Generalized Pitzer Correlation for Density Calculations of Ionic Liquids

Q4 Chemical Engineering ASEAN Journal of Chemical Engineering Pub Date : 2021-06-30 DOI:10.22146/ajche.60787
Jesus Patrick E. Nuqui, R. Damalerio, Sychheng Meas, Socheata Yem, A. Soriano
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引用次数: 1

Abstract

The density of ionic liquids is an important design parameter for its utilization as a chemical process solvent. In this study, a generalized Pitzer-type correlation for calculating the density of ionic liquids with the use of reduced temperature (TR), reduced pressure (PR), and acentric factor (ω) as parameters is proposed. Experimental density data were obtained from several references through the IUPAC Ionic Liquids Database. Expansion of the terms as well as integrating the ionic liquid molecular weight was attempted to determine the accuracy improvement of the model in predicting densities at 0.1 MPa. Then, the obtained model was modified by further truncation to include the pressure effects for densities at higher pressures. MATLAB software was used to determine the optimal virial coefficients for the proposed correlations. The percent average absolute deviation (%AAD) was applied to calculate the variation between the experimental and calculated density values. It was concluded that the eight (8) coefficient correlation equation with molecular weight for densities at 0.1 MPa had a %AAD of 4.7537%. Upon modifying the correlation to include pressure effects, the resulting modified equation had an overall %AAD of 4.7174%.
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离子液体密度计算的广义Pitzer关联
离子液体的密度是其作为化学过程溶剂使用的一个重要设计参数。在这项研究中,提出了一种广义的Pitzer型关联式,以降低的温度(TR)、降低的压力(PR)和偏心因子(ω)为参数来计算离子液体的密度。实验密度数据是通过IUPAC离子液体数据库从一些参考文献中获得的。试图对项进行扩展以及对离子液体分子量进行积分,以确定模型在预测0.1MPa下密度时的准确性改进。然后,通过进一步截断来修改所获得的模型,以包括在更高压力下密度的压力效应。使用MATLAB软件来确定所提出的相关性的最优维里系数。百分比平均绝对偏差(%AAD)用于计算实验密度值和计算密度值之间的变化。得出的结论是,对于0.1MPa下的密度,八(8)系数与分子量的相关方程的%AAD为4.7537%。在修改相关性以包括压力效应后,得到的修改方程的总%AAD为4.7 174%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ASEAN Journal of Chemical Engineering
ASEAN Journal of Chemical Engineering Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
15
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