首页> 外文期刊>The Journal of Supercritical Fluids >High-pressure multiphase behavior of the ternary systems (ethene plus water plus 1-propanol) and (ethene plus water plus 2-propanol) Part II: Modeling
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High-pressure multiphase behavior of the ternary systems (ethene plus water plus 1-propanol) and (ethene plus water plus 2-propanol) Part II: Modeling

机译:三元系统(乙烯加水加1-丙醇)和(乙烯加水加2-丙醇)三元体系的高压多相行为第二部分:建模

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Calculation results for the high-pressure liquid-liquid-vapor phase equilibrium of two ternary systems (ethene + water + 1-propanol) and (ethene + water + 2-propanol) are presented and compared with experimental data from the first part of this series of publications. The experimental data cover the temperature range from 293 K to 333 K at pressures up to 20 MPa. The calculation results are based on the Peng-Robinson equation of state (EoS) which was combined with various mixing rules (by van der Waals, by Panagiotopoulos and Reid, by Sandoval et al. as well as by three modifications of the mixing rule introduced by Huron and Vidal). The prediction results are based on parameters which were determined from binary mixture data. These predictions are in qualitative agreement with the experimental data (e.g., pattern and location of the high-pressure phase boundaries and existence of a liquid-liquid-vapor equilibrium). The extent of the two-phase and three-phase regions and the compositions of the coexisting phases depend strongly on the mixing rule. A good agreement between the experimental data and the calculation results was not achieved. However, a good agreement was achieved by adjusting the interaction parameters to the experimental high-pressure three-phase equilibrium data of the ternary systems instead. (c) 2006 Elsevier B.V. All rights reserved.
机译:给出了两个三元体系(乙烯+水+ 1-丙醇)和(乙烯+水+ 2-丙醇)三元体系高压液相平衡计算结果,并与第一部分的实验数据进行了比较。系列出版物。实验数据涵盖了在最高20 MPa的压力下从293 K到333 K的温度范围。计算结果基于Peng-Robinson状态方程(EoS),并结合了各种混合规则(van der Waals,Panagiotopoulos和Reid,Sandoval等人)以及引入的三种混合规则修改由Huron和Vidal撰写)。预测结果基于从二元混合数据确定的参数。这些预测与实验数据(例如,高压相边界的模式和位置​​以及液-液-汽平衡的存在)在质量上一致。两相和三相区域的范围以及共存相的组成在很大程度上取决于混合规则。实验数据与计算结果之间没有很好的吻合。但是,通过将相互作用参数调整为三元系统的实验高压三相平衡数据,可以达成良好的协议。 (c)2006 Elsevier B.V.保留所有权利。

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