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Determination of Hildebrand solubility parameter for pure hydrocarbons by incorporating temperature-dependent volume translation into Peng-Robinson equation of state

机译:纯烃的测定通过将温度依赖性体积翻译掺入庞 - 罗宾逊状态的纯烃类

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摘要

To improve the prediction accuracy of solubility parameters of pure hydrocarbons, we incorporate recently proposed temperature-dependent volume translation models into PR-EOS. Four representative volume translation models have been chosen in the present study. On the basis of the different volume-translated EOSs, we derive a set of corresponding equations used for predicting solubility parameter for pure hydrocarbons. Experimentally derived solubility parameter of several hydrocarbons is used to examine the accuracy of predicted solubility parameter by different volume-translated EOSs. Results show that all the temperature-dependent models provide more accurate prediction than the uncorrected PR-EOS model. Magoulas and Tassios (1990) model demonstrates the highest accuracy among the five models. Shi et al. (2018) model is recommended for solubility parameter prediction as it does not lead to the crossover of pressure-volume isotherms over a wider range of temperature and pressure than Magoulas and Tassios (1990) model. (C) 2020 Elsevier B.V. All rights reserved.
机译:为了提高纯烃溶解度参数的预测准确性,我们将最近提出的温度依赖性体积翻译模型纳入PR-EOS。本研究选择了四个代表体积翻译模型。在不同的体积翻译eoss的基础上,我们得出了一组用于预测纯烃的溶解度参数的相应方程。通过不同体积翻译的eoss来检查几种烃的实验衍生的溶解度参数来检查预测溶解度参数的准确性。结果表明,所有温度依赖模型都提供比未校正的PR-EOS型号更精确的预测。 Magoulas和Tassios(1990)模型展示了五种型号中的最高准确性。 Shi等人。 (2018)建议用于溶解度参数预测的模型,因为它不会导致压力容积等温线的交叉在比Magoulas和Tassios(1990)模型更广泛的温度和压力范围内。 (c)2020 Elsevier B.V.保留所有权利。

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