Abstract

Natural zeolites have widely been applied in the removal of contaminants from water while Mg/Al layered double hydroxide (LDH) zeolite (Mg/Al LDH-zeolite) composite is a relatively new material with promising features in wastewater treatment. This study evaluated the performance of a material combined between natural zeolite and Mg/Al LDH in the adsorption of ammonium from aqueous solutions. The characterization data of Mg/Al LDH zeolite composite, including BET, SEM, TEM, XRD, EDX, and FTIR show superior traits for adsorption with higher heterogeneity compared to conventional zeolites. Batch experiments demonstrated the effects of the parameters including pH, reaction time, reaction temperature and the initial ammonium concentration onto NH 4 + adsorption by Mg/Al LDH zeolite. The optimal conditions adsorption of NH 4 + onto Mg/Al LDH zeolite were at solution pH of 8.0, reaction time of 60 min, and an initial ammonium concentration of 40 mg/L. The NH 4 + adsorption by Mg/Al LDH zeolite increased when temperature grew, suggesting NH 4 + adsorption process was endothermic in nature The maximum adsorption capacity of Mg/Al LDH-zeolite was 17.81 mg/g corresponding to the NH 4 + removal efficiency of 89.03%. Kinetics of NH 4 + adsorption fit well with the pseudo second order and Elovich models. While NH 4 + adsorption isotherms were described better by the Sips model. Characterization, kinetic, and isothermal studies suggest the main mechanisms of NH 4 + adsorption onto Mg/Al LDH-zeolite involved ion exchange, surface complexation and π -cation interaction. • The capability of Zeolite modified with Mg/Al LDH in adsorbing ammonium. • The effects of environmental parameters on the performance of Mg/Al LDH Zeolite. • Kinetics and Isotherms of Mg/Al LDH Zeolite in the adsorption of ammonium. • Adsorption mechanisms of Mg/Al LDH Zeolite in the adsorption of ammonium. • Feasibility in large-scale applications.

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