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Operation and Control of Pressure Swing Adsorption Systems

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Operation and Control of Pressure Swing Adsorption Systems ( operation-and-control-pressure-swing-adsorption-systems )

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5.2 A brief overview of some recent work in the field of integrated designandcontrol .......................... 102 5.3 A brief overview of important literature studies on PSA optimization103 5.4 Boundary conditions for the feed, co-current depressurization and counter-current blowdown steps for the six step PSA cycle . . . . 110 5.5 Boundary conditions for the counter-current purge, counter-current pressure equalization and co-current product repressurization steps forthesixstepPSAcycle ...................... 111 5.6 Modeling parameters for the gas-solid system . . . . . . . . . . . 113 5.7 Operating parameters for the PSA CSS estimation study . . . . . 114 5.8 Number of PSA cycles to achieve specific CSS tolerances . . . . . 115 5.9 Optimal decision variables, their upper and lower bounds and opti- mal performance variables for PSA optimization under uncertainty study.................................. 122 5.10 Solver and convergence statistics for the PSA multi-period opti- mizationsolution ........................... 123 5.11 Comparison of optimal PSA systems obtained from sequential and simultaneousapproach ........................ 130 6.1 Simulation parameters for the stand alone membrane studies . . . 143 6.2 ModelingparametersforthebasecasePSA . . . . . . . . . . . . 148 6.3 Computational parameters for the hybrid PSA-membrane simula- tionstudy............................... 151 6.4 Hybrid performance indicators vs. PSA cycletime for membrane areaof0.1m2 ............................. 152 6.5 Hybrid performance indicators vs. PSA cycletime for membrane areaof0.5m2 ............................. 153 12

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Operation and Control of Pressure Swing Adsorption Systems

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