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BIBLIOGRAPHY tems by a gradient method. Industrial & Engineering Chemistry Process Design and Development 14 (3), 236–242. [106] Nishida, N., Liu, Y. A., Ichikawa, A., 1976. Studies in chemical process design and synthesis ii. optimal synthesis of dynamic process systems with uncertainty. AIChE Journal 22 (3), 539–549. [107] Nitta, T., Kuro-Oka, M., Katayama, T., 1984. An adsorption isotherm of multi-site occupancy model for heterogeneous surface. Journal of Chemical Engineering of Japan 17 (1), 45–52. [108] Ogata, K., 1997. Modern control engineering. Prentice Hall. [109] Olajossy, A., Gawdzik, A., Budner, Z., Dula, J., 2003. Methane separation from coal mine methane gas by vacuum pressure swing adsorption. Chemical Engineering Research and Design 81 (4), 474 – 482. [110] Palazoglu, A., Arkun, Y., 1986. A multiobjective approach to design chem- ical plants with robust dynamic operability characteristics. Computers & Chemical Engineering 10 (6), 567 – 575. [111] Panos, C., Kouramas, K., Georgiadis, M., Pistikopoulos, E., 2010. Dy- namic optimization and robust explicit model predictive control of hydro- gen storage tank. Computers & Chemical Engineering 34 (9), 1341 – 1347, selected papers from the 7th International Conference on the Foundations of Computer-Aided Process Design (FOCAPD, 2009, Breckenridge, Colorado, USA. [112] Park, J.-H., Han, S.-S., Kim, J.-N., Cho, S.-H., 2004. Vacuum swing ad- sorption process for the separation of ethylene/ethane with AgNO3/clay adsorbent. Korean Journal of Chemical Engineering 21, 236–245. 190PDF Image | Operation and Control of Pressure Swing Adsorption Systems
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