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首页> 外文期刊>Transport in Porous Media >Surfactant Foam Selection for Enhanced Light Non-Aqueous Phase Liquids (LNAPL) Recovery in Contaminated Aquifers
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Surfactant Foam Selection for Enhanced Light Non-Aqueous Phase Liquids (LNAPL) Recovery in Contaminated Aquifers

机译:选择表面活性剂泡沫以增强受污染含水层中的轻质非水相液体(LNAPL)回收率

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摘要

Foam is promising for the remediation of non-aqueous phase liquids (NAPL) source zones; however, the production of foam and its behavior in porous media are poorly understood. A methodology for the selection of surfactants suitable for foam production applied to NAPL remediation was developed. Two criteria were initially used for surfactant selection: foamability as evaluated by the Ross-Miles test and interfacial tension reduction measured with the pendant drop method. Three promising surfactants were identified and used in sand column tests: Genapol LRO because it produced the highest foam height in the Ross-Miles test, Ammonyx Lo which exhibited the lowest interfacial tension with p-xylene and had the second highest foam height, and Tomadol 900 because it showed intermediate results in both tests. Viscosity was found to be proportional to foamability. Genapol LRO produced a foam so viscous that it destabilized by the end of the experiment. Ammonyx Lo produced a less viscous foam but with a stable front. Tomadol 900 produced an unstable foam with poor viscosity. Results from column tests gave indications of optimal conditions needed to produce a stable and viscous foam front.
机译:泡沫有望修复非水相液体(NAPL)源区。但是,人们对泡沫的产生及其在多孔介质中的行为了解得很少。开发了一种适用于NAPL修复的适合泡沫生产的表面活性剂选择方法。最初使用两种标准来选择表面活性剂:通过Ross-Miles测试评估的起泡性和使用悬滴法测量的界面张力降低。确定了三种有希望的表面活性剂并用于砂柱测试:Genapol LRO,因为它在Ross-Miles测试中产生的泡沫高度最高; Ammonyx Lo与对二甲苯的界面张力最低,泡沫高度第二高;以及Tomadol 900,因为它在两个测试中均显示中间结果。发现粘度与发泡性成正比。 Genapol LRO产生的泡沫如此粘稠,以至于在实验结束时变得不稳定。 Ammonyx Lo产生的泡沫较不粘,但前端稳定。 Tomadol 900生产的泡沫不稳定,粘度差。柱测试的结果表明了产生稳定和粘稠的泡沫前沿所需的最佳条件。

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