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Semi-analytical nanoscale-extended surface tension correlation

机译:半分析纳米级延伸表面张力相关性

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摘要

Surface tensions (STs) are of critical importance to numerous natural phenomena and practical applications while most existing ST correlations are in the empirical formulations and limited to the bulk phase. In this study, a new semi-analytical correlation based on the perturbation theory from the statistical thermodynamics is initially developed to calculate the STs of the various components in bulk and nanoconfined pores. The newly developed ST correlation is validated to be accurate and generalized in bulk and nanoconfined pores in comparison with the experimentally measured results at a wide range of temperatures. Furthermore, three important patterns with respect to the STs are determined: first, the STs are found to be reduced with the temperature increase but increase when the components become heavier in both bulk and nanoconfined pores; second, the STs of the mixtures tend to be more sensitive to the feed ratios at higher temperatures; last but not least, the nanoscale STs of the pure components are slightly lower than the bulk results at the same conditions.
机译:表面张力(STS)对许多自然现象和实际应用具有至关重要的重要性,而大多数现有的ST相关性在经验制剂中并限于批量相。在该研究中,最初开发了一种基于统计热力学的扰动理论的新分析相关性,以计算散装和纳米覆盖孔中各种组分的ST。与实验测量结果在各种温度下,新开发的ST相关性被验证为准确且纳米核孔中的准确性和广泛化。此外,确定了三个关于STS的重要模式:首先,发现STS在散装和纳米织物孔隙中变得更重的温度增加,但随着温度的增加,速度增加。其次,混合物的STS在较高温度下对饲料比更敏感;最后但并非最不重要的是,纯组分的纳米级STS略低于同一条件的散装结果。

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