表面活性剂对石油烃透镜结构的影响

L. R. Chevalier, R. Wallace, D. Wiggert
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引用次数: 11

摘要

建立了一个实验室规模的物理模型,用于直观观察汽油泄漏通过无承压含水层的基本二维流动特征,以及随后的表面活性剂处理。该模型由一个平行板玻璃罐(1 m×1 m×5厘米)填充渥太华砂。汽油从真空区的一个点源中释放出来。由于汽油的比重小于1 (LNAPL),它汇集在水的张力饱和区的水饱和孔隙上方。除汽油透镜外,毛细条纹高度因毛细污染而降低。然后用2%十二烷基苯磺酸盐(阴离子)和2%聚氧乙酸壬基酚(非离子)的水相表面活性剂溶液处理汽油透镜。这种表面活性剂溶液将汽油和水相之间的界面张力降低了一个数量级。表面活性剂溶液与汽油从同一点源释放。因此,……
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Impact of Surfactant on Configuration of Petroleum Hydrocarbon Lens
A laboratory-scale physical model was constructed for visual observation of the basic 2-D flow characteristics of a gasoline spill through an unconfined aquifer and the subsequent treatment with a surfactant. The model consists of a parallel-plate glass tank (1 m×1 m×5 cm) packed with Ottawa sand. Gasoline was released from a point source in the vadose zone. As the specific gravity of gasoline is less than one (LNAPL), it pooled above the water saturated pores of the tension saturated region of water. Beyond the lens of gasoline, the height of the capillary fringe was reduced due to capillary pollution. The gasoline lens was then treated with an aqueous phase surfactant solution of 2% dodecyl benzene sulfonate (anionic) and 2% polyethoxylate nonyl phenol (nonionic). This surfactant solution reduced the interfacial tension between the gasoline and the aqueous phase by an order of magnitude. The surfactant solution was released from the same point source in the vadose zone as the gasoline. As a result, the ...
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