Studies on the Removal of Cadmium Toxic Metal Ions by Natural Clays from Aqueous Solution by Adsorption Process

Author:

Bassam Rajaa1ORCID,El hallaoui Achraf2ORCID,El Alouani Marouane3ORCID,Jabrane Maissara1,El Khattabi El Hassan1ORCID,Tridane Malika14ORCID,Belaaouad Said1ORCID

Affiliation:

1. Laboratory of Physical Chemistry of Materials LCPM, Faculty of Sciences Ben M’Sik, Hassan II University of Casablanca, B.P.7955, Bd CdtDriss El Harti, Casablanca, Morocco

2. Laboratory of Organic, Organometallic and Theoretical Chemistry, University Ibn Tofail, Faculty of Science, B.P. 133, Kenitra 14000, Morocco

3. Laboratory of Physico-Chemistry of Inorganic and Organic Materials (LPCIOM), Materials Science Centre (MSC), Mohammed V University, Ecole Normale Supérieure (ENS), Rabat, Morocco

4. Regional Center for Education and Training Occupations, Casablanca Anfa, Bd Bir Anzarane, Casablanca, Morocco

Abstract

The aim of this study is the valorization of the Moroccan clays (QC-MC and QC-MT) from the Middle Atlas region as adsorbents for the treatment of water contaminated by cadmium Cd (II) ions. The physicochemical properties of natural clays are characterized by ICP-MS, XRD, FTIR, and SEM techniques. The adsorption process is investigated as a function of adsorbent mass, solution pH, contact time, temperature, and initial Cd (II) ion concentration. The kinetic investigation shows that the adsorption equilibrium of Cd (II) ions by both natural clays is reached after 30 min for QC-MT and 45 min for QC-MC and fits well to a pseudo-second-order kinetic model. The isotherm study is best fitted by a Freundlich model, with the maximum adsorption capacity determined by the linear form of the Freundlich isotherm being 4.23 mg/g for QC-MC and 5.85 mg/g for QC-MT at 25°C. The cadmium adsorption process was thermodynamically spontaneous and exothermic. The regeneration process showed that these natural clays had excellent recycling capacity. Characterization of the Moroccan natural clays before and after the adsorption process through FTIR, SEM, XRD, and EDX techniques confirmed the Cd (II) ion adsorption on the surfaces of both natural clay adsorbents. Overall, the high adsorption capacity of both natural clays for Cd (II) ions removal compared to other adsorbents motioned in the literature indicated that these two natural adsorbents are excellent candidates for heavy metal removal from aqueous environments.

Publisher

Hindawi Limited

Subject

General Chemistry

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