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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Determination of Phase Equilibria and Densities for the Quaternary System Toluene + Acetone + Phenol + Water
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Determination of Phase Equilibria and Densities for the Quaternary System Toluene + Acetone + Phenol + Water

机译:四元体系甲苯+丙酮+苯酚+水的相平衡和密度的测定

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摘要

The success of modeling mass transfer depends strognly on the accurate description of the physical properties of the system involved. In the case of two liqid phases the knowledge of the liquid-liquid equilibrium is of special importance. This knowledge gains importance when the transfer of multiple species is to be modeled, as more complex interactions have to be considered. These can only be described with advanced mass-transfer models, such as the Stefan-Maxwell model, with a high demand on accuracy in the description of physical properties. The quaternary system toluene + acetone + phenol + water is being considered as a possible new standard test system for the investigation of multicomponent mass transfer in liquid-liquid extraction. Equilibrium data are needed: experimentally determined tie-line data at 20 deg C are now presented for this system. The results are correlated with the UNIQUAC model using different objective funcitons. The resulting calculated data sets are compared considering their accuracy and applicability to multicomponent mass-transfer description. The densities of various mixtures of the system have been measured and correlated.
机译:传质建模的成功很大程度上取决于对所涉及系统物理特性的准确描述。在两个液相阶段,液-液平衡的知识尤为重要。当要对多种物种的转移进行建模时,这种知识就变得越来越重要,因为必须考虑更复杂的相互作用。这些只能用高级传质模型(例如Stefan-Maxwell模型)来描述,对物理性质的描述对准确性有很高的要求。四元体系甲苯+丙酮+苯酚+水被认为是研究液-液萃取中多组分传质的一种可能的新标准测试系统。需要平衡数据:现在提供该系统在20摄氏度下实验确定的联系线数据。结果与使用不同目标函数的UNIQUAC模型相关。考虑到它们的准确性和对多组分传质描述的适用性,比较所得的计算数据集。已经测量并关联了系统中各种混合物的密度。

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