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BIBLIOGRAPHY [139] [140] [141] [142] [143] [144] [145] [146] [147] [148] Sakizlis, V., Perkins, J. D., Pistikopoulos, E. N., 2004. Recent advances in optimization-based simultaneous process and control design. Computers & Chemical Engineering 28 (10), 2069 – 2086, special Issue for Professor Arthur W. Westerberg. Sato, M., Goto, M., Kodama, A., Hirose, T., 1998. New fractionation pro- cess for citrus oil by pressure swing adsorption in supercritical carbon diox- ide. Chemical Engineering Science 53 (24), 4095 – 4104. Seader, J. D., 1998. Separation process principles. John Wiley & Sons, Inc. Seborg, D. E., Edgar, T. F., Mellichamp, D. A., 1989. Process Dynamics and Control. John Wiley & Sons. Seider, W. D., Seader, J., Lewin, D. R., 1999. Product and process design principles, 2nd Edition. John Wiley & Sons, Inc. Sereno, C., Rodrigues, A., 1993. Can steady-state momentum equations be used in modelling pressurization of adsorption beds? Gas Separation & Purification 7 (3), 167 – 174. Sircar, S., 1996. Production of oxy-rich air by rpsa for combustion use. Adsorption 2, 323–326. Sircar, S., 2002. Pressure swing adsorption. Industrial & Engineering Chem- istry Research 41 (6), 1389–1392. Sircar, S., Hanley, B. F., 1995. Production of oxygen enriched air by rapid pressure swing adsorption. Adsorption 1, 313–320. Sircar, S., Hufton, J., 2000. Why does the linear driving force model for adsorption kinetics work? Adsorption 6, 137–147. 194PDF Image | Operation and Control of Pressure Swing Adsorption Systems
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