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Aggregate-based sub-CMC Solubilization of Hexadecane by Surfactants

机译:表面活性剂基于聚集体的十六烷对CMC的增溶作用

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摘要

Solubilization of hexadecane by two surfactants, SDBS and Triton X-100, at concentrations near the critical micelle concentration (CMC) and the related aggregation behavior was investigated in this study. Solubilization was observed at surfactant concentrations lower than CMC, and the apparent solubility of hexadecane increased linearly with surfactant concentration for both surfactants. The capacity of SDBS to solubilize hexadecane is stronger at concentrations below CMC than above CMC. In contrast, Triton X-100 shows no difference. The results of dynamic light scattering (DLS) and cryogenic TEM analysis show aggregate formation at surfactant concentrations lower than CMC. DLS-based size of the aggregates (d) decreases with increasing surfactant concentration. Zeta potential of the SDBS aggregates decreases with increasing SDBS concentration, whereas it increases for Triton X-100. The surface excess (Γ) of SDBS calculated based on hexadecane solubility and aggregate size data increases rapidly with increasing bulk concentration, and then asymptotically approaches the maximum surface excess (Γmax). Conversely, there is only a minor increase in Γ for Triton X-100. Comparison of Γ and d indicates that excess of surfactant molecules at aggregate surface has great impact on surface curvature. The results of this study demonstrate formation of aggregates at surfactant concentrations below CMC for hexadecane solubilization, and indicate the potential of employing low-concentration strategy for surfactant application such as remediation of HOC contaminated sites.
机译:在本研究中,研究了在接近临界胶束浓度(CMC)的浓度下,通过两种表面活性剂SDBS和Triton X-100对十六烷的增溶作用及其相关的聚集行为。在低于CMC的表面活性剂浓度下观察到增溶作用,十六烷的表观溶解度随两种表面活性剂浓度的增加而线性增加。在低于CMC的浓度下,SDBS溶解十六烷的能力强于高于CMC的浓度。相反,Triton X-100则没有差异。动态光散射(DLS)和低温TEM分析的结果表明,在表面活性剂浓度低于CMC的情况下会形成聚集体。基于DLS的聚集体尺寸(d)随着表面活性剂浓度的增加而减小。 SDBS聚集体的Zeta电位随着SDBS浓度的增加而降低,而对于Triton X-100则增加。基于十六烷溶解度和聚集体尺寸数据计算的SDBS的表面过量(Γ)随着体积浓度的增加而迅速增加,然后渐近地接近最大表面过量(Γmax)。相反,Triton X-100的Γ仅有很小的增加。 Γ和d的比较表明,聚集体表面过量的表面活性剂分子对表面曲率有很大影响。这项研究的结果表明,在低于CMC的表面活性剂浓度下可形成聚集体以进行十六烷溶解,并表明采用低浓度策略进行表面活性剂应用(例如修复HOC污染部位)的潜力。

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