Page 348 - Distillation theory
P. 348
P1: JPJ/FFX P2: FCH/FFX QC: FCH/FFX T1: FCH
0521820928c08 CB644-Petlyuk-v1 June 11, 2004 20:20
322 Synthesis of Separation Flowsheets
London, G. (1961). Separation of Isotopes. London: Newnes.
Malone, M. F., Glinos, K., Marquez, F. E., & Douglas, J. M. (1985). Simple, Analyt-
ical Criteria for the Sequencing of Distillation Columns. AIChE J., 31, 683–690.
Modi, A. K., & Westerberg, A. W. (1992). Distillation Column Sequencing Using
Marginal Price. Ind. Eng. Chem. Res., 31, 839–48.
Petlyuk, F. B. (1979). Structure of Concentration Space and Synthesis of Schemes
for Separating Azeotropic Mixtures. Theor. Found. Chem. Eng., 13, 683–
689.
Petlyuk, F. B., Avet’an, V. S., & Inyaeva, G. V. (1977). Possible Product Composi-
tion for Distillation of Polyazeotropic Mixtures. Theor. Found. Chem. Eng., 11,
177–183.
Petlyuk, F. B., & Danilov, R. Yu. (1999). Sharp Distillation of Azeotropic Mixtures
in a Two-Feed Column. Theor. Found. Chem. Eng., 33, 233–242.
Petlyuk, F. B., & Danilov, R. Yu. (2000a). Synthesis of Separation Flowsheets for
Multicomponent Azeotropic Mixtures on the Basis of the Distillation Theory.
PresynthesisPredictionofFeasibleProductCompositions.Theor.Found.Chem.
Eng., 34, 236–254.
Petlyuk, F. B., & Danilov, R. Yu. (2000b). Synthesis of Separation Flowsheets for
Multicomponent Azeotropic Mixtures on the Basis of the Distillation Theory.
Synthesis: Finding Optimal Separation Flowsheets. Theor. Found. Chem. Eng.,
34, 444–456.
Petlyuk, F. B., Kievskii, V. Ya, & Serafimov, L. A. (1977a). Method for the Iso-
lation of the Regions of the Rectification of Polyazeotropic Mixtures Using an
Electronic Computer. Theor. Found. Chem. Eng., 11, 1–7.
Petlyuk, F. B., Kievskii, V. Ya, & Serafimov, L. A. (1979). Determination of Distil-
lation Product Composition of Polyazeotropic Mixtures. Theor. Found. Chem.
Eng., 13, 643–649.
Petlyuk, F. B., & Platonov, V. M. (1964). The Thermodynamical Reversible Mul-
ticomponent Distillation. Chem. Industry, (10), 723–725 (Rus.).
Petlyuk, F. B., & Platonov, V. M. (1965). Sequences with Reversible Flows Mixture.
In V. M. Platonov & B. G. Bergo (Eds.), Separation of Multicomponent Mixtures
(pp. 262–78). Moscow: Khemiya (Rus.).
Petlyuk, F. B., Platonov, V. M., & Girsanov, I. V. (1964). Calculation of the Optimal
Distillation Cascades. Chem. Industry, (6), 445–53 (Rus.).
Petlyuk, F. B., Platonov, V. M., & Slavinskii, D. M. (1965). Thermodynamical
Optimal Method for Separating of Multicomponent Mixtures. Int. Chem. Eng.,
5(2), 309–17.
Petlyuk, F. B., Serafimov, L. A., Avet’an, V. S., & Vinogradova, E. I. (1981). Tra-
jectories of Reversible Distillation When One of the Components Completely
Disappears in Every Section. Theor. Found. Chem. Eng., 15, 185–192.
Petlyuk, F. B., Vinogradova, E. I., & Serafimov, L. A. (1984). Possible Composition
of Products of Ternary Azeotropic Mixture: Distillation at Minimum Reflux.
Theor. Found. Chem. Eng., 18, 87–94.
Petlyuk, F. B., Zaranova, D. A., Isaev, B. A., & Serafimov, L. A. (1985). The Presyn-
thesis and Determination of the Possible Train of Separation of Azeotropic
Mixtures. Theor. Found. Chem. Eng., 19, 514–524.
Poellmann, P., & Blass, E. (1994). Best Products of Homogeneous Azeotropic
Distillation. Gas Separation and Purification,8,194–228.