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首页> 外文期刊>The Journal of Chemical Physics >Random surface statistical associating fluid theory: Adsorption of n-alkanes on rough surface
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Random surface statistical associating fluid theory: Adsorption of n-alkanes on rough surface

机译:随机表面统计关联流体理论:在粗糙表面上的N-烷烃吸附

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摘要

Adsorption properties of chain fluids are of interest from both fundamental and industrial points of view. Density Functional Theory (DFT) based models are among the most appropriate techniques allowing to describe surface phenomena. At the same time, Statistical Associating Fluid Theory (SAFT) successfully describes bulk pressure-volume-temperature properties of chain-fluids. In this study, we have developed a novel version of the SAFT-DFT approach entitled Random Surface (RS)-SAFT which is capable of describing adsorption of short hydrocarbons on geometrically rough surfaces. A major advantage of our theory is the application to adsorption on natural rough surfaces with normal and lateral heterogeneity. For this reason, we have proposed a workflow where the surface of a real solid sample is analyzed using a theoretical approach developed in our previous work [T. Aslyamov and A. Khlyupin, J. Chem. Phys. 147, 154703 (2017)] and experimentally by means of low temperature adsorption isotherm measurements for simple fluids. As a result, RS-SAFT can predict adsorption properties of chain fluids taking into account the geometry of the surface sample under consideration. In order to test our workflow, we have investigated hexane adsorption on carbon black with the initially unknown geometry. Theoretical predictions for hexane adsorption at 303 K and 293 K fit corresponding experimental data well. Published under license by AIP Publishing.
机译:链流体的吸附性能来自兴趣的基础和工业观点。基于密度的功能理论(DFT)模型是最合适的技术,允许描述地面现象。同时,统计关联流体理论(SAFT)成功地描述了链液的体积压体温性质。在这项研究中,我们开发了一种新颖的Saft-DFT方法,题为随机表面(RS) - 载物,其能够描述在几何粗糙表面上的短碳氢化合物的吸附。我们理论的一个主要优点是应用于具有正常和横向异质性的自然粗糙表面上的应用。因此,我们提出了一种工作流程,使用我们之前的工作中开发的理论方法分析了真实固体样品的表面[T.亚茉莉和A.Khlyupin,J.Chem。物理。 147,154703(2017)]并通过低温吸附等温线进行实验,用于简单的流体。结果,RS-SAFT可以预测考虑表面样品的几何形状的链流体的吸附性能。为了测试我们的工作流程,我们已经研究了炭黑的己烷吸附,最初未知的几何形状。 303 k和293k己烷吸附的理论预测均匀拟合相应的实验数据。通过AIP发布在许可证下发布。

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