Design and Operation of Pressure Swing Adsorption Processes

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BIBLIOGRAPHY [13] A. Armaou and P. D. Christofides, Finite-dimensional Control of Nonlinear Parabolic PDE Systems with Time-dependent Spatial Domains using Empirical Eigenfunctions, Int. J. Appl. Math. Comput. Sci. 11 (2001), no. 2, 287–317. [14] , Dynamic Optimization of Dissipative PDE Systems using Nonlinear Order Re- duction, Chem. Eng. Sci. 7 (2002), 5083–5114. [15] P. Astrid, S. Weiland, K. Willcox, and T. Backx, Missing Point Estimation in Models Described by Proper Orthogonal Decomposition, IEEE T. Automat. Contr. 53 (2008), no. 10, 2237–2251. [16] A. Audet and J. E. Dennis Jr., A Pattern-Search Filter Method for Nonlinear Program- ming without Derivatives, SIAM J. Optim. 14 (2004), no. 4, 980–1010. [17] G. Bader and U. M. Ascher, A New Basis Implementation for a Mixed Order Boundary Value ODE Solver, SIAM J. Sci. and Stat. Comput. 8 (1987), no. 4, 483–500. [18] M. S. A. Baksh and M. W. Ackley, Pressure Swing Adsorption Process for the Production of Hydrogen, US Patent 6340382, 2002. [19] M. S. A. Baksh and C. E. Terbot, Pressure Swing Adsorption Process for the Production of Hydrogen, US Patent 6503299, 2003. [20] S. Balakrishna and L. T. Biegler, Targeting Strategies for the Synthesis and Energy Integration of Nonisothermal Reactor Networks, Ind. Eng. Chem. Res. 31 (1992), no. 9, 2152–2164. [21] E. Balsa-Canto, J. R. Banga, and A. A. Alonso, A Novel, Efficient and Reliable Method for Thermal Process Design and Optimization. Part II: Applications, J. Food Eng. 52 (2002), no. 3, 235–247. [22] E. Bendersky and P. D. Christofides, Optimization of Transport-reaction Processes using Nonlinear Model Reduction, Chem. Eng. Sci. 55 (2000), 4349–4366. [23] C. Benkmann, System for Treatment of Plural Crude Gases in Single Adsorption Plant, US Patent 4402712, 1983. [24] H. Y. Benson, D. F. Shanno, and R. J. Vanderbei, Interior-point Methods for Nonconvex Nonlinear Programming: Filter-methods and Merit Functions, Comput. Optim. Appl. 23 (2002), no. 2, 257–272. [25] M. Bergmann, L. Cordier, and J.-P. Brancher, Control of the Cylinder Wake in the Lami- nar Regime by Trust-region methods and POD Reduced Order Models, Proceedings of the 44th IEEE Conference on Decision and Control, and the European Control Conference 2005, Seville, Spain, Dec 12-15, 2005. [26] , Optimal Rotary Control of the Cylinder Wake using Proper Orthogonal Decom- position Reduced-order Model, Phys. Fluids 17 (2005), 97–101. [27] G. Berkooz, P. Holmes, and J. L. Lumley, The Proper Orthogonal Decomposition in the Analysis of Turbulent Flows, Annu. Rev. Fluid Mech. 25 (1993), 539–575. [28] L. T. Biegler, A. M. Cervantes, and A. W ̈achter, Advances in Simultaneous Strategies for Dynamic Process Optimization, Chem. Eng. Sci. 57 (2002), no. 4, 575–593. BIBLIOGRAPHY 193

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