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首页> 外文期刊>Journal of Contaminant Hydrology >Changes in air saturation and air-water interfacial area during surfactant-enhanced air sparging in saturated sand
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Changes in air saturation and air-water interfacial area during surfactant-enhanced air sparging in saturated sand

机译:饱和砂中表面活性剂增强的空气喷射过程中空气饱和度和气水界面面积的变化

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Reduction in the surface tension of groundwater, prior to air sparging for removal of volatile organic contaminant from aquifer, can greatly enhance the air content and the extent of influence when air sparging is implemented. However, detailed information on the functional relationship between water saturation, air-water contact area induced by air sparging and the surface tension of water has not been available. In this study, the influence of adding water-soluble anionic surfactant (sodium dodecyl benzene sulfonate) into groundwater before air sparging on the air-water interfacial area and water saturation was investigated using a laboratory-scale sand packed column. It was found that water saturation decreases with decreasing surface tension of water until it reaches a point where this trend is reversed so that water saturation increases with further decrease in the surface tension. The lowest water saturation of 0.58 was achieved at a surface tension of 45.4 dyn/cm, which is considered as the optimum surface tension for maximum de-saturation for the initially water-saturated sand used in this study. The air-water contact area generated in the sand column due to air sparging was measured using a gaseous interfacial tracer, n-decane, and was found to monotonically increase with decreasing water saturation. The results of this study provide useful design information for surfactant-enhanced air sparging removal of volatile contaminants from aquifers.
机译:在进行空气喷射以从含水层中除去挥发性有机污染物之前,降低地下水的表面张力可以大大提高空气含量,并在实施空气喷射时增加影响的程度。但是,关于水饱和度,空气喷射引起的空气与水的接触面积以及水的表面张力之间的功能关系的详细信息尚不可用。在这项研究中,使用实验室规模的沙子填充柱,研究了在向空气喷射之前向地下水中添加水溶性阴离子表面活性剂(十二烷基苯磺酸钠)对空气-水界面面积和水饱和度的影响。已经发现,水饱和度随着水的表面张力的降低而降低,直到达到该趋势反转的点,从而水饱和度随着表面张力的进一步降低而增加。在表面张力为45.4达因/厘米时,最低水饱和度为0.58,这被认为是本研究中使用的最初水饱和砂的最大去饱和度的最佳表面张力。使用气态界面示踪剂正癸烷测量了由于空气鼓泡而在砂柱中产生的气水接触面积,发现该面积随水饱和度的降低而单调增加。这项研究的结果为表面活性剂增强的空气喷射去除含水层中的挥发性污染物提供了有用的设计信息。

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