Wilson Aaron D, Foo Zi Hao, Jayasinghe Ashini S, Stetson Caleb, Lee Hyeonseok, Rollins Harry W, Deshmukh Akshay, Lienhard John H
Chemical Separations Group, Idaho National Laboratory, Idaho Falls, ID 83415-2208, USA.
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139-4307, USA.
Phys Chem Chem Phys. 2024 Jan 3;26(2):749-759. doi: 10.1039/d3cp02003g.
Empirical measurements of solution vapor pressure of ternary acetonitrile (MeCN) HO-NaCl-MeCN mixtures were recorded, with NaCl concentrations ranging from zero to the saturation limit, and MeCN concentrations ranging from zero to an absolute mole fraction of 0.64. After accounting for speciation, the variability of the Henry's law coefficient at vapor-liquid equilibrium (VLE) of MeCN ternary mixtures decreased from 107% to 5.1%. Solute speciation was modeled using a mass action solution model that incorporates solute solvation and ion-pairing phenomena. Two empirically determined equilibrium constants corresponding to solute dissociation and ion pairing were utilized for each solute. When speciation effects were considered, the solid-liquid equilibrium of HO-NaCl-MeCN mixtures appear to be governed by a simple saturation equilibrium constant that is consistent with the binary HO-NaCl saturation coefficient. Further, our results indicate that the precipitation of NaCl in the MeCN ternary mixtures was not governed by changes in the dielectric constant. Our model indicates that the compositions of the salt-induced liquid-liquid equilibrium (LLE) boundary of the HO-NaCl-MeCN mixture correspond to the binary plateau activity of MeCN, a range of concentrations over which the activity remains largely invariant in the binary water-MeCN system. Broader comparisons with other ternary miscible organic solvent (MOS) mixtures suggest that salt-induced liquid-liquid equilibrium exists if: (1) the solution displays a positive deviation from the ideal limits governed by Raoult's law; and (2) the minimum of the mixing free energy profile for the binary water-MOS system is organic-rich. This work is one of the first applications of speciation-based solution models to a ternary system, and the first that includes an organic solute.
记录了三元乙腈(MeCN)-水-NaCl-MeCN混合物溶液蒸气压的实验测量值,其中NaCl浓度从零到饱和极限,MeCN浓度从零到绝对摩尔分数0.64。在考虑了物种形成后,MeCN三元混合物气液平衡(VLE)时亨利定律系数的变异性从107%降至5.1%。使用包含溶质溶剂化和离子对现象的质量作用溶液模型对溶质物种形成进行建模。每种溶质使用两个根据实验确定的与溶质解离和离子对相对应的平衡常数。当考虑物种形成效应时,水-NaCl-MeCN混合物的固液平衡似乎由一个简单的饱和平衡常数控制,该常数与二元水-NaCl饱和系数一致。此外,我们的结果表明,MeCN三元混合物中NaCl的沉淀不受介电常数变化的控制。我们的模型表明,水-NaCl-MeCN混合物盐诱导液-液平衡(LLE)边界的组成对应于MeCN的二元平稳活度,在二元水-MeCN系统中,该浓度范围内活度基本保持不变。与其他三元互溶有机溶剂(MOS)混合物进行的更广泛比较表明,如果满足以下条件,则存在盐诱导液-液平衡:(1)溶液表现出偏离拉乌尔定律所规定的理想极限的正偏差;(2)二元水-MOS系统混合自由能曲线的最小值富含有机物。这项工作是基于物种形成的溶液模型在三元系统中的首批应用之一,也是首个包含有机溶质的应用。