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Volumetric and Surface Properties of Short Chain Alcohols in Aqueous Solution–Air Systems at 293 K

机译:水溶液-空气系统中293 K下短链醇的体积和表面性质

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摘要

From measurements of the surface tension, density, viscosity and light scattering of aqueous solutions of methanol, ethanol and propanol at 293 K, their activity in the surface monolayer, surface excess concentration, and apparent and partial molar volume were determined. The surface excess concentration of alcohols at the water–air interface was determined from the Gibbs equation by using both the alcohol's activity and their molar fraction in the bulk phase and recalculated by using the Guggenheim–Adam equation. The values of the surface excess concentration determined from the Gibbs equation were also applied to determine the standard Gibbs energy of alcohol adsorption at the water–air interface from Langmuir’s equation and compared to those determined from that of Aronson and Rosen.Electronic supplementary materialThe online version of this article (doi:10.1007/s10953-012-9935-z) contains supplementary material, which is available to authorized users.
机译:通过测量293 K下甲醇,乙醇和丙醇水溶液的表面张力,密度,粘度和光散射,可以确定它们在表面单层中的活性,表面过量浓度以及表观和部分摩尔体积。水-空气界面处的醇表面过量浓度是根据吉布斯方程通过使用醇的活性及其在本体相中的摩尔分数确定的,并使用古根海姆-亚当方程进行了重新计算。由吉布斯方程确定的表面过量浓度值也用于根据朗缪尔方程确定水-空气界面上酒精吸附的标准吉布斯能量,并与由阿隆森和罗森确定的标准吉布斯能量进行比较。电子补充材料在线版本本文(doi:10.1007 / s10953-012-9935-z)的其中包含补充材料,授权用户可以使用。

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