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Following the fast adsorption, there was a gradual adsorption stage.
The adsorption kinetics showed a fast adsorption for both adsorbents.
The engineered biochars showed relatively fast adsorption kinetics to Pb2+ aqueous solutions.
The fast adsorption rate is due to the large amount of surface area available for adsorption of the dye molecules.
Results suggest that a fast adsorption rate of the suppressor results in higher nucleus densities.
Following the fast adsorption, there was a gradual adsorption stage, where intraparticle diffusion rate is rate controlling.
Complete regeneration at 105 °C can be achieved for both resins and they exhibit fast adsorption and desorption kinetics.
Moreover, the batch uptake and desorption experiments demonstrated the fast adsorption and desorption processes for IgG separation.
They show high thermal and mechanical stability with sufficiently high cyclic working capacity and fast adsorption kinetics.
The best adsorption properties showed material functionalized with monomer having secondary amine group (BA), while the fast adsorption kinetic shows sample functionalized with ethylenediamine (DA).
The initial fast adsorption could be the result of participation of specific functional groups and active surface sites of PLP which decreases towards the end of the experiments.
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