Synthesis and Characterization of Fe3O4/SiO2/AC Nanocomposite as a Heavy Metal Adsorbent

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Muhammad Zainullah, Lya Rizka Herawati, St. Ulfawanti Intan Subadra, Joko Utomo, Nurul Hidayat, Nur Ezaan Khamsan, Ahmad Taufiq

2025 BIO Web of Conferences Vol. 183 Conference paper Cited by 2 Quartile

Abstract

This research successfully synthesized Fe3O4/SiO2/activated carbon (AC) nanocomposite as heavy metal adsorbent. This research aimed to determine nanocomposite characteristics, including crystal structure, morphology, functional groups, magnetic properties, and heavy metal adsorption performance. The X-ray diffraction (XRD) results showed that Fe3O4 has a crystal phase with an inverse cubic spinel structure and a crystallite size of 11.73 nm with lattice parameters a=b=c=8.346. Scanning electron microscopy (SEM) image showed a porous morphology in the form of chunks of AC particles and spherical Fe3O4 and SiO2 particles with a particle size of 23.11 nm. Fourier transform infrared (FTIR) spectrum showed the presence of octahedral and tetrahedral Fe-O bonds, which confirmed the existence of Fe3O4, Si-O and Si-O-Si bonds, which indicated the presence of SiO2, and C-C bonds, which confirmed the presence of AC. The magnetization curve showed superparamagnetic properties with a saturation magnetization value of 15.86 emu/g. According to the results of the adsorption test from atomic absorption spectroscopy (AAS) at room temperature with a concentration of 100 ppm and a contact time of 30 minutes, the Fe3O4/SiO2/AC was able to adsorb heavy metal Pb(II) with an efficiency of 69.95% and an adsorption capacity of 5.534 mg/g. © 2025 The Authors, published by EDP Sciences.

Affiliations

Department of Physics, Faculty of Mathematics and Natural Sciences, Universitas Negeri Malang, Malang, Indonesia; Laser Center, Ibnu Sina Institute for Scientific and Industrial Research, Universiti Teknologi Malaysia, Malaysia