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Structural state space in fractional crystallisation process synthesis

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A method is presented for an algorithmic generation of all possible structures of a system in which a specified set of products is separated from a given set of feed streams by fractional crystallisation. The method employs three sets of transformation operators, which, together with some initial flowsheet, generate the space of system flowsheets in a systematic way. The space can be employed for the optimal crystallisation process design within the framework of optimisation methods of process synthesis.
Rocznik
Strony
12--18
Opis fizyczny
Bibliogr. 18 poz., rys.
Twórcy
autor
  • Szczecin University of Technology, Department of Chemical Engineering and Environmental Protection Processes, al. Piastów 42, 71-065 Szczecin, jan.dudczak@ps.pl
Bibliografia
  • (1) Fitch B.: How to design fractional crystallization processes, Ind, Eng. Chem., 1970, 62 (12) 6.
  • (2) Dudczak J.: Synthesis of crystallization system structures, Inż. Chem. Proc., 1989, 10(1) 125 (in Polish).
  • (3) Cisternas L. A., Rudd D. E: Process designs for fractional crystallization from solution, Ind. Eng. Chem. Res., 1993, 32 (9).
  • (4) Dye S. R., Ng K. M.: Bypassing eutectics with extractive crystallization: design alternatives and tradeoffs, AIChE J., 1995, 41 (6), 1456.
  • (5) Dye S. R.; Ng K. M.: Fractional crystallization: design alternatives and tradeoffs, AIChE J., 1995, 41 (11), 2427.
  • (6) Berry D. A., Ng K. M.: Separation of quaternary conjugate salt systems by fractional crystallization, AIChE J., 1996, 42 (8), 2162.
  • (7) Dudczak J.: Synthesis of crystallization processes wit multiple feeds, Inż. Chem. Proc, 1996, 17 (3) 339.
  • (8) Berry D. A., Dye S. R., Ng K. M.: Synthesis of drowning-out crystallization - based separations, AIChE J., 1997, 43 (1), 91.
  • (9) Berry D. A., Ng K. M: Synthesis of reactive crystallization processes, AIChE J., 1997, 43 (7), 1737.
  • (10) Berry D. A., Ng K. M.: Synthesis of crystallization - distillation hybrid separation processes, AIChE J., 1997, 43 (7), 1751.
  • (11) Dudczak J.:, Synthesis of crystallization processes. Ternary systems with a single congruently soluble double salt, Inż. Chem. Proc, 2001, 22 (2) 397.
  • (12) Cisternas L. A., Swaney R. E.: Separation system synthesis for fractional crystallization from solution using a network flow model, Ind. Eng.Chem. Res., 1998, 37 (7), 2761.
  • (13) Cisternas L. A.: Optimal design of crystallization- based separation schemes, AIChE J., 1999, 45 (7), 1477.
  • (14) Cisternas L. A., Guerrero C. P., Swaney R. E.: Separation system synthesis of fractional crystallization processes with heat integration, Computers Chem. Engng, 2001, 25, 595.
  • (15) Cisternas L. A., Torres M. A., Godoy M. J., Swaney R. E.: Design of separation schemes for fractional crystallization of metathetical salts, AIChE J., 2003, 49 (7), 1731.
  • (16) Cisternas L. A., Cueto J., Swaney R. E.: Flowsheet synthesis of fractional crystallization processes with cake washing, Computers Chem. Engng, 2004, 28, 613.
  • (17) Grossmann I. E., Daichendt M. M.: New trends in optimization - based approaches to process synthesis, Computers Chem. Engng, 1996, 20 (6/7) 665
  • (18) Dudczak J.: Effect of solution entrainment on the performance of a fractional crystallisation process with two solid recycles, Inż. Chem. Proc, 2004, 25 (3/1) 819.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS2-0037-0016
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