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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Prediction of the Vapor-Liquid Interfacial Tension of Nonassociating and Associating Fluids with the SAFT-VR Density Functional Theory
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Prediction of the Vapor-Liquid Interfacial Tension of Nonassociating and Associating Fluids with the SAFT-VR Density Functional Theory

机译:用SAFT-VR密度泛函理论预测非缔合和缔合流体的汽-液界面张力

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The SAFT-VR DFT Helmholtz free energy density functional [Gloor,G.J.;Jackson,G.;Blas,F.J.;Martin del Rio,E.;de Miguel,E.J.Chem.Phys.2004,121,12740] is used to describe the vapor-liquid interface of nonassociating and associating molecules ranging in size from small molecules to long chains.The functional,which is based on the statistical associating fluid theory for attractive potentials of variable range (SAFT-VR) description of the homogeneous fluid [Gil-Villegas,A.;Galindo,A.;Whitehead,P.J.;Mills,S.J.;Jackson,G.;Burgess,A.N.J.Chem.Phys.1997,106,4168],is constructed by partitioning the free energy density into a reference term (which incorporates all of the short-range interactions and is treated locally) and an attractive perturbation (which incorporates the long-range dispersion interactions).This functional accounts explicitly for the correlations between the segments using a density-averaged correlation function incorporated into the perturbative term in a similar way to that proposed by Toxvaerd.The SAFT-VR DFT formalism is used to examine the vapor-liquid interfacial tension of a number of pure components,including: n-alkanes;small associating molecules,such as water;linear alkan-1-ols;and some selected replacement refrigerants.In the case of the hydrocarbons and other weakly polar substances,the surface tension can be predicted from intermolecular parameters derived in the usual way from the bulk fluid phase equilibria (vapor-pressure and saturated liquid density).By contrast,when one describes the interfacial properties of associating compounds,it is important to include the surface tension data as well as the bulk vapor-liquid phase equilibria in developing the intermolecular potential model.This provides a means of determining the balance between the dispersive and associative (hydrogen bonding) contributions to the intermolecular potential.The use of interfacial data in the refinement of the potential model allows one to obtain a reliable set of parameters,which can be used to predict the bulk and interfacial properties of mixtures for a broad range of thermodynamic conditions.
机译:SAFT-VR DFT亥姆霍兹自由能密度函数[Gloor,GJ; Jackson,G。; Blas,FJ; Martin del Rio,E。; de Miguel,EJChem.Phys.2004,121,12740]用于描述从小分子到长链大小不等的非缔合分子的气液界面。功能是基于统计缔合流体理论对均质流体可变范围的吸引潜力(SAFT-VR)的描述[Gil- Villegas,A。; Galindo,A。; Whitehead,PJ; Mills,SJ; Jackson,G。; Burgess,ANJChem.Phys.1997,106,4168]是通过将自由能密度划分为参考项(包含所有短程相互作用并在本地进行处理)和有吸引力的摄动(包含长程色散相互作用)此功能使用合并在摄动中的密度平均相关函数明确说明了各段之间的相关性用与那个职业相似的方式SAFT-VR DFT形式主义用于检查许多纯组分的汽-液界面张力,包括:正构烷烃;小缔合分子,例如水;线性链烷醇-1;以及一些如果使用碳氢化合物和其他弱极性物质,则可以通过分子法参数预测表面张力,而分子间参数通常是根据体相平衡(蒸气压和饱和液体密度)得出的。一个描述了缔合化合物的界面特性,在建立分子间电势模型时,重要的是要包括表面张力数据以及整体汽液相平衡。这为确定分散和缔合(氢)之间的平衡提供了一种手段。键合)对分子间电位的贡献。在电位模型的细化中使用界面数据可以使人们获得可靠的参数集er,可用于预测各种热力学条件下混合物的体积和界面性质。

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