NAPL 上升与水蒸发之间存在明显的相关性。在不同的水蒸发率、NAPL 的不同初始位置、不同粒径的砂和 NAPL 的不同类型(基于不同的 NAPL-玻璃接触角、粘度和密度)下,测量了 NAPL 上升的幅度和速率。观察到 NAPL 上升的平均速率与水蒸发之间呈正相关,而 NAPL 上升的平均速率与接触角、粘度和密度等 NAPL 性质之间呈负相关。NAPL 上升的平均速率与 0.1 至 0.5mm 之间的砂粒大小变化之间没有显著相关性。基于这些观察结果和文献中报道的先前研究,提出了两种可能的机制 - a)由于在形成的水膜上扩展系数的作用,导致 NAPL 润湿;b)由于蒸发而产生的移动水膜,该水膜“拖拽” NAPL 向上。本文报道的 NAPL 上升现象对 NAPL 污染多孔介质(如土壤和暴露的疏浚沉积物)中化学物质的命运和迁移具有重要意义,这些介质由于干燥和再润湿而经历了不同的水饱和度水平。

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