Title of article
A differential approach to calculating osmotic equilibrium for multisolvent systems
Author/Authors
Pedro de Alcântara Pessôa Filho، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2006
Pages
13
From page
22
To page
34
Abstract
A differential approach to the calculation of osmotic pressure of multisolvent systems within the Lewis–Randall framework is presented in this paper. Exact differential equations relating the osmotic pressure and the system composition along paths of constant solvent chemical potential are obtained and numerically solved. Although even for the simple case of an ideal solution no analytic expression for the osmotic pressure can be obtained, the system of differential equations does not pose numerical difficulties to be solved. Examples of the use of the proposed methodology are presented using the two-suffix Margules and Flory–Huggins equations, allowing an assessment of the influence of liquid-phase non-ideality on the performance of the method, and showing that it can be applied even for systems wherein liquid–liquid phase equilibrium occurs.
Keywords
Osmotic pressure , Differential approach , Gibbs energy
Journal title
Thermochimica Acta
Serial Year
2006
Journal title
Thermochimica Acta
Record number
1197386
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