Shabnam Pourfalatoon, Hossein Mazaheri
Water shortage and quality are pressing issues across the globe, exacerbated by climate change. This study focused on the degradation and mineralization of 4-Nitrotoluene (4NT), a toxic and potentially carcinogenic compound found in petrochemical wastewater. The objective was to optimize the MnO2/Clinoptilolite (CP)/O3 process to effectively remove this contaminant. Synthesized wastewater was analyzed through a radical mechanism, emphasizing the role of the anion radical (O2•−) in interactions with ozone. Several operational parameters were evaluated to enhance the efficiency of the degradation process. Results demonstrated the potential of the MnO2/CP/O3 combination in effectively degrading 4NT, suggesting a viable method for treating hazardous wastewater. The findings highlight the importance of using advanced oxidative processes for environmental remediation of resistant pollutants like 4NT.
@article{7f08a81d-1560-4906-855f-7f695cf7b01e,
title={Kinetic Investigation of Degradation of},
author={Shabnam Pourfalatoon and Hossein Mazaheri},
year={2026},
language={en}
}TY - JOUR TI - Kinetic Investigation of Degradation of AU - Shabnam Pourfalatoon AU - Hossein Mazaheri PY - 2026 LA - en ER -
Santhana Krishnan, Nor Syahidah Zulkapli
Fast industrialization has increased the demand for heavy metals, while high-grade ore natural reserves are diminishing. Therefore, alternative source
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This study investigates the acid resistance and ion-exchange performance of natural mixtures of heulandite (HEU) and chabazite (CHA) intended for use
This paper addresses the challenge of assessing the feasibility of wind power plant projects at sites with insufficient or no local historic wind data
Important advances in electrochemical engineering technology over the last three decades have fostered the development of a lternative methods to alle