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The Properties of Binary Mixtures of Ethoxylated Octyl Phenols with Ethoxylated Fluorinated Alkanols at the Water/Air Interface

机译:水/空气界面处乙氧基化辛基酚与乙氧基化氟代烷醇的二元混合物性质

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Surface tension measurements were carried out for systems containing binary mixtures of ethoxylated tertoctylphenols (with an average of 10 or 16 ethylene oxide groups-HC8PEO10 and HC8PE016, respectively) with perfluorinated n-alcohol ethoxylates (fluoropentanol with an average of 10 ethylene oxide groups FC5EO10, and fluorohexanol with an average of 14 ethylene oxide groups FC6E014). The obtained results and calculations indicate that fluorinated surfactants have the better efficiency and effectiveness in the reduction of surface tension of water that the hydrocarbonated alkyl phenol ethoxylates and that their mole fraction in the mixed monolayer at water-air interface for mixtures containing a 0.2 molar fraction of fluorinated surfactants in bulk phase is considerable higher than in the bulk phase. At concentrations of mixtures corresponding to saturated monolayer at water-air interface there is a synergetic effect in the reduction of γ_(LV) for a mixture of HC8PE016 + FC5EO10 at a 0.2 molar fraction of HC8PE016; however, taking into account the lowest value of the molecular interaction parameter for mixed micelles calculated on the basis of Rosen approach, the result is that the best synergism takes place for mixture of HC8PE016 + FC6E014 at a 0.2 molar fraction of HC8PE016. Moreover, the ability of the mixed monolayer formation relative to the mixed micelle formation varies with the concentration and composition of the studied mixtures.
机译:对包含乙氧基化叔辛基酚(分别平均具有10个或16个环氧乙烷基团-HC8PEO10和HC8PE016)与全氟正醇乙氧基化物(氟戊醇平均具有10个环氧乙烷基团FC5EO10,以及平均14个环氧乙烷基的氟己醇(FC6E014)。所得结果和计算结果表明,氟化表面活性剂在降低水的表面张力方面具有更好的效率和效果,这是因为烃基烷基酚乙氧基化物及其在水-空气界面处的混合单层中的摩尔分数对于含0.2摩尔分数的混合物而言是更好的。本体相中氟化表面活性剂的含量显着高于本体相中的氟化表面活性剂。在与水-空气界面处的饱和单层相对应的混合物浓度下,对于HC8PE016的0.2摩尔分数的HC8PE016 + FC5EO10的混合物,在降低γ_(LV)方面具有协同作用。但是,考虑到基于Rosen方法计算的混合胶束的分子相互作用参数的最小值,结果是,在HC8PE016的0.2摩尔分数下,HC8PE016 + FC6E014的混合物发生了最佳的协同作用。此外,混合单层形成相对于混合胶束形成的能力随所研究混合物的浓度和组成而变化。

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