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首页> 外文期刊>The Korean journal of chemical engineering >Measurement and modelling of phase equilibria for ethanol+water+1-pentanol at isobaric condition
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Measurement and modelling of phase equilibria for ethanol+water+1-pentanol at isobaric condition

机译:等压条件下乙醇+水+ 1-戊醇相平衡的测量和建模

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In the same way as in other processes, the simulation of the distillation of wine and must is a challenging task due to of the lack of thermodynamic information because of scarcity of accurate studies of phase equilibria. Simulation of these processes is rather complicated because of the presence of polar substances (called congeners) at very low concentration. These congeners are essential enological components of the organoleptic matrix, so the availability of accurate studies and quality data is of primary interest. This work studies the phase behaviour of the ternary system ethanol+water+1-pentanol at 101.3 kPa, being the third compound one of the most important legal congeners in common alcoholic distillation. Experimental results showed that this system is partially miscible and exhibits two binary minimum azeotropes. Prediction of activity coefficients and equilibrium compositions with different UNIFAC group contribution models showed poor accurate results. Consistency of experimental data was tested by the McDermott-Ellis method. In addition, available literature was compared and commented upon. The lack of experimental data in multicomponent alcoholic distillation mixtures and the low reliability of the group contribution methods suggest a prudent work into simulation of this kind of distillation processes.
机译:与其他方法一样,由于缺乏精确的相平衡研究,因此缺乏热力学信息,对酒和酒的蒸馏进行模拟也是一项艰巨的任务。由于存在极低浓度的极性物质(称为同源物),因此这些过程的模拟相当复杂。这些同类物是感官基质的必不可少的酶学组成部分,因此,准确研究和质量数据的可用性是首要关注的问题。这项工作研究了三元体系乙醇+水+1-戊醇在101.3 kPa时的相行为,它是普通酒精蒸馏中最重要的合法同类物中的第三种化合物。实验结果表明,该系统可部分混溶,并具有两个二元最小共沸物。用不同的UNIFAC组贡献模型预测活性系数和平衡组成显示出较差的准确结果。实验数据的一致性通过McDermott-Ellis方法进行了测试。此外,对现有文献进行了比较和评论。多元醇蒸馏混合物中缺乏实验数据,基团贡献方法的可靠性低,这表明对这种蒸馏过程的模拟应谨慎进行。

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