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Interaction of stevensite with Cd2+ and Pb2+ in aqueous dispersions
Affiliation:1. Laboratoire de Physico-chimie des Matériaux et Environnement, Unité Associée au CNRST (URAC 20), Faculté des Sciences Semlalia, Université Cadi Ayyad, B.P. 2390, Av. Pce My Abdellah, 40001 Marrakech, Morocco;2. CNRS, LCC (Laboratoire de Chimie de Coordination du CNRS), 205 route de Narbonne, BP 44099, F-31077 Toulouse Cedex 4, France;3. Université de Toulouse, UPS, INPT, F-31077 Toulouse Cedex 4, France;1. Department of Civil and Mechanical Engineering, University of Cassino and Southern Lazio, G. Di Biasio, 43, 03043 Cassino, FR, Italy;2. Institut des Matériaux Jean Rouxel (IMN), Université de Nantes, CNRS, 2 rue de la Houssiniere, BP 32229, 44322 Nantes, Cedex 3, France;3. IFSTTAR, Institut Français des Sciences et des Technologies des Transports, de l''Aménagement et des Réseaux, CS4, route de Bouaye, 44344 Bouguenais Cedex, Nantes, France;1. Mines-ParisTech (Ecole des Mines de Paris), Centre de Géosciences, 35 Rue St-Honoré, 77305 Fontainebleau Cedex, France;2. LUNAM, IFSTTAR, Institut Français des Sciences et des Technologies des Transports, de l''Aménagement et des Réseaux, BP 4129, route de Bouaye, 44332 Bouguenais, France;3. Institut des Matériaux Jean Rouxel (IMN), Université de Nantes, CNRS, 2 rue de la Houssinière, BP 32229, 44322 Nantes Cedex 3, France
Abstract:The experimental process of adsorption of Pb(II) and Cd(II) onto clay mineral is studied here in order to evaluate the capacity for removal for these two heavy metal ions. This study is performed under various conditions such as initial solution pH, chemical clay modification conditions, initial metal ion concentration and contact time. The experimental isotherm data are analysed using Temkin, Langmuir and Freundlich equations and it is shown that models produce comparable equilibrium correlation results. The isotherm curves show very clearly the selectivity of the clay for the lead ions but also significant amounts of cadmium are removed as well. Adsorption kinetics data were tested using pseudo-first-order and Intraparticle diffusion models. Adsorption mechanism studies revealed that the process was complex and followed both surface adsorption and particle diffusion. The rate-controlling parameters and diffusion coefficients were determined using the Crank and McKay diffusion models. It was found that the adsorption occurs through film diffusion and the particle diffusion becomes the rate-determining step for each metal ion.
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