Design and Operation of Pressure Swing Adsorption Processes

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Design and Operation of Pressure Swing Adsorption Processes ( design-and-operation-pressure-swing-adsorption-processes )

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[209] [210] [211] [212] [213] [214] T. Yokoyama, Japanese R&D on Large-Scale CO2 Capture, ECI Symposium Series on Separations Technology VI: New Perspectives on Very Large-Scale Operations, vol. RP3, 2004. T. Yuan, P. G. Cizmas, and T. O ́ Brien, A Reduced-order Model for a Bubbling Fluidized Bed based on Proper Orthogonal Decomposition, Comput. Chem. Eng. 30 (2005), 243– 259. J. Zhang and P. A. Webley, Cycle Development and Design for CO2 Capture from Flue Gas by Vacuum Swing Adsorption, Environ. Sci. Technol. 42 (2008), no. 2, 563–569. J. Zhang, P. A. Webley, and P. Xiao, Effect of Process Parameters on Power Require- ments of Vacuum Swing Adsorption Technology for CO2 Capture from Flue Gas, Energ. Convers. Manage. 49 (2008), no. 2, 346–356. L. Zhou, C.-Z. L, S.-J. Bian, and Y.-P. Zhou, Pure Hydrogen from the Dry Gas of Refineries via a Novel Pressure Swing Adsorption Process, Ind. Eng. Chem. Res. 41 (2002), no. 21, 5290–5297. S. E. Zitney and M. Syamlal, Integrated Process Simulation and CFD for Improved Pro- cess Engineering, Proceedings of the European Symposium on Computer Aided Process Engineering–12, ESCAPE–12, May 26-29: The Hague, The Netherlands; Grievink, J., and van Schijndel, J., Eds.; pp 397–402., 2002. BIBLIOGRAPHY BIBLIOGRAPHY 205

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