Abstract

This study corroborated the viability of heterogeneous Fenton and heterogeneous photo-Fenton process for the degradation of atrazine from aqueous solution. Nano-scale iron manganese binary oxide supported zeolite (NIMZ) was synthesized and was used as a catalyst to degrade atrazine. The influence of numerous factors like pH, H<sub>2</sub>O<sub>2</sub> dosage, and catalyst dosage on atrazine degradation was investigated. Under the operating parameters of pH 3, 0.02 M H<sub>2</sub>O<sub>2</sub>, and 200 mg/L catalyst, the heterogeneous Fenton system reached its highest atrazine degradation efficiency of 58.15%. Nonetheless, the atrazine elimination achieved through the heterogeneous Fenton method was relatively modest. Thus, to enhance the atrazine degradation efficiency, heterogeneous photo-Fenton method was employed to treat atrazine concentration of 50 µg/L. The experimentally determined optimal pH, H<sub>2</sub>O<sub>2</sub> dosage and catalyst dosage in the heterogeneous photo-Fenton process were 3, 0.02 M and 250 mg/L, respectively. A degradation efficiency of 76.26% was recorded with the heterogeneous photo-Fenton process, exceeding the conventional heterogeneous Fenton process (58.15%) by 18.11%. Quenching studies revealed that effectiveness of heterogeneous photo-Fenton process was majorly owing to large number of hydroxyl radicals generated because of catalytic decomposition of H<sub>2</sub>O<sub>2</sub> by NIMZ and photo decomposition of H<sub>2</sub>O<sub>2</sub> by irradiation of UV light.

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Year
2025
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article
Pages
1-12
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A. S. Ashwini, V.G. Dileep Kumar, R. Gandhimathi et al. (2025). Treatment of atrazine-contaminated wastewater via heterogeneous Fenton and heterogeneous photo-Fenton processes. Journal of Environmental Science and Health Part A , 1-12. https://doi.org/10.1080/10934529.2025.2596522

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DOI
10.1080/10934529.2025.2596522