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增强型水成膜泡沫(AFFF)在高盐基质中的聚集和界面吸附。

Enhanced aggregation and interfacial adsorption of an aqueous film forming foam (AFFF) in high salinity matrices.

机构信息

Department of Civil and Environmental Engineering, University of California, Berkeley, CA, 94720-1710, USA.

出版信息

Environ Sci Process Impacts. 2023 Dec 13;25(12):2181-2188. doi: 10.1039/d3em00247k.

Abstract

Per- and polyfluoroalkyl substances (PFAS) exist in contaminated groundwater, surface water, soil, and sediments from use of aqueous film forming foams (AFFFs). Under these conditions PFAS exhibit unusual behavior due to their surfactant properties, namely, aggregation and surface activity. Environmental factors such as salinity can affect these properties, and complicate efforts to monitor PFAS. The effect of high salinity matrices on the critical micelle concentration (CMC) of a AFFF formulation manufactured by 3M and the surface accumulation of PFAS was assessed with surface tension isotherm measurements and bench-scale experiments quantifying PFAS at the air-water interface. Conditions typical of brackish and saline waters substantially depressed the CMC of the AFFF by over 50% and increased the interfacial mass accumulation of PFAS in the AFFF mixture by up to a factor of 3, relative to values measured in ultrapure water. These results indicate that high salinity matrices increase the aggregation and surface activity of PFAS in mixtures, which are key properties affecting their transport.

摘要

全氟和多氟烷基物质(PFAS)存在于受污染的地下水、地表水、土壤和沉积物中,这些物质是由于使用了水成膜泡沫(AFFF)。在这些条件下,PFAS 由于其表面活性剂特性,表现出异常的行为,即聚集和表面活性。环境因素,如盐度,会影响这些特性,并使监测 PFAS 的工作复杂化。采用表面张力等温线测量和定量评估空气-水界面处 PFAS 的台式实验,评估了高盐度基质对 3M 制造的 AFFF 配方的临界胶束浓度(CMC)和 PFAS 表面积累的影响。与在超纯水中测量的值相比,典型的咸水和盐水条件使 AFFF 的 CMC 降低了 50%以上,使 AFFF 混合物中 PFAS 的界面质量积累增加了高达 3 倍。这些结果表明,高盐度基质会增加混合物中 PFAS 的聚集和表面活性,这些特性是影响其迁移的关键因素。

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