By Trevor M. Letcher

This new e-book discusses very important issues on essentially the most uncomplicated of thermodynamic houses, particularly Solubility - a estate which underlies such a lot commercial strategies. the target of the booklet is to assemble new, interesting and disparate subject matters, all relating to Solubility, in one quantity, in order that readers can expand their horizons and relate hitherto unrelated issues, resulting in cutting edge and inventive ideas.

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1985, 16, 129. 4. E. , 1986, 27, 233. 5. E. Wilhelm, Thermochim. Acta, 1987, 119, 17. 16 Chapter 1 6. E. Wilhelm, Thermochim. Acta, 1990, 162, 43. 7. M. N. G. Azevedo, Molecular Thermodynamics of Fluid-Phase Equilibria, 3rd edn, Prentice-Hall PTR, UpperSaddle River, NJ, 1999. 8. F. Kohler, J. Fischer and E. Wilhelm, J. Mol. , 1982, 84, 245. 9. R. P. Handa, R. Battino and E. Wilhelm, J. Phys. , 1981, 85, 3230. 10. R. Rettich, R. Battino and E. Wilhelm, J. Chem. , 2000, 32, 1145. 11. R. , 1984, 15, 231.

1973, 70, 249. 22. G. E. Waghorne, Chem. Soc. , 1980, 9, 381. 23. C. T. Hefter and Y. Marcus, Chem. , 2000, 100, 819. 1 Introduction A prerequisite for the synthesis and design of thermal separation processes is a reliable knowledge of the phase equilibrium behavior of the system to be separated. Depending on the separation process, different phase equilibria are of importance. While for the design of distillation processes the vapor–liquid equilibrium (VLE) behavior is required, for absorption, extraction and crystallization processes the solubility of gases, liquids or solids in the liquid phase or the supercritical fluid has to be known.

Chem. , 1974, 96, 5701. 18. S. Pitzer, J. , 1975, 4, 249. 19. Y. Marcus, Pure Appl. , 1985, 57, 1103. 20. P. Bennetto, Ann. , A, Phys. Inorg. , 1973, 70, 223. 21. G. Cox, Ann. , A, Phys. Inorg. , 1973, 70, 249. 22. G. E. Waghorne, Chem. Soc. , 1980, 9, 381. 23. C. T. Hefter and Y. Marcus, Chem. , 2000, 100, 819. 1 Introduction A prerequisite for the synthesis and design of thermal separation processes is a reliable knowledge of the phase equilibrium behavior of the system to be separated. Depending on the separation process, different phase equilibria are of importance.

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