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首页> 外文期刊>Fluid Phase Equilibria >Solid-liquid equilibrium using the SAFT-VR equation of state: Solubility of naphthalene and acetic acid in binary mixtures and calculation of phase diagrams
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Solid-liquid equilibrium using the SAFT-VR equation of state: Solubility of naphthalene and acetic acid in binary mixtures and calculation of phase diagrams

机译:使用SAFT-VR状态方程的固液平衡:萘和乙酸在二元混合物中的溶解度和相图的计算

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摘要

A solid-liquid equilibrium (SLE) thermodynamic model based on the SAFT-VR equation of state (EOS) is presented. The model allows for the calculation of solid-liquid phase equilibria in binary mixtures at atmospheric pressure. The fluid (liquid) phase is treated with the SAFT-VR approach, where molecules are modelled as associating chains of tangentially bonded spherical segments interacting via square-well potentials of variable range. The equilibrium between the liquid and solid phase is treated following a standard thermodynamic method that requires the experimental temperature and enthalpy of fusion of the solute. The model is used to calculate the solubilities of naphthalene and acetic acid in common associating and non-associating organic solvents and to determine the solid-liquid phase behaviour of binary mixtures with simple eutectics. The SAFT-VR pure component model parameters are determined by comparison to experimental vapour pressure and saturated liquid density data with the choice of association models according to the nature of the molecule; in addition, an unlike adjustable parameter (kij) is used to model the solutions. The solubility data of naphthalene and acetic acid in both associating and non-associating solvents are reproduced essentially within the accuracy of the experimental measurements. The phase boundaries and the position of the eutectic points in the binary mixtures considered are, in most cases, reproduced with the accuracy commensurate with the industrial applications. Overall, the results presented show that the SAFT-VR EOS can be used with confidence for the prediction of the SLE of binary systems at atmospheric pressure.
机译:提出了基于SAFT-VR状态方程(EOS)的固液平衡(SLE)热力学模型。该模型允许在大气压力下计算二元混合物中的固液相平衡。流体(液相)用SAFT-VR方法处理,其中分子被建模为通过可变范围的方阱势相互作用的切向键合球形段的缔合链。按照标准的热力学方法处理液相和固相之间的平衡,该方法需要实验温度和溶质的熔融焓。该模型用于计算萘和乙酸在常见的缔合和非缔合有机溶剂中的溶解度,并确定具有简单共晶的二元混合物的固液相行为。通过与实验蒸气压和饱和液体密度数据进行比较,并根据分子的性质选择缔合模型,确定SAFT-VR纯组分模型参数;此外,使用了不同的可调参数(kij)对解决方案进行建模。萘和乙酸在缔合和非缔合溶剂中的溶解度数据基本上都在实验测量的精度范围内再现。在大多数情况下,所复制的二元混合物中的相界和共晶点的位置均以与工业应用相称的精度进行再现。总体而言,给出的结果表明SAFT-VR EOS可以可靠地用于预测大气压下二元系统的SLE。

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