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Predictive evaluation of phase equilibria in biofuel systems using molecular thermodynamic models

机译:使用分子热力学模型预测生物燃料系统中的相平衡

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In this work an analysis of the predictive capacity of two molecular models was evaluated on phase equilibrium of systems involved in the biofuel processing. Group Contribution- Polar Perturbed- Chain Statistical Associating Fluid Theory (GC-PPC-SAFT) and Monte Carlo simulation were used. Predictive multiphase equilibria at low and high pressures were computed for alcohol + ethyl or methyl esters, alcohol + glycerol, water + glycerol and ethanol + water. An analysis of different association schemes of glycerol was performed. Heat of mixing was also used to assess the behavior of some systems. The predictions showed to be consistent with VLE data, with deviations <5% for alcohols + esters and alcohols + glycerol, water + glycerol; and 5.4% for ethanol + water. Studies using heats of mixing predicted by GC-PPC-SAFT and structural information provided by molecular simulation indicated the Scheme 4C is the most appropriate to describe the glycerol molecule. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项工作中,对两个分子模型的预测能力进行了分析,以评估参与生物燃料处理的系统的相平衡。使用组贡献-极摄动-链统计缔合流体理论(GC-PPC-SAFT)和蒙特卡罗模拟。计算了在低压和高压下的预测性多相平衡,其中包括醇+乙基或甲基酯,醇+甘油,水+甘油和乙醇+水。进行了甘油的不同缔合方案的分析。混合热还用于评估某些系统的行为。预测结果与VLE数据一致,醇+酯和醇+甘油,水+甘油的偏差<5%。乙醇+水为5.4%。使用GC-PPC-SAFT预测的混合热和分子模拟提供的结构信息进行的研究表明,方案4C最适合描述甘油分子。 (C)2016 Elsevier B.V.保留所有权利。

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