Experimental Data and Modeling of Solid–Liquid Equilibria of Binary Systems Containing Dibenzofuran and Long Chain n-alkanes

Solid–liquid equilibria (SLE) of binary mixtures of several n -alkanes ( n -octadecane, n -eicosane, n -tetracosane, n -pentacosane, n -triacontane) and dibenzofuran covering the whole composition range were measured by differential scanning calorimetry (DSC) in a temperature range of 301–356 K. The...

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Veröffentlicht in:Journal of solution chemistry 2023-10, Vol.52 (10), p.1083-1106
Hauptverfasser: Boudouh, Issam, Coto, Baudilio, González, Juan Antonio, Wazeer, Irfan, Salleh, M. Zulhaziman M., Djemai, Ismahane, Robustillo, Maria Dolores, Hadj-Kali, Mohamed K.
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Sprache:eng
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Zusammenfassung:Solid–liquid equilibria (SLE) of binary mixtures of several n -alkanes ( n -octadecane, n -eicosane, n -tetracosane, n -pentacosane, n -triacontane) and dibenzofuran covering the whole composition range were measured by differential scanning calorimetry (DSC) in a temperature range of 301–356 K. The dibenzofuran and the n -alkanes are completely miscible in the liquid state but non-miscible in the solid state, and in the context of this work, they seem to exhibit eutectic behavior. A linear trend is obtained for the eutectic temperature and eutectic composition versus the number of carbon atoms of n -alkane. The experimental data were compared to predictions made by using the ideal solution model, the DISQUAC model and several versions of the UNIFAC model, including the classical UNIFAC, the modified versions of Lyngby and Dortmund, and the recently proposed modified UNIFAC (NIST) model, to account for non-ideality in the liquid phase. Moreover, the experimental data were also compared with COSMO-RS predictions that utilize quantum chemical calculations and statistical thermodynamics to interpret the behavior of molecular interactions in the binary mixture. A good agreement was obtained between the predicted and the experimental temperatures.
ISSN:0095-9782
1572-8927
DOI:10.1007/s10953-023-01297-w