TEMPERATURE SWING ADSORPTION PROCESSES FOR GAS SEPARATION

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TEMPERATURE SWING ADSORPTION PROCESSES FOR GAS SEPARATION ( temperature-swing-adsorption-processes-for-gas-separation )

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Figure 2.8. Effect of variation of adsorbent layer thickness on (a) product purity and (b) CO2 adsorbed concentration for a constant diameter of 530 μm. Although the adsorption and desorption processes are quickest for the 15 μm case, a th of 30 μm is selected for further analysis, to enable slightly better process control. Also, it can be seen from Table 2.6 that for a th of 30 μm, the absolute product collected is higher than that with a th of 15 μm, because of a higher separation capacity. A th of 60 μm yields the highest absolute product; however, the desorption time as shown in Figure 2.8(b), exceeds 20 s. For a Tdeso of 200°C, the regeneration ability stays above 95% as seen in Figure 2.8(b), even when the desorption stage is terminated after 4 s. As th increases, the actual product collection saturates, while the adsorbent mass increases 48

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