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Synergistic solubilization of polycyclic aromatic hydrocarbons by mixed anionic-nonionic surfactants

机译:阴离子-非离子混合表面活性剂对多环芳烃的增溶作用

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Water solubility enhancements of naphthalene (Naph), acenaphthylene (Acen), anthracene (An), phenanthrene (Phen) and pyrene (Py) by micellar solutions of single and mixed anionic-nonionic surfactants were measured and compared. Effects of typical inorganic ions, such as NH_4~+, Na~+ and Mg~(2+) coexisted with the organic pollutants (in soils) on water solubilities of polycyclic aromatic hydrocarbons (PAHs) in the presence of single and mixed surfactants were also investigated. Solubilities of PAHs in water are greatly enhanced in a linear fashion by each of Triton X-100 (TX100), Triton X-305 (TX305), Brij 35, and sodium dodecyl sulfate (SDS). Solubility enhancement efficiencies of surfactants above the critical micelle concentration (CMC) follow the order of TX100 > Brij 35 > TX305 > SDS. PAHs are solubilized synergistically in mixed anionic-nonionic surfactant solutions, especially at low surfactant concentrations. The synergistic power of the mixed surfactants is SDS-TX305 > SDS-Brij 35 > SDS-TX100. Synergistic effect of a given mixed-surfactant solution on different PAHs also appears to be linearly related to the solute log K_(ow). The noted synergism for the mixed surfactants is attributed to the formation of mixed micelles, the lower CMC of the mixed-surfactant solutions, and the increase of the solute's molar solubilization ratio or micellar partition coefficients (K_(mc)) because of the lower polarity of the mixed micelles. Suitable quantity of inorganic cations can enhance the solubilization capacities of anionic-nonionic mixed surfactants, the effect being Mg~(2+) > NH_4~+ > Na~+. The water solubility of pyrene was slightly increased by anthracene and significantly increased by 1,2,3-TCB in the presence of SDS-Brij 35. Mixed surfactants may improve the performance of surfactant-enhanced remediation of soils and sediments by decreasing the applied surfactant level and thus the remediation cost.
机译:测量并比较了单一和混合阴离子-非离子表面活性剂的胶束溶液对萘(Naph),ena(Acen),蒽(An),​​菲(Phen)和pyr(Py)的水溶性提高。在单一和混合表面活性剂存在下,典型的无机离子(如NH_4〜+,Na〜+和Mg〜(2+))与有机污染物(在土壤中)共存对多环芳烃(PAHs)水溶性的影响也进行了调查。 Triton X-100(TX100),Triton X-305(TX305),Brij 35和十二烷基硫酸钠(SDS)均以线性方式大大提高了PAHs在水中的溶解度。高于临界胶束浓度(CMC)的表面活性剂的溶解度增强效率遵循TX100> Brij 35> TX305> SDS的顺序。 PAHs在混合的阴离子-非离子表面活性剂溶液中协同增溶,尤其是在低表面活性剂浓度下。混合表面活性剂的协同作用是SDS-TX305> SDS-Brij 35> SDS-TX100。给定的混合表面活性剂溶液对不同PAH的协同作用似乎也与溶质log K_(ow)线性相关。混合表面活性剂的显着协同作用归因于混合胶束的形成,混合表面活性剂溶液的较低CMC以及溶质的摩尔溶解比或胶束分配系数(K_(mc))的增加,因为极性较低混合胶束。适量的无机阳离子可以增强阴离子-非离子混合表面活性剂的增溶能力,其作用为Mg〜(2+)> NH_4〜+> Na〜+。在SDS-Brij 35的存在下,蒽的of溶解度由蒽稍微增加,而由1,2,3-TCB则显着增加。混合表面活性剂可通过减少所施加的表面活性剂来改善土壤和沉积物的表面活性剂修复性能。级别,因此修复成本。

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