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Surface barrier model, isothermal mechanisms

The LDF model is a realistic representation of the system with a surface barrier. Otherwise, k can be treated as an apparent mass transfer coefficient irrespective of the true transport mechanism which can be directly used in the design and optimization of adsorbers. This concept has been successfully used to analyze column breakthrough data for practical non-isothermal systems [18-20]. It substantially... [Pg.175]

For the general complex isothermal kinetic model treated in Section in.C (taking into account micropore and macropore diffusion, as well as surface barrier and film resistance mechanisms), the low-frequency asymptotes of the first- and second-order FRFs are ... [Pg.316]

The zero length column (ZLC) technique has become a common tool to measure mass transfer kinetics in microporous adsorbents. The partial loading experiment is a variant of the traditional ZLC method in which the adsorbent is not allowed to reach full equilibration with the gas phase. Even though this variant of the ZLC experiment was introduced over 10 years ago, it has been applied only by few researchers. In this contribution we review the basic theory of the partial loading experiment and show that it can be used to establish the contributions of different mass transfer mechanisms. A detailed numerical model that includes the effects of nonlinearity of the isotherm and combined diffusion and surface barrier effects is presented to allow the correlation of complex sorbate-sorbent systems. [Pg.253]


See other pages where Surface barrier model, isothermal mechanisms is mentioned: [Pg.361]    [Pg.15]    [Pg.242]    [Pg.597]    [Pg.625]    [Pg.597]   
See also in sourсe #XX -- [ Pg.294 ]




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