Modelling and Simulation of Twin-Bed Pressure Swing Adsorption Plants

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Modelling and Simulation of Twin-Bed Pressure Swing Adsorption Plants ( modelling-and-simulation-twin-bed-pressure-swing-adsorption- )

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7 Performance intensification strategies 78 7 Performance intensification strategies In order to distinguish the most significant process conditions and cycle organisation strategies that should be considered towards PSA process intensification, performance indicators at product purity levels of 1000, 100, and 10 ppm O2 were designated based on the outcome of the dynamic simulation, as presented in Fig. 7-1–5. Subsequently, the highest productivity and lowest air demand values were selected among the results in the studied parameter ranges, which correspond to those presented in Chapters 5.1–2. The findings are presented in Tab. 7-1 and Fig. 7-6–7. Depending on the required product purity level, particular process conditions or cycle organisation strategies come to the fore while implementing PSA performance intensification strategies. Fig. 7-1 Simulated productivity and air demand as a function of operating temperature Fig. 7-2 Simulated productivity and air demand as a function of adsorption pressure

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Modelling and Simulation of Twin-Bed Pressure Swing Adsorption Plants

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