首页> 外文期刊>Journal of Surfactants and Detergents >Precipitation and Micellar Properties of Novel Mixed Anionic Extended Surfactants and a Cationic Surfactant
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Precipitation and Micellar Properties of Novel Mixed Anionic Extended Surfactants and a Cationic Surfactant

机译:新型混合阴离子扩展表面活性剂和阳离子表面活性剂的沉淀和胶束特性

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Surfactant-modified mineral surfaces can provide both a hydrophobic coating for adsorbing organic contaminants and, in the case of ionic surfactants, a charged exterior for adsorbing oppositely charged species. This research evaluates the precipitation phase boundaries and synergistic behavior of the mixtures of carboxylate-based anionic extended surfactants with a pyridinium-based cationic surfactant. One cationic surfactant (cetylpyridinium chloride) and four anionic extended surfactants were studied. The anionic surfactants studied were ethoxy carboxylate extended surfactants with average carbon chain lengths of either 16 and 17 or 16 and 18 with 4 mol of a propylene oxide group and a different number of moles of an ethylene oxide group (2 and 5 mol). Precipitation phase boundaries of mixed anionic extended surfactants and cationic surfactant were evaluated to ensure that the surface tension studies are in regions without precipitate. Surface tension measurements were conducted to evaluate the critical micelle concentration of individual and mixed surfactant systems. Precipitation phase boundaries of these novel mixed surfactant systems showed greatly reduced precipitation areas as compared to a conventional mixed surfactant system which is attributed to the presence of the ethylene oxide and propylene oxide groups and resulting steric hindrances to precipitation. Moreover, it was demonstrated that the CMC of mixed surfactant systems were much lower than that of individual surfactant systems. Synergism was evaluated in the four systems studied by the β parameter which found that all systems studied exhibited synergism. From these results, these novel mixed surfactant systems can greatly increase formulation space (reduce the precipitation region) while maintaining synergism, although slightly reduced from conventional anionic-cationic mixtures reported previously.
机译:表面活性剂改性的矿物表面既可以提供用于吸附有机污染物的疏水涂层,又可以提供离子表面活性剂(用于离子表面活性剂)以吸附带相反电荷的物质的带电外部。本研究评估了基于羧酸盐的阴离子扩展表面活性剂与基于吡啶鎓的阳离子表面活性剂的混合物的沉淀相界和协同行为。研究了一种阳离子表面活性剂(氯化十六烷基吡啶)和四种阴离子扩展表面活性剂。所研究的阴离子表面活性剂是具有4 mol环氧丙烷基团和不同摩尔数的环氧乙烷基团(2 mol和5 mol)的平均碳链长度为16和17或16和18的乙氧基羧酸酯扩展的表面活性剂。评估了混合阴离子扩展表面活性剂和阳离子表面活性剂的沉淀相边界,以确保表面张力研究在无沉淀的区域进行。进行表面张力测量以评估单个和混合表面活性剂体系的临界胶束浓度。与传统的混合表面活性剂体系相比,这些新型混合表面活性剂体系的沉淀相边界显示出大大减少的沉淀面积,这归因于环氧乙烷和环氧丙烷基团的存在以及由此导致的空间位阻。而且,已证明混合表面活性剂体系的CMC比单独的表面活性剂体系的CMC低得多。通过β参数在所研究的四个系统中评估了协同作用,发现所研究的所有系统均表现出协同作用。从这些结果来看,这些新型的混合表面活性剂体系可以大大增加配方空间(减少沉淀区域),同时保持协同作用,尽管与以前报道的常规阴离子-阳离子混合物相比有所减少。

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