Solubility Measurement and Thermodynamic Correlation of 4-(Hydroxymethyl) Benzoic Acid in Nine Pure Solvents and Two Binary Solvent Mixtures at (283.15–323.15) K

Author(s):  
Xiang Kang ◽  
Mengya Li ◽  
Jiahui Li ◽  
Kuo Wang ◽  
Dandan Han ◽  
...  
2020 ◽  
Vol 65 (2) ◽  
pp. 916-922
Author(s):  
Xinyu Liu ◽  
Wanya Li ◽  
Yang He ◽  
Shichao Du ◽  
Haiqing Yin ◽  
...  

2019 ◽  
Vol 25 (2) ◽  
pp. 165-170
Author(s):  
Abolghasem Jouyban ◽  
Elaheh Rahimpour ◽  
William E. Acree Jr.

Background: Recently Sandeepa et al. reported the solubility of benzoic acid in six monosolvents (i.e. tributyl phosphate, diacetone alcohol, methyl-n-propyl ketone, methyl acetate, amyl acetate, and isooctane) and five binary systems (i.e. ethanol + hexane, isopropyl alcohol + hexane and chloroform + hexane, acetone + hexane, and acetone + water) along with some numerical analyses. The reported calculations have been reanalyzed and some recommendations and further computations were proposed. Methods: Further analyses were performed based on combined nearly ideal binary solvent/Redlich-Kister, the modified Wilson model, general single model, Jouyban–Acree model and Jouyban–Acree–van’t Hoff model. Results: The mentioned numerical analyses were used to predict the solubility of benzoic acid in the binary solvent mixtures at various temperatures and the predicted solubility data were compared with their corresponding experimental values by calculating relative deviations. Conclusion: The investigated models provide good estimation of the solubility behavior of benzoic acid in the binary solvent mixtures at various temperatures.


RSC Advances ◽  
2016 ◽  
Vol 6 (105) ◽  
pp. 102947-102955 ◽  
Author(s):  
Deepika Gupta ◽  
Manjeet Jassal ◽  
Ashwini K. Agrawal

The fiber diameters obtained from PVA–DMSO–water ternary system are the result of the interplay between the solvent–solvent and solvent–polymer interactions.


2003 ◽  
Vol 48 (3) ◽  
pp. 736-738 ◽  
Author(s):  
Cassandra I. Monárrez ◽  
Jee H. Woo ◽  
Priscilla G. Taylor ◽  
Anh M. Tran ◽  
William E. Acree

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