Preparation of zeolite from coal fly ash and its adsorption-desorption behavior on ammonium ion in aqueous solution

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Galuh Yuliani, Afif Tribawono Hadirahmanto, Rahmadhita Murida, Agus Setiabudi

2020 Journal of Engineering Science and Technology Vol. 15 Issue 2 Article Cited by 0 SDG 12SDG 7 Quartile

Abstract

Owing to the high content of SiO2 and Al2O3, fly ash utilization as starting material for zeolite is becoming a great interest. In this research, fly ash was converted into zeolite using reflux method at 138 °C for 1 hour in NaOH 2M followed by heat treatment at 90 °C for 24 hours. The characterization of the resulting zeolite was carried out using Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), scanning electron microscopy (SEM), and BET surface area measurement. The study of its adsorption-desorption behaviors were also investigated using ammonium solution. Infrared spectra showed typical zeolite peaks for Si-O-Si or Al-O-Al stretching at 985 cm-1, Al-O-Si stretching at 663 cm-1, and Al-O or Si-O bending at 455 cm-1. XRD analysis confirmed the formation of sodium aluminium silicate hydrate, which is a sodalite zeolite. The surface areas of coal fly ash and zeolite were 6.9 m2/g to 34.1 m2/g, respectively. The ZFA was able to adsorb 2.9 mg/g ammonium ions upon 135 minutes of adsorption time. During the desorption experiment, a slow release of only 0.3 mg of NH4 + was observed out of 250 mg of NH4 + adsorbed upon 24 hours of desorption time. © 2020 School of Engineering, Taylor's University.

Affiliations

Chemistry Department, Universitas Pendidikan Indonesia, Jl. Dr. Setiabudi 229, Bandung, 40154, Indonesia

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