Literature DB >> 24231332

Efficient removal of endosulfan from aqueous solution by UV-C/peroxides: a comparative study.

Noor S Shah1, Xuexiang He, Hasan M Khan, Javed Ali Khan, Kevin E O'Shea, Dominic L Boccelli, Dionysios D Dionysiou.   

Abstract

This study explored the efficiency of UV-C-based advanced oxidation processes (AOPs), i.e., UV/S2O8(2-), UV/HSO5(-), and UV/H2O2 for the degradation of endosulfan, an organochlorine insecticide and an emerging water pollutant. A significant removal, 91%, 86%, and 64%, of endosulfan, at an initial concentration of 2.45 μM and UV fluence of 480 mJ/cm(2), was achieved by UV/S2O8(2-), UV/HSO5(-), and UV/H2O2 processes, respectively, at a [peroxide]0/[endosulfan]0 molar ratio of 20. The efficiency of these processes was, however, inhibited in the presence of radical scavengers, such as alcohols (e.g., tertiary butyl alcohol and isopropyl alcohol) and natural organic matter (NOM). The inhibition was also influenced by common inorganic anions in the order of nitrite > bicarbonate > chloride > nitrate ≈ sulfate. The observed pseudo-first-order rate constant decreased while the degradation rate increased with increasing initial concentration of the target contaminant. The degradation mechanism of endosulfan by the AOPs was evaluated revealing the main by-product as endosulfan ether. Results of this study suggest that UV-C-based AOPs are potential methods for the removal of pesticides, such as endosulfan and its by-products, from contaminated water.
Copyright © 2013 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Advanced Oxidation Technologies (AOTs); Advanced oxidation processes (AOPs); Endosulfan; Peroxides; UV-C; Water treatment

Mesh:

Substances:

Year:  2013        PMID: 24231332     DOI: 10.1016/j.jhazmat.2013.10.019

Source DB:  PubMed          Journal:  J Hazard Mater        ISSN: 0304-3894            Impact factor:   10.588


  8 in total

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Authors:  Shuang-Yang Zhao; Cheng-Xin Chen; Jie Ding; Shan-Shan Yang; Ya-Ni Zang; Xu-Dong Qin; Xin-Lei Gao; Zhao Song; Nan-Qi Ren
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8.  Degradation of trimethoprim by sulfate radical-based advanced oxidation processes: kinetics, mechanisms, and effects of natural water matrices.

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  8 in total

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