A branched pore kinetic model for activated carbon adsorption

A branched pore kinetic model for activated carbon adsorption A branched pore kinetic model for aqueous phase activated carbon adsorption is presented in which the carbon particle is separated into rapidly and slowly diffusing regions. The model was developed to overcome problems arising from a single rate parameter analysis and is shown to describe experimental data well. In addition to very different rates of transport in the two regions, parameters estimated by regression analysis indicated differences in the adsorptive characteristics. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Aiche Journal Wiley

A branched pore kinetic model for activated carbon adsorption

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Publisher
Wiley
Copyright
Copyright © 1981 American Institute of Chemical Engineers
ISSN
0001-1541
eISSN
1547-5905
D.O.I.
10.1002/aic.690270106
Publisher site
See Article on Publisher Site

Abstract

A branched pore kinetic model for aqueous phase activated carbon adsorption is presented in which the carbon particle is separated into rapidly and slowly diffusing regions. The model was developed to overcome problems arising from a single rate parameter analysis and is shown to describe experimental data well. In addition to very different rates of transport in the two regions, parameters estimated by regression analysis indicated differences in the adsorptive characteristics.

Journal

Aiche JournalWiley

Published: Jan 1, 1981

References

  • Diffusivities from Dynamic Data
    Furusawa, Furusawa; Smith, Smith
  • Restricted Diffusion in Liquids Within Fine Pores
    Satterfield, Satterfield; Colton, Colton; Pitcher, Pitcher
  • Measurement of Zeolitic Diffusivities and Equilibrium Isotherms by Chromatography
    Shah, Shah; Ruthven, Ruthven

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