...
首页> 外文期刊>Fluid Phase Equilibria >Simultaneous prediction of vapour-liquid and liquid-liquid equilibria (VLE and LLE) of aqueous mixtures with the SAFT-γ group contribution approach
【24h】

Simultaneous prediction of vapour-liquid and liquid-liquid equilibria (VLE and LLE) of aqueous mixtures with the SAFT-γ group contribution approach

机译:用SAFT-γ基团贡献法同时预测含水混合物的汽-液和液-液平衡(VLE和LLE)

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Group contribution (GC) methodologies have been combined with the statistical associating fluid theory (SAFT), to couple the predictive capabilities of GC methods with the accuracy of the SAFT description of complex fluids and fluid mixtures. An example of such an procedure is the SAFT-γ group contribution approach [A. Lymperiadis, C.S. Adjiman, A. Galindo, G. Jackson, J. Chem. Phys., 127 (2007) 234903], which was developed based on the SAFT-VR equation of state and employs a heteronuclear molecular model of fused segments which represent the various chemical groups. In this work we examine the predictive capabilities of the method focusing on the fluid phase behaviour of aqueous mixtures. Within SAFT-γ it is often possible to obtain information for both the like and unlike group interactions from pure component fluid thermophysical data alone. When this is not possible, e.g., in the case of water where the whole molecule represents a distinct chemical "group" the interactions can be obtained, in the usual activity coefficient GC fashion, from a minimal amount of experimental fluid phase equilibrium data of the appropriate mixtures. The group like and unlike parameters can then be successfully transferred to represent the thermophysical properties and fluid phase behaviour of a wide range of mixtures in a predictive manner. The binary systems investigated in this work are aqueous solutions of alkanes and alkanols. The successful description of the highly non-ideal fluid phase behaviour of systems of this kind with transferable interaction parameters within the SAFT-γ approach and the simultaneous prediction of both vapour-liquid and liquid-liquid equilibria using the same parameters are the key contributions of our work.
机译:小组贡献(GC)方法已与统计关联流体理论(SAFT)相结合,以将GC方法的预测能力与复杂流体和流体混合物的SAFT描述的准确性相结合。这种程序的一个例子是SAFT-γ基团贡献法[A. Lymperiadis,C.S。Adjiman,A。Galindo,G。Jackson,J。Chem。 Phys。,127(2007)234903],其是基于SAFT-VR状态方程开发的,并采用了代表各种化学基团的融合链段的异核分子模型。在这项工作中,我们检查了该方法的预测能力,重点是水性混合物的液相行为。在SAFT-γ中,通常可能仅从纯组分流体热物理数据中获得类似或不同的组相互作用的信息。当不可能做到这一点时,例如,在水中整个分子代表不同的化学“基团”的情况下,可以通过通常的活度系数GC方式,从最少量的实验液相平衡数据中获得相互作用。适当的混合物。然后可以成功地以相似的方式将相似和不同的组参数传递出来,以预测的方式表示各种混合物的热物理性质和液相行为。在这项工作中研究的二元体系是烷烃和链烷醇的水溶液。在SAFT-γ方法内成功地描述了具有可转换相互作用参数的此类系统的高度非理想流体相行为,并使用相同的参数同时预测了汽-液和液-液平衡,这是该系统的关键贡献。我们的工作。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号