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Measurement and PC-SAFT modeling of solid-liquid equilibrium of deep eutectic solvents of quaternary ammonium chlorides and carboxylic acids

机译:季铵氯化物和羧酸深共晶溶剂固体液平衡的测量和PC-SAFT模型

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In this study the solid-liquid equilibria (SLE) of 15 binary mixtures composed of one of three different symmetrical quaternary ammonium chlorides and one of five different fatty acids were measured. The experimental data obtained showed extreme negative deviations to ideality causing large melting temperature depressions (up to 300 K) that are characteristic for deep eutectic systems. The experimental data revealed that cross-interactions between quaternary ammonium salt and fatty acid increase with increasing alkyl chain length of the quaternary ammonium chloride and with increasing chain length of the carboxylic acid. The pronounced decrease of melting temperatures in these deep eutectic systems is mainly caused by strong hydrogen-bonding interactions, and thermodynamic modeling required an approach that takes hydrogen bonding into account. Thus, the measured phase diagrams were modeled with perturbed-chain statistical associating fluid theory based on the classical molecular homonuclear approach. The model showed very good agreement with the experimental data using a semi-predictive modeling approach, in which binary interaction parameters between quaternary ammonium chloride and carboxylic acid correlated with chain length of the components. This supports the experimental findings on the phase behavior and interactions present in these systems and it allows estimating eutectic points of such highly non-ideal mixtures. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项研究中,测量由三种不同对称季氯化物中的一种和五种不同脂肪酸中的一种组成的15个二元混合物的固液平衡(SLE)。所获得的实验数据显示出与引起深度熔化温度凹陷的理想性的极端阴性偏差(高达300k),其是深度共晶体系的特征。实验数据显示,季铵盐和脂肪酸之间的交叉相互作用随着季铵氯化铵的增加和羧酸的链条长度的增加而增加。这些深度共晶体系中熔化温度的明显降低主要是由强的氢键相互作用引起的,并且热力学建模需要一种将氢键合的方法考虑。因此,基于经典分子均核方法的扰动链统计关联流体理论进行了测量的相图。该模型与使用半预测性建模方法的实验数据表现出非常好的同意,其中氨基氯化铵与羧酸之间的二元相互作用参数与组分的链长相关。这支持对这些系统中存在的相行为和相互作用的实验结果,允许估计这种高度非理想混合物的共晶点。 (c)2017 Elsevier B.v.保留所有权利。

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