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Sorption Behavior of Polycyclic Aromatic Hydrocarbons in Soil-Water System Containing Nonionic Surfactant

机译:含非离子表面活性剂的土壤-水体系中多环芳烃的吸附行为

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This study examined the sorption behavior of PAHs (solutes) in soil-water systems containing surfactants with the objectives of better understanding the fate of contaminants in natural systems and the feasibility of using surfactants for remediation of contaminated soils. Batch studies on the sorption of three PAHs (naphthalene, acenaphthene, and phenanthrene) from water to four different soils with and without a non-ionic surfactant, Triton X-100, were conducted. The ratio of apparent PAH sorption coefficients (K_d*), that is, when Triton X-100 is added, to the intrinsic coefficients (K_d), that is, without the surfactant, varied from greater to less than 1, depending on the system. When Triton X-100 initial concentration (X_0) is less than 2CMC (critical micelle concentration), the K_d*/K_d values for all three PAHs are larger than 1 on low-f_(oc) soils, which disfavors the use of Triton X-100 for surfactant-enhanced remediation (SER) of contaminated soils. However, for phenanthrene on high-f_(oc) soils at low to moderate X_0, K_d*/K_d < 1 occurred, showing enhancement of the PAH mobility and SER efficiency. The K_d*/K_d of a PAH with four different soils tested decreases with increasing soil f_(oc), whether K_d*/K_d is greater or less than 1. The sorption coefficients of PAHs with sorbed TX-100 (K_(sf)) are calculated and evaluated.
机译:这项研究检查了PAHs(溶质)在含有表面活性剂的土壤-水系统中的吸附行为,目的是更好地了解自然系统中污染物的去向以及使用表面活性剂修复受污染土壤的可行性。进行了批量研究,研究了在有和没有非离子表面活性剂Triton X-100的情况下,三种水中多环芳烃(萘,和菲)从水中吸附到四种不同的土壤上的情况。当添加Triton X-100时,表观PAH吸附系数(K_d *)与本征系数(K_d)(即没有表面活性剂)的比值从大于到小于1取决于系统。当Triton X-100的初始浓度(X_0)小于2CMC(临界胶束浓度)时,在低f_(oc)土壤上,所有三个PAH的K_d * / K_d值都大于1,这不利于Triton X的使用。 -100用于污染土壤的表面活性剂强化修复(SER)。但是,对于X_0至中低X_0的高f_(oc)土壤上的菲,会发生K_d * / K_d <1,这表明PAH迁移率和SER效率增强。无论K_d * / K_d大于还是小于1,在四种不同土壤中测试的PAH的K_d * / K_d随土壤f_(oc)的增加而降低。吸附TX-100的PAHs的吸附系数(K_(sf))计算和评估。

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