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Wettability Hysteresis And Its Implications For Dnapl Source Zone Distribution

机译:润湿滞后及其对Dnapl源区分布的影响

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Subsurface heterogeneity at sites contaminated with nonaqueous phase liquids (NAPLs) reduces the effectiveness of traditional remediation measures. One cause may be the increased proportion of NAPL that is hydraulically isolated due to capillary trapping in heterogeneously-wetted materials. This study examines the wettability of ten materials, ranging from minerals, such as calcite and dolomite, to carbonaceous materials, such shale and coal, in air and water, NAPL and air, and NAPL and water systems. The wettability differed depending on which phase the solid material was initially immersed in: the less crystalline solids, if initially contacted by water were water-wet, but if initially contacted by NAPL were NAPL-wet. This difference, termed here wettability hysteresis, was observed for a suite of halogenated NAPLs and was independent of equilibration time. The degree of wettability hysteresis was greatest in the NAPL and water systems, with the magnitude of the difference increasing with the carbonaceous materials. Since the degree of capillary trapping in subsurface materials is related to wettability, the phenomenon of wettability hysteresis suggests that system history is a factor that may increase the heterogeneity of NAPL source zones.
机译:非水相液体(NAPL)污染场地的地下异质性降低了传统补救措施的有效性。原因之一可能是由于异质润湿材料中的毛细管捕集而导致液压隔离的NAPL比例增加。这项研究检查了十种材料在空气和水中,NAPL和空气以及NAPL和水系统中的润湿性,从方解石和白云石等矿物到页岩和煤等碳质材料。润湿性的不同取决于固体材料最初浸入的阶段:结晶度较低的固体(如果最初与水接触,则是水润湿的),但如果最初与NAPL接触,则是NAPL润湿的。对于一组卤化的NAPL,观察到了这种差异,此处称为润湿性滞后,并且与平衡时间无关。在NAPL和水系统中,润湿性滞后程度最大,随着含碳材料的不同,差异的幅度会增加。由于地下材料中的毛细管捕集程度与润湿性有关,因此润湿滞后现象表明系统历史是可能增加NAPL源区非均质性的因素。

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