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The rate of adsorption could also be controlled by intraparticle.
R 2 values for the intraparticle diffusion model ranged between 0.8400 and 0.9056 (Table 5) suggesting that the adsorption of RhB onto DNc and CCDNc may be controlled by intraparticle diffusion model.
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The WMID model states that if the linear WMID plot crosses the origin, then the diffusion mechanism is controlled by intraparticle diffusion.
According to this model, if the plot of q t versus t0.5 gives a straight line, then the biosorption process is controlled by intraparticle diffusion.
The Weber Morris intraparticle diffusion model was used to determine whether the overall rate of adsorption was controlled by intraparticle diffusion, i.e., the movement of the adsorbate molecules into the interior of the adsorbent particles.
The cell model approach for the analysis of nonisothermal fixed bed adsorption column has been presented under the assumption that adsorption is controlled by intraparticle diffusion and adsorption equilibrium is nonlinear.
However, if the plot shows multilinearity, then the adsorption process may be controlled by the combination of film and intraparticle diffusion, i.e. more than one step is involved in the adsorption process [19].
The kinetic curves could be characterized by pseudo-second-order rate equation and the adsorption rate of glabridin on XT8-8 was controlled by both intraparticle diffusion and external diffusion.
The adsorption process was described well by pseudo-second-order model, and solute transfer was controlled by both boundary-layer and intraparticle diffusion.
A mechanism in which the adsorption and desorption processes are controlled by the diffusion through the pores of the films is proposed (intraparticle diffusion).
The other intraparticle process pyrolysis is described as the volume reaction because it is controlled by both heat transfer and kinetics.
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