4 Dynamic Simulation of Technical Precipitation Processes
139
12. Wang, Z., Zhang, Q.H., Yang, C., Mao, Z.-S., Shen, X.Q.: Simulation of barium sulfate precipitation using CFD and FM-PDF modeling in a continuous stirred tank. Chem. Eng. Technol.
30(12), 1642–1649 (2007)
13. Zauner, R., Jones, A.G.: Mixing effects on product particle characteristics from semi-batch
crystal precipitation. Chem. Eng. Res. Des. 78(6), 894–902 (2000)
14. Zhang, Q., Mao, Z.-S., Yang, C., Zhao, C.: Numerical simulation of barium sulfate precipitation
process in a continuous stirred tank with multiple-time-scale turbulent mixer model. Ind. Eng.
Chem. Res. 48(1), 424–429 (2009)
15. Matynia, A., Piotrowski, K., Koralewska, J.: Barium sulphate crystallization kinetics in the
process of barium ions precipitation by means of crystalline ammonium sulphate addition.
Chem. Eng. Process. 44(4), 485–495 (2005)
16. Steyer, C., Sundmacher, K.: Impact of feeding policy and ion excess on particle shape in
semi-batch precipitation of barium sulfate. J. Cryst. Growth 311(9), 2702–2708 (2009)
17. Torbacke, M., Rasmuson, Å.C.: Mesomixing in semi-batch reaction crystallization and
influence of reactor size. AIChE J. 50(12), 3107–3119 (2004)
18. Alexopoulos, A.H., Maggioris, D., Kiparissides, C.: CFD analysis of turbulence nonhomogeneity in mixing vessels. A two-compartment model. Chem. Eng. Sci. 57(10),
1735–1752 (2002)
19. Alopaeus, V., Moilanen, P., Laakkonen, M.: Analysis of stirred tanks with two-zone models.
AIChE J. 55(10), 2545–2552 (2009)
20. Bourne, J.R., Yu, S.: Investigation of micromixing in stirred tank reactors using parallel
reactions. Ind. Eng. Chem. Res. 33(1), 41–55 (1994)
21. Judat, B., Racina, A., Kind, M.: Macro- and micromixing in a Taylor-Couette reactor with
axial flow and their influence on the precipitation of barium sulfate. Chem. Eng. Technol.
27(3), 287–292 (2004)
22. Kim, W.-S., Tarbell, J.M.: Micromixing effects on barium sulfate precipitation in an MSMPR
reactor. Chem. Eng. Commun. 146, 33–56 (1996)
23. van Leeuwen, M.L.J., Bruinsma, O.S.L., van Rosmalen, G.M.: Three-zone approach for
precipitation of barium sulphate. J. Cryst. Growth 166, 1004–1008 (1996)
24. Bałdyga, J., Bourne, J.R.: Turbulent Mixing and Chemical Reactions. Wiley. ISBN 0-47198171-0 (1999)
25. Bałdyga, J., Podgórska, W., Pohorecki, R.: Mixing-precipitation model with application to
double feed semibatch precipitation. Chem. Eng. Sci. 50(8), 1281–1300 (1995)
26. Ståhl, M., Rasmuson, Å.C.: Towards predictive simulation of single feed semibatch reaction
crystallization. Chem. Eng. Sci. 64(7), 1559–1576 (2009)
27. Kügler, R.T., Doyle, S., Kind, M.: Fundamental insights into barium sulfate precipitation by
time-resolved in situ synchrotron radiation wide-angle X-ray scattering (WAXS). Chem. Eng.
Sci. 133, 140–147 (2015)
28. Kucher, M., Babic, D., Kind, M.: Precipitation of barium sulfate. Experimental investigation
about the influence of supersaturation and free lattice ion ratio on particle formation. Chem.
Eng. Process 45(10), 900–907 (2006)
29. Rehage, H., Nikq, F., Kind, M.: Experimental investigation of a two-zone model for semi-batch
precipitation in stirred-tank reactors. Chem. Eng. Sci. 207, 258–270 (2019)
30. Deutsches Institut für Normung (DIN 28131).: Agitators and Baffles for Agitator Vessels;
Types, Terms and Main Dimensions. Berlin (1992)
31. Skorych, V., Dosta, M., Hartge, E.-U., Heinrich, S.: Novel system for dynamic flowsheet
simulation of solids processes. Powder Technol. 314, 665–679 (2017)
32. Bałdyga, J., Bourne, J.R., Hearn, S.J.: Interaction between chemical reactions and mixing on
various scales. Chem. Eng. Sci. 52, 457–466 (1997)
33. Schwarzer, H.-C.: Nanoparticle Precipitation: An Experimental and Numerical Investigation
Including Mixing. Logos-Verlag. ISBN 978-3-8325-0916-3 (2005)
Précédent

- 143/626

Suivant