Surface tension models for binary aqueous solutions: a review and intercomparison
Модели поверхностного натяжения для бинарных водных растворов: обзор и сопоставление
2023-01-01
SCID: 54.1/9u43fque
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Sigmoid model (sigmoidal curve fit)binary aqueous solutionselectrolytes and organic solutessurface tension of aqueous solutionssurface-active substances
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Abstract (AI)
The liquid-air surface tension of aqueous solutions is a fundamental quantity in multi-phase thermodynamics and fluid dynamics and thus relevant in many scientific and engineering fields. Various models have been proposed for its quantitative description. This Perspective gives an overview of the most popular models and their ability to reproduce experimental data of ten binary aqueous solutions of electrolytes and organic molecules chosen to be representative of different solute types. In addition, we propose a new model which reproduces sigmoidal curve shapes (Sigmoid model) to empirically fit experimental surface tension data. The surface tension of weakly surface-active substances is well reproduced by all models. In contrast, only few models successfully model the surface tension of aqueous solutions with strongly surface-active substances. For substances with a solubility limit, usually no experimental data is available for the surface tension of supersaturated solutions and the pure liquid solute. We discuss ways in which these can be estimated and emphasize the need for further research. The newly developed Sigmoid model best reproduces the surface tension of all tested solutions and can be recommended as a model for a broad range of binary mixtures and over the entire concentration range.
Key Findings
1
A new empirical Sigmoid model is proposed that reproduces sigmoidal curve shapes and best reproduces surface tension across all tested binary solutions.
2
Few existing models successfully model surface tension for strongly surface-active aqueous solutes.
3
For substances with a solubility limit, experimental data for supersaturated solutions and pure liquid solute are usually unavailable, and methods to estimate these are discussed.
4
Most popular surface-tension models reproduce experimental data well for weakly surface-active aqueous solutes.
5
The Sigmoid model is recommended for a broad range of binary mixtures and the entire concentration range based on intercomparison results.
Research Object
Liquid–air surface tension of binary aqueous solutions (electrolyte and organic solute mixtures)
Research Subject
Comparison and evaluation of models (including a newly proposed Sigmoid empirical model) for reproducing experimental surface-tension vs concentration behavior across ten representative binary aqueous solutions, with focus on model performance for weakly and strongly surface-active solutes and across full concentration ranges
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2023-01-01
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