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A new structure-based model for estimation of true critical volume of multi-component mixtures

机译:一种基于结构的新模型,用于估算多组分混合物的真实临界体积

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In this study, a new quantitative structure-property relationship (QSPR) has been proposed to estimate true vapor-liquid critical volume of multi-component mixtures. In developing this model, 598 experimental data on true critical volume for 110 different binary mixtures were applied. The mixture molecular descriptors were computed according to the molecular descriptors of pure components involved in the mixture and their molar fractions. Enhanced replacement method (ERM), as an effective tool for subset variable selection, was utilized. The proposed model is simple multivariate linear equations with six variables. The prediction capability of the proposed model for different families of compounds was critically analyzed. Besides, the capability of the proposed model has been tested by predicting true critical volume of 7 different multi-component mixtures containing 40 experimental data points. The average absolute relative deviation of the proposed QSPR model over all experimental data is 9.7% and 8.7% for binary mixtures and multi-component mixtures, respectively. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项研究中,提出了一种新的定量结构-性质关系(QSPR),以估算多组分混合物的真实气液临界体积。在开发该模型时,应用了110种不同二元混合物的真实临界体积的598个实验数据。根据混合物中涉及的纯组分的分子描述符及其摩尔分数来计算混合物的分子描述符。利用增强替换方法(ERM)作为选择子集变量的有效工具。所提出的模型是具有六个变量的简单多元线性方程。严格分析了该模型对不同族化合物的预测能力。此外,通过预测包含40个实验数据点的7种不同的多组分混合物的真实临界体积,对所提出模型的功能进行了测试。在所有实验数据中,拟议的QSPR模型的平均绝对相对偏差分别为二元混合物和多组分混合物的9.7%和8.7%。 (C)2016 Elsevier B.V.保留所有权利。

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