EventsThe 3rd International Electronic Conference on Catalysis Sciences
Published
This submission belongs to the session E. Biocatalysis of the event The 3rd International Electronic Conference on Catalysis Sciences
Published date
21 Apr, 2025
Academic Editor
author-avatarFrank Hollmann
Citation
Omar BOUALAM, Oxidation of Malachite Green by Illite Impregnated with Iron/Indium, in Proceedings of The 3rd International Electronic Conference on Catalysis Sciences, 23 April–25 April 2025, MDPI: Basel, Switzerland
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Oxidation of Malachite Green by Illite Impregnated with Iron/Indium

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1. Process Engineering Department, Higher School of Technology of Fez – Sidi Mohamed Ben Abdellah University, Laboratory of Materials Process Catalysis Agri-Food and Environment (LMPCAE), Fez 30000, Morocco, Morocco
Abstract

The contamination of aquatic systems by synthetic dyes, such as malachite green, poses significant environmental and health risks due to their toxicity and persistence. In this study, we investigated the catalytic oxidation of malachite green using illite impregnated with iron (Fe) and indium (In) as a heterogeneous catalyst. The catalyst was synthesized through a wet impregnation method, ensuring the effective dispersion of metal ions on the illite clay surface. Comprehensive characterization of the material was conducted using X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), and scanning electron microscopy (SEM-EDX) to elucidate its structural, morphological, and chemical properties.

The catalytic oxidation process was evaluated under various conditions, including varying the dye concentration, pH, and reaction temperature, to optimize the degradation efficiency. The Fe/In-illite catalyst achieved a degradation rate of over 97% for malachite green within a short reaction time under the optimal conditions. Kinetic studies revealed a pseudo-first-order reaction mechanism. The dual functionality of iron and indium provided a synergistic effect, enhancing the catalytic activity through effective electron transfer and oxidation pathways.

This work highlights the potential of Fe/In-illite as a cost-effective and environmentally friendly catalyst for the removal of toxic dyes from wastewater. Its application could contribute significantly to sustainable wastewater management and environmental remediation efforts.

Keywords
Malachite green Illite Iron/Indium impregnation Dye oxidation Heterogeneous catalysis Wastewater treatment Environmental remediation Advanced oxidation processes
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