Journal Article

·2017 OPEN ACCESS

Water defluoridation by alumina modified Turkey clinoptilolite: equilibrium, kinetic models and experimental design approaches

Selim Selimoğlu YTU , Esra Bilgin Şimşek YTU , Ülker Beker YTU

Water Science & Technology Water Supply

Abstract

Abstract In the current work, alumina modified natural zeolite (Z-Al) was used for fluoride adsorption in aqueous solution. Effects of process parameters such as pH, temperature, initial concentration and contact time were investigated. Box–Behnken design was found effective in defining the operating conditions for fluoride sorption onto Z-Al. Confirmatory experiments were conducted to examine the reliability of the regression equation. The predicted (2.261 mg g−1) and experimental (2.289 mg g−1) capacities were found to be similar, demonstrating the accuracy of the model. The fluoride adsorption onto Z-Al was well described by the Freundlich model. Kinetic studies revealed that the adsorption followed a pseudo-second-order reaction. Thermodynamic parameters depicted that the fluoride adsorption on the alumina modified zeolite was a spontaneous and exothermic process. The co-existing ions affected the defluoridation performance significantly. Regeneration of exhausted Z-Al was achieved with H2SO4.

Keywords

Clinoptilolite Zeolite Adsorption Fluoride Sorption Aqueous solution Freundlich equation Exothermic reaction Chemistry Enthalpy Materials science Inorganic chemistry Chemical engineering Thermodynamics Physical chemistry Catalysis Organic chemistry

Subject Areas

Fluoride Effects and Removal ·Water Science and Technology ·Physical Sciences
Groundwater and Isotope Geochemistry ·Geochemistry and Petrology ·Physical Sciences
Phosphorus and nutrient management ·Industrial and Manufacturing Engineering ·Physical Sciences

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