CORRELATION OF CONCENTRATION-DEPENDENT SURFACE DIFFUSIVITY IN LIQUID-PHASE ADSORPTION
Citation
M. Miyahara et M. Okazaki, CORRELATION OF CONCENTRATION-DEPENDENT SURFACE DIFFUSIVITY IN LIQUID-PHASE ADSORPTION, Journal of Chemical Engineering of Japan, 26(5), 1993, pp. 510-516
Categorie Soggetti
Engineering, Chemical
SICI code
0021-9592(1993)26:5<510:COCSDI>2.0.ZU;2-E
Abstract
Concentration dependency of surface diffusivity of nitrobenzene and be
nzonitrile was measured at different temperatures for adsorption from
aqueous solution onto an activated carbon, by batch kinetic experiment
s within limited ranges of amount adsorbed. The isotherms obeyed the p
otential theory of adsorption, and were only partially expressed by Fr
eundlich equations. Eyring's rate theory was applied to the elemental
steps of surface diffusion with the assumption that the rate-controlli
ng step was the hole-making step for the systems under the potential t
heory. The activation energy was found to be a certain fraction of the
sum of the evaporative energy of adsorbate and the adsorption potenti
al. Thus the derived correlation equation had two parameters, and was
tested with the measured concentration/temperature dependence of surfa
ce diffusivity. Good correlation was obtained, with reasonable values
of the parameters from the viewpoint of their definition and/or accord
with other research results. The success in the correlation manifeste
d the importance of the hole-making step in surface diffusion.