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Zexiu An, Dongchen Yang, Jinlin Zhang*, Maoxia He*, et al. Hydroxylation of some emerging disinfection byproducts (DBPs) in water environment: Halogenation induced strong pH-dependency. Journal of Hazardous Materials, 2023, https://doi.org/10.1016/j.jhazm
发布时间:2023/04/25 21:15:34 来源:植物保护学院

Abstract

In this work, the hydroxylation mechanisms and kinetics of some emerging disinfection byproducts (DBPs) have been systematically investigated through theoretical calculation methods. Five chlorophenols and eleven halogenated pyridinols were chosen as the model compounds to study their pH-dependent reaction laws in UV/H2O2system. For the reactions of HOwith 37 different dissociation forms, radical adduct formation (RAF) was the main reaction pathway, and the reactivity decreased with the increase ofhalogenation degree. Thekappvalues (at 298 K) increased with the increase of pH from 0 to 10, and decreased with the increase of pH from 10 to 14. Compared with phenol, the larger thechlorination degreein chlorophenols was, the stronger the pH sensitivity of thekappvalues; compared with chlorophenols, the pH sensitivity in halogenated pyridinols was further enhanced. As the pH increased from 2 to 10.5, the degradation efficiency increased at first and then decreased. With the increase of halogenation degree, the degradation efficiency range increased, the pH sensitivity increased, the optimal degradation efficiency slightly increased, and the optimal degradation pH value decreased. The ecotoxicity and bioaccumulation of most hydroxylated products were lower than their parental compounds. These findings provided meaningful insights into the strong pH-dependent hydroxylation of emerging DBPson molecular level.



Journal of Hazardous Materials, IF2021=14.224

https://www.sciencedirect.com/science/article/pii/S0304389423005150?via%3Dihub

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