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BIBLIOGRAPHY [80] Koroneos, C., Dompros, A., Roumbas, G., Moussiopoulos, N., 2004. Life cy- cle assessment of hydrogen fuel production processes. International Journal of Hydrogen Energy 29 (14), 1443 – 1450. [81] Koros, W. J., Mahajan, R., 2000. Pushing the limits on possibilities for large scale gas separation: which strategies? Journal of Membrane Science 175 (2), 181 – 196. [82] Krogstad, T., Gravdahl, J., Tøndel, P., june 2005. Explicit model predictive control of a satellite with magnetic torquers. In: Intelligent Control, 2005. Proceedings of the 2005 IEEE International Symposium on, Mediterrean Conference on Control and Automation. pp. 491 –496. [83] Kumar, R., 1994. Pressure swing adsorption process: Performance opti- mum and adsorbent selection. Industrial & Engineering Chemistry Research 33 (6), 1600–1605. [84] Kumar, R., Fox, V. G., Hartzog, D. G., Larson, R. E., Chen, Y. C., Houghton, P. A., Naheiri, T., 1994. A versatile process simulator for ad- sorptive separations. Chemical Engineering Science 49 (18), 3115 – 3125. [85] Lee, C.-H., Yang, J., Ahn, H., 1999. Effects of carbon-to-zeolite ratio on layered bed H2 psa for coke oven gas. AIChE Journal 45 (3), 535–545. [86] Lenhoff, A. M., Morari, M., 1982. Design of resilient processing plants–i pro- cess design under consideration of dynamic aspects. Chemical Engineering Science 37 (2), 245 – 258. [87] Lipt ́ak, B. G., 2006. Instrument engineers’ handbook. Process control and optimization. Vol. 2. CRC Press. 187PDF Image | Operation and Control of Pressure Swing Adsorption Systems
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