首页> 外文期刊>Journal of Surfactants and Detergents >Adsorption, Desorption and Adsolubilization Properties of Mixed Anionic Extended Surfactants and a Cationic Surfactant
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Adsorption, Desorption and Adsolubilization Properties of Mixed Anionic Extended Surfactants and a Cationic Surfactant

机译:混合阴离子扩展表面活性剂和阳离子表面活性剂的吸附,解吸和增溶性质

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Anionic and cationic surfactant mixtures exhibit desirable synergism, but are limited by their tendency to form precipitates. This research evaluates the adsorption, adsolubilization and desorption of mixtures of carboxylate-based anionic extended surfactants and a pyridinium-based cationic surfactant. The mixture of cetylpyridinium chloride (CPC), selected as the cationic surfactant, with four anionic extended surfactants were studied. The anionic surfactants studied were alkyl propoxylated ethoxylated carboxylate with average number of carbon chain length of 16 and 17 or 16 and 18 with 4 mol of propylene oxide groups and either 2 or 5 mol of ethylene oxide groups. The adsorption of anionic extended and cationic surfactant mixtures onto a negatively charged metal oxide surface(silica dioxide) was evaluated. The adsolubilization of phenylethanol, styrene and ethylcyclohexane were evaluated for these mixed surfactant systems. The desorption potential of individual and mixed surfactant systems was also evaluated by varying the number of washing (desorption) steps. It was found that the plateau adsorption of mixed anionic extended surfactant and cationic surfactant occurred at lower surfactant concentration than that of the CPC alone, although the maximum adsorption capacity of CPC was not enhanced in our mixed surfactant systems. Adsolubilization capacities of these mixed surfactant systems are higher than that of the individual surfactant system. For desorption studies, these mixed surfactant systems showed lower stability than the individual surfactant system.
机译:阴离子和阳离子表面活性剂混合物表现出理想的协同作用,但受其形成沉淀的趋势的限制。这项研究评估了基于羧酸盐的阴离子扩展表面活性剂和基于吡啶鎓的阳离子表面活性剂的混合物的吸附,增溶和解吸。研究了被选作阳离子表面活性剂的十六烷基氯化吡啶鎓(CPC)与四种阴离子扩展表面活性剂的混合物。所研究的阴离子表面活性剂是烷基丙氧基化乙氧基化羧酸盐,其平均碳链长度为16和17或16和18,具有4 mol环氧丙烷基团和2或5 mol环氧乙烷基团。评估了阴离子扩展和阳离子表面活性剂混合物在带负电的金属氧化物表面(二氧化硅)上的吸附。对于这些混合的表面活性剂体系,评估了苯乙醇,苯乙烯和乙基环己烷的增溶作用。还通过改变洗涤(解吸)步骤的数量来评估单个和混合表面活性剂体系的解吸潜力。结果发现,虽然在我们的混合表面活性剂体系中,CPC的最大吸附能力并未提高,但混合的阴离子型扩展表面活性剂和阳离子型表面活性剂的平台吸附却发生在比单独的CPC低的表面活性剂浓度下。这些混合的表面活性剂体系的增溶能力高于单独的表面活性剂体系。对于解吸研究,这些混合的表面活性剂体系显示出比单独的表面活性剂体系更低的稳定性。

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