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BIBLIOGRAPHY [73] Khajuria, H., Pistikopoulos, E. N., 2011. Dynamic modeling and explicit/multi-parametric mpc control of pressure swing adsorption systems. Journal of Process Control 21 (1), 151 – 163. [74] Kikkinides, E. S., Sikavitsas, V. I., Yang, R. T., 1995. Natural gas desulfu- rization by adsorption: Feasibility and multiplicity of cyclic steady states. Industrial & Engineering Chemistry Research 34 (1), 255–262. [75] Kikkinides, E. S., Yang, R. T., 1991. Simultaneous sulfur dioxide/nitrogen oxide (nox) removal and sulfur dioxide recovery from flue gas by pressure swing adsorption. Industrial & Engineering Chemistry Research 30 (8), 1981–1989. [76] Kikkinides, E. S., Yang, R. T., 1993. Gas separation and purification by polymeric adsorbents: flue gas desulfurization and sulfur dioxide recov- ery with styrenic polymers. Industrial & Engineering Chemistry Research 32 (10), 2365–2372. [77] Kikkinides, E. S., Yang, R. T., Cho, S. H., 1993. Concentration and recovery of carbon dioxide from flue gas by pressure swing adsorption. Industrial & Engineering Chemistry Research 32 (11), 2714–2720. [78] Kim, M.-B., Moon, J.-H., Lee, C.-H., Ahn, H., Cho, W., 2004. Effect of heat transfer on the transient dynamics of temperature swing adsorption process. Korean Journal of Chemical Engineering 21, 703–711. [79] Ko, D., Siriwardane, R., Biegler, L. T., 2003. Optimization of a pressure- swing adsorption process using zeolite 13x for co2 sequestration. Industrial & Engineering Chemistry Research 42 (2), 339–348. 186PDF Image | Operation and Control of Pressure Swing Adsorption Systems
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