Natural water defluoridation by adsorption on Laponite clay

Author:

Braik Saber12,Amor Taissire Ben23,Michelin Laure45,Rigolet Séverinne45,Bonne Magali45,Lebeau Bénédicte45,Hafiane Amor23

Affiliation:

1. Research Laboratory of Environmental Science and Technologies, Borj-Cédria, 2050 Hammam-Lif, Tunisia

2. Université de Carthage, 1054 Carthage, Tunisia

3. Water, Membrane and Environmental Biotechnology Laboratory, CERTE, Technopole of Borj-Cedria, BP 273, Soliman 8020, Tunisia

4. Université de Haute Alsace (UHA), CNRS, IS2M UMR 731, F-68100 Mulhouse, France

5. Université de Strasbourg, F-67000 Strasbourg, France

Abstract

Abstract Safe drinking water is a necessity for every human being, but clean water is scarce and not easily available due to natural geochemical factors or industrial pollutant activity. Many issues involving water quality could be greatly improved using clays as adsorbents. We highlight for the first time, the uptake of fluoride from natural water by Laponite, synthetic hectorite clay, in raw and modified state. A series of batch adsorption experiments were carried out to evaluate the adsorption potential of the different parameters. The optimized parameters were: contact time, adsorbent dose and pH. It was found that fluoride uptake from natural water was better using raw Laponite and inorganic-modified Laponite than using organic-modified Laponite clays. Adsorbents were characterized before and after fluoride adsorption by X-ray diffraction, X-ray fluorescence, FTIR, thermo gravimetric analyses and 19F solid state NMR spectroscopy. The experimental data showed that both Langmuir and Freundlich models fitted an adsorption isotherm well. Thermodynamic parameters such as Gibbs free energy (ΔG°), enthalpy (ΔH°), and entropy (ΔS°) were calculated. These parameters indicated that fluoride adsorption onto Laponite was nonspontaneous and endothermic in temperature range between 25 and 45 °C.

Funder

Ministère de l’Enseignement Supérieur, de la Recherche Scientifique et des Technologies de l'Information et de la Communication

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference41 articles.

1. Ion-exchange polyHIPE type membrane for removing nitrate ions: preparation, characterization, kinetics and adsorption studies;Chemical Engineering Journal,2014

2. XRF, XRD and FTIR properties and characterization of HDTMA-Br surface modified organo-kaolinite;Clay,2014

3. Defluoridation from aqueous solutions by Nano-Aluminsa: characterization and sorption studies;Journal of Hazardous Materials,2011

4. Laponite and hybrid surfactant/laponite particles processed as spheres by spray-drying;New Journal of Chemistry,2009

5. Adsorption behavior of radio iodides in hexadecyl– pyridinium–humate complexes;Applied Clays Science V,2001

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