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6.4.1 Parameter Selection and Performance Indicators . . . . . . 150 6.4.2 ComputationalResults.................... 151 6.5 Environmental Impact Analysis of The Hybrid PSA-Membrane SeparationSystem .......................... 154 6.5.1 GoalDefinition ........................ 155 6.5.2 SystemDescription-FunctionalUnit . . . . . . . . . . . . 155 6.5.3 Assessmentcriteria ...................... 156 6.5.4 LifeCycleInventoryAnalysis ................ 157 6.5.5 Life Cycle Impact Assessment and Interpretation . . . . . 159 6.5.6 Conclusions .......................... 161 7 Conclusions and Future Research Directions 163 7.1 ThesisSummary ........................... 163 7.1.1 Explicit/Multi-parametric MPC PSA Purity Control . . . 163 7.1.2 Simultaneous Design and Control Optimization of PSA Un- derUncertainty........................ 165 7.1.3 Design Heuristics for Hybrid PSA-Membrane Systems . . . 166 7.2 Keycontributions........................... 167 7.2.1 MathematicalModelofPSAOperation . . . . . . . . . . . 167 7.2.2 Explicit/Multi-Parametric MPC Controller of PSA . . . . 168 7.2.3 Simultaneous Design and Control Optimization of PSA Un- derUncertainty........................ 168 7.2.4 Design of a Hybrid PSA-Membrane Separation System . . 168 7.3 FutureResearchDirections...................... 169 7.3.1 PSAControlImprovements ................. 169 7.3.2 Enhancing Computational Efficiency of PSA Optimization 170 9PDF Image | Operation and Control of Pressure Swing Adsorption Systems
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