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首页> 外文期刊>The Journal of Chemical Physics >A density functional theory for vapor-liquid interfaces using the PCP-SAFT equation of state
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A density functional theory for vapor-liquid interfaces using the PCP-SAFT equation of state

机译:使用PCP-SAFT状态方程的气液界面密度泛函理论

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A Helmholtz energy functional for inhomogeneous fluid phases based on the perturbed-chain polar statistical associating fluid theory (PCP-SAFT) equation of state is proposed. The model is supplemented with a capillary wave contribution to the surface tension to account for long-wavelength fluctuations of a vapor-liquid interface. The functional for the dispersive attraction is based on a nonlocal perturbation theory for chain fluids and the difference of the perturbation theory to the dispersion term of the PCP-SAFT equation of state is treated with a local density approximation. This approach suggested by Gloor et al. [Fluid Phase Equilib. 194, 521 (2002)] leads to full compatibility with the PCP-SAFT equation of state. Several levels of approximation are compared for the nonlocal functional of the dispersive attractions. A first-order non-mean-field description is found to be superior to a mean-field treatment, whereas the inclusion of a second-order perturbation term does not contribute significantly to the results. The proposed functional gives excellent results for the surface tension of nonpolar or only moderately polar fluids, such as alkanes, aromatic substances, ethers, and ethanoates. A local density approximation for the polar interactions is sufficient for carbon dioxide as a strongly quadrupolar compound. The surface tension of acetone, as an archetype dipolar fluid, is overestimated, suggesting that a nonisotropic orientational distribution function across an interface should for strong dipolar substances be accounted for.
机译:提出了基于扰动链极性统计缔合流体理论(PCP-SAFT)状态方程的非均质Helmholtz能量函数。该模型补充了毛细波对表面张力的影响,以解决气液界面的长波波动。分散吸引的函数基于链流体的非局部扰动理论,并且通过局部密度近似处理扰动理论与PCP-SAFT状态方程的分散项的差异。 Gloor等人建议的这种方法。 [流体相平衡。 194,521(2002)]导致与PCP-SAFT状态方程完全兼容。比较了分散吸引力的非局部函数的几种近似水平。发现一阶非平均场描述优于平均场处理,而包含二阶扰动项对结果的贡献不大。对于非极性或仅中等极性的流体(例如烷烃,芳族物质,醚和乙酸酯)的表面张力,建议的功能性可提供出色的结果。极性相互作用的局部密度近似值足以使二氧化碳作为强四极化合物。作为原型偶极流体的丙酮的表面张力被高估了,这表明对于强偶极物质,应考虑界面上的各向同性取向分布函数。

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