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Energy Efficiency of Gas Separation Pressure Swing Adsorption

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Energy Efficiency of Gas Separation Pressure Swing Adsorption ( energy-efficiency-gas-separation-pressure-swing-adsorption )

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Figure2.11FormationofaSimpleWaveDuringPurge. In this example, the gas enters the bed from the right and has mole fraction zero. The gas phase inside the bed initially has mole fraction yo. For this situation, equilibrium theory predicts that points with a certain mole fraction travel with a constant velocity, and this velocity increases with mole fraction. This can be seen in Figure 2.11, which follows the motion of three points on the wave front. If gas with mole fraction zero continues to enter the right end of the adsorbent bed, the heavy component will eventually be totally purged from the bed. . So far we have shown how the concentration shock wave effects the separation of a gas mixture, and how an adsorbent bed that has been used to separate gases can be regenerated by purging the bed with pure product. Complete PSA cycles generally 31

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Energy Efficiency of Gas Separation Pressure Swing Adsorption

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