Vapor–Liquid Equilibrium Phase Behavior for Binary Mixtures Isopropyl Alcohol and Methyl Ethyl Ketone with Dimethyl Sulfoxide

IF 2 3区 工程技术 Q3 CHEMISTRY, MULTIDISCIPLINARY
Dongmei Xu, Nan An, Zhe Zhang, Jun Gao*, Lianzheng Zhang, Yixin Ma, Yanli Gao* and Yinglong Wang, 
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引用次数: 0

Abstract

For separation of the azeotropic mixture of isopropyl alcohol and methyl ethyl ketone by extractive distillation with dimethyl sulfoxide as an extractant, the isobaric vapor–liquid phase equilibrium (VLE) data for the binary mixtures (isopropyl alcohol + dimethyl sulfoxide) and (methyl ethyl ketone + dimethyl sulfoxide) and the ternary mixture (isopropyl alcohol + methyl ethyl ketone + dimethyl sulfoxide) were ascertained at a temperature range from 352.75 to 463.79 K and 101.3 kPa. The coherence of the measured VLE data was checked using the van Ness method and Wisniak’s L–W method. The determined VLE data for the mixtures was correlated by the Wilson, UNIQUAC, and NRTL equations. The parameters pertaining to the models were regressed for the binary systems. The findings demonstrated that the three equations were capable of fitting the ascertained VLE data. The VLE data of the ternary mixture comprising isopropyl alcohol, methyl ethyl ketone, and dimethyl sulfoxide were forecasted utilizing the NRTL, UNIQUAC, and Wilson equations, employing the fitted model parameters. The results displayed an agreement between the collected data and the computed values.

Abstract Image

异丙醇和甲基乙基酮与二甲基亚砜二元混合物的气液平衡相行为
以二甲亚砜为萃取剂,通过萃取蒸馏分离异丙醇和甲乙酮的共沸混合物、确定了二元混合物(异丙醇 + 二甲亚砜)和(甲乙酮 + 二甲亚砜)以及三元混合物(异丙醇 + 甲乙酮 + 二甲亚砜)的等压气液相平衡(VLE)数据,温度范围为 352.75 至 463.79 K 和 101.3 kPa。使用 van Ness 法和 Wisniak 的 L-W 法检查了测量的 VLE 数据的一致性。确定的混合物 VLE 数据通过 Wilson、UNIQUAC 和 NRTL 方程进行关联。与模型有关的参数对二元体系进行了回归。结果表明,这三个方程能够拟合已确定的 VLE 数据。利用 NRTL、UNIQUAC 和 Wilson 方程,并采用拟合模型参数,预测了由异丙醇、甲乙酮和二甲亚砜组成的三元混合物的 VLE 数据。结果显示,收集的数据与计算值一致。
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来源期刊
Journal of Chemical & Engineering Data
Journal of Chemical & Engineering Data 工程技术-工程:化工
CiteScore
5.20
自引率
19.20%
发文量
324
审稿时长
2.2 months
期刊介绍: The Journal of Chemical & Engineering Data is a monthly journal devoted to the publication of data obtained from both experiment and computation, which are viewed as complementary. It is the only American Chemical Society journal primarily concerned with articles containing data on the phase behavior and the physical, thermodynamic, and transport properties of well-defined materials, including complex mixtures of known compositions. While environmental and biological samples are of interest, their compositions must be known and reproducible. As a result, adsorption on natural product materials does not generally fit within the scope of Journal of Chemical & Engineering Data.
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