Abstract
This paper describes the effect of particle size on the process of paraquat adsorption from aqueous solution onto an activated clay surface at 25 °C and initial pH 11.0. Measurements of the pore properties of the clay adsorbents with three different particle sizes (0.053–0.074 mm, 0.037–0.053 mm, and < 0.037 mm) were carried out. The rates and isotherms of adsorption have been also investigated by batch methods under the controlled conditions. From the experimental results obtained, the adsorption process can be well described with the pseudo-second order model and Freundlich model for adsorption kinetics and adsorption isotherm, respectively. In addition, the effect of the particle size of the clay adsorbent on the adsorption kinetics was found to be of considerable significance; namely, the rate constant ( k) of paraquat adsorption by the clay adsorbent decreased with increasing particle size. It was concluded that the pore properties (i.e., surface area and total pore volume) and particle size of the clay adsorbent played a significant role in determining adsorption capacity and adsorption rate, respectively.
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