Article ID Journal Published Year Pages File Type
608022 Journal of Colloid and Interface Science 2012 9 Pages PDF
Abstract

The overall adsorption rate of single micropollutants present in landfill leachates such as phthalic acid (PA), bisphenol A (BPA), diphenolic acid (DPA), 2,4-dichlorophenoxy-acetic acid (2,4-D), and 4-chloro-2-methylphenoxyacetic acid (MCPA) on two commercial activated carbons was studied. The experimental data obtained were interpreted by using a diffusional model (PVSDM) that considers external mass transport, intraparticle diffusion, and adsorption on an active site. Furthermore, the concentration decay data were interpreted by using kinetics models. Results revealed that PVSDM model satisfactorily fitted the experimental data of adsorption rate on activated carbon. The tortuosity factor of the activated carbons used ranged from 2 to 4. The contribution of pore volume diffusion represented more than 92% of intraparticle diffusion confirming that pore volume diffusion is the controlling mechanism of the overall rate of adsorption and surface diffusion can be neglected. The experimental data were satisfactorily fitted the kinetic models. The second-order kinetic model was better fitted the experimental adsorption data than the first-order model.

Graphical abstractFigure optionsDownload full-size imageDownload high-quality image (134 K)Download as PowerPoint slideHighlights► The PVSDM model fitted the adsorption of pollutants from landfill leachates on AC. ► The tortuosity factor of the activated carbons used ranged from 2 to 4. ► Pore volume diffusion is the controlling mechanism of the overall rate of adsorption. ► Surface diffusion can be neglected. ► The external mass transport did not affect the overall adsorption rate.

Related Topics
Physical Sciences and Engineering Chemical Engineering Colloid and Surface Chemistry
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