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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Model for the Surface Tension of Dilute and Concentrated Binary Aqueous Mixtures as a Function of Composition and Temperature
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Model for the Surface Tension of Dilute and Concentrated Binary Aqueous Mixtures as a Function of Composition and Temperature

机译:稀释二元水性混合物表面张力模型作为组合物和温度的函数

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摘要

Surface tension dictates fluid behavior, and predicting its magnitude is vital in many applications. Equations have previously been derived to describe how the surface tension of pure liquids changes with temperature, and other models have been derived to describe how the surface tension of mixtures changes with liquid-phase composition. However, the simultaneous dependence of surface tension on temperature and composition for liquid mixtures has been less studied. Past approaches have required extensive experimental data to which models have been fit, yielding a distinct set of fitting parameters at each temperature or composition. Herein, we propose a model that requires only three fitting procedures to predict surface tension as a function of temperature and composition. We achieve this by analyzing and extending the Shereshefsky (j. Colloid Interface Sci. 1967, 24 (3), 317-322), Li et al. (Fluid Phase Equilib. 2000, 175, 185-196), and Connors-Wright (Anal. Chem. 1989, 61 (3), 194-198) models to high temperatures for 15 aqueous systems. The best extensions of the Shereshefsky, Li et al., and Connors Wright models achieve average relative deviations of 2.11%, 1.20%, and 0.62%, respectively, over all systems. We thus recommend the extended Connors Wright model for predicting the surface tension of aqueous mixtures at different temperatures with the tabulated coefficients herein. An additional outcome of this study is the previously unreported equivalence of the Li et al. and Connors Wright models in describing experimental data of surface tension as a function of composition at a single temperature.
机译:表面张力决定了流体行为,并且预测其幅度在许多应用中至关重要。先前已经衍生的方程来描述纯液体的表面张力如何随温度变化,并且已经得出了其他模型来描述混合物的表面张力如何随液相组成而变化。然而,研究了表面张力对液体混合物温度和组合物的同时依赖性。过去的方法需要大量的实验数据,模型适合,在每个温度或组合物中产生不同的拟合参数。这里,我们提出了一种模型,该模型仅需要三个配件程序来预测作为温度和组成的函数的表面张力。我们通过分析和扩展Shereshefsky来实现这一目标(j。胶体接口SCI。1967,24(3),317-322),Li等人。 (流体相位平衡。2000,175,185-196)和Connors-Wright(肛门。Chem.1989,61(3),194-198)模型到15个水系统的高温。 Shereshefsky,Li等人的最佳延伸和连接器赖特模型分别在所有系统上达到2.11%,1.20%和0.62%的平均相对偏差。因此,我们推荐扩展的连接器赖特模型,用于预测含水混合物在不同温度下的水性混合物的表面张力与本文的制表系数。该研究的另一个结果是先前未报告的李等人的等价。并且连接在单个温度下描述表面张力实验数据时的赖特模型。

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