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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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domain irrespective of the fluid phase present in the microchannel. The temporal error seen as a slight change of purity slopes as shown in Figure A.3, which is caused by radial lumping is negligible, as the process reaches cyclic steady state and the product tank contains substantial product. It must be noted that for the present comparison, it is assumed that product tank contains no product mass, which in turn augments the effects on instantaneous purities. It must also be noted that the radially lumped model is validated against the adsorption tests in Chapter 4. The radially lumped model is expected to predict the adsorbent layer saturation time within 4% of the observed adsorption time. Therefore, although a radial variation of species and energy is not modeled, the radially lumped model is concluded to reproduce the overall heat and mass transfer phenomena accurately enough, enabling quick and reliable prediction of purification process performance. 174

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TEMPERATURE SWING ADSORPTION PROCESSES FOR GAS SEPARATION

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