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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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365. nol. 19 (2001), 347–366. BIBLIOGRAPHY [158] [159] [160] [161] [162] [163] [164] [165] [166] [167] [168] [169] [170] [171] [172] [173] A. Sasaki, S. Matsumoto, M. Fujitsuka, T. Shinoki, T. Tanaka, and J. Ohtsuki, CO2 Recovery in Molten Carbonate Fuel Cell System by Pressure Swing Adsorption, IEEE T. Energy Conver. 8 (1993), no. 1, 26–32. J. Schell, N. Casas, and M. Mazzotti, Pre-combustion CO2 Capture for IGCC Plants by an Adsorption Process, Energ. Procedia 1 (2009), 655–660. W. E. Schiesser, The Numerical Method of Lines Integration of Partial Differential Equa- tions, Academic Press: San Diego, CA, 1991. M. Schlegel, K. Stockmann, T. Binder, and W. Marquardt, Dynamic Optimization using Adaptive Control Vector Parameterization, Comput. Chem. Eng. 29 (2005), no. 8, 1731– 1751. S. Y. Shvartsman, C. Theodoropoulos, R. Rico-Martinez, I. G. Kevrekidis, E. S. Titi, and T. J. Mountziaris, Order Reduction for Nonlinear Dynamic Models of Distributed Reacting Systems, J. Process Contr. 10 (2000), 177–184. R. E. H. Sims, H.-H. Rogner, and K. Gregory, Carbon emission and mitigation cost comparisons between fossil fuel, nuclear and renewable energy resources for electricity generation, Energ. Policy 31 (2003), no. 13, 1315–1326. S. Sircar, Separation of Multicomponent Gas Mixtures, US Patent 4171206, 1979. , Separation of Methane and Carbon Dioxide Gas Mixtures by Pressure Swing Adsorption, Separ. Sci. Technol. 23 (1988), no. 6, 519–529. , Pressure Swing Adsorption: Research Needs in Industry, Proceedings of Third International Conference on Fundamentals of Adsorption: Sonthofen, Germany; Mers- mann, A. B., Scholl, S. E., Eds.; AIChE: New York, NY; pp 815-843., 1989. , Publications on Adsorption Science and Technology, Adsorption 6 (2000), 359– , Applications of Gas separation by Adsorption for the Future, Adsorpt. Sci. Tech- , Pressure Swing Adsorption: Commentaries, Ind. Eng. Chem. Res. 41 (2002), no. 6, 1389–1392. , Basic Research Needs for Design of Adsorptive Gas Separation Processes, Ind. Eng. Chem. Res. 45 (2006), no. 16, 5435–5448. S. Sircar and T. C. Golden, Purification of Hydrogen by Pressure Swing Adsorption, Separ. Sci. Technol. 35 (2000), no. 5, 667–687. S. Sircar and J.R. Hufton, Why Does the Linear Driving Force Model for Adsorption Kinetics Work?, Adsorption 6 (2000), no. 2, 137–147. S. Sircar and W. C. Kratz, Simultaneous Production of Hydrogen and Carbon Dioxide from Steam Reformer Off-Gas by Pressure Swing Adsorption, Separ. Sci. Technol. 23 (1988), no. 14, 2397–2415. [174] BIBLIOGRAPHY 202 S. Sircar and J. W. Zondlo, Hydrogen Purification by Selective Adsorption, US Patent 4077779, 1978.

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