Solubility and thermodynamic parameters of nicotinic acid in different solvents

•Solubility of nicotinic acid in nine different solvents was performed.•Two different methods were compared to determine the solubility.•Thermodynamic properties were obtained for each recrystallization in each solvent.•Thermodynamic models were used to evaluate the activity coefficients. Nicotinic...

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Veröffentlicht in:The Journal of chemical thermodynamics 2023-09, Vol.184, p.107084, Article 107084
Hauptverfasser: Silveira, Marcel, Mayer, Diego A., Rebelatto, Evertan A., Araújo, Pedro H.H., Vladimir Oliveira, J.
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Sprache:eng
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Zusammenfassung:•Solubility of nicotinic acid in nine different solvents was performed.•Two different methods were compared to determine the solubility.•Thermodynamic properties were obtained for each recrystallization in each solvent.•Thermodynamic models were used to evaluate the activity coefficients. Nicotinic acid is an important compound needed for the body to keep proper functioning and stay healthy. The determination of solubility parameters in different solvents can be useful for operations such as crystallization or encapsulation of nicotinic acid. In this study, we critically evaluated the solubility of nicotinic acid in nine solvents: water, methanol, ethanol, propanol, propan-2ol, butanol, acetone, ethyl acetone and dimethyl sulfoxide (DMSO). Solubility data are provided as mole fractions of solvent versus temperature. Results showed that DMSO afforded the highest nicotinic acid solubility, greater than the ideal solubility values. Thermodynamic parameters such as the activity coefficient, melting temperature and enthalpy of fusion were determined by differential scanning calorimetry. Non-predictive activity coefficient models were obtained to represent the experimental data through Margules, van Laar, Wilson, NRTL, and UNIQUAC equations. The van Laar, Wilson, and NRTL models showed broadly similar performance. The UNIQUAC model showed an optimum performance for six of the nine solvents.
ISSN:0021-9614
1096-3626
DOI:10.1016/j.jct.2023.107084