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BIBLIOGRAPHY [7] Ayoub, S., Tondeur, D., Latifi, M., 2011. New formulation of optimization- based simulation of a pressure swing adsorption process: Hybrid dynamic optimization. AIChE Journal 57 (5), 1367–1373. [8] Ayres, R. U., Ayres, L. W., Martins, K., 1998. Exergy, waste accounting, and life-cycle analysis. Energy 23 (5), 355 – 363. [9] Azizian, S., Bashiri, H., 2009. A new isotherm for multisite occupancy ad- sorption of binary gaseous mixtures. Langmuir 25 (4), 2309–2312. [10] Baker, R. W., 2002. Future directions of membrane gas separation technol- ogy. Industrial & Engineering Chemistry Research 41 (6), 1393–1411. [11] Bandermann, F., Harder, K.-B., 1982. Production of h2 via thermal decom- position of h2s and separation of h2 and h2s by pressure swing adsorption. International Journal of Hydrogen Energy 7 (6), 471 – 475. [12] Bansal, V., Perkins, J., Pistikopoulos, E., Ross, R., van Schijndel, J., 2000. Simultaneous design and control optimisation under uncertainty. Comput- ers & Chemical Engineering 24 (2-7), 261 – 266. [13] Bansal, V., Perkins, J. D., Pistikopoulos, E. N., 2002. A case study in simultaneous design and control using rigorous, mixed-integer dynamic op- timization models. Industrial & Engineering Chemistry Research 41 (4), 760–778. [14] Bansal, V., Ross, R., Perkins, J. D., Pistikopoulos, E. N., 2000. The inter- actions of design and control: double-effect distillation. Journal of Process Control 10 (2-3), 219 – 227. [15] Bansal, V., Sakizlis, V., Ross, R., Perkins, J. D., Pistikopoulos, E. N., 177PDF Image | Operation and Control of Pressure Swing Adsorption Systems
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