4.7 Article

Accelerated removal of naproxen in the iron-based peracetic acid activation system by chloride ions: Enhancement of reactive oxidative species via the formation of iron-chloride complexes

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 462, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jhazmat.2023.132760

Keywords

Peracetic acid; Iron-based; Chloride ion; Organic radicals; Reactive oxidative species transformation

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The introduction of chloride ions in the iron-based PAA system can enhance the reaction rate and improve the removal capacity for contaminants. The presence of chloride ions induces the generation and conversion of ROSs, leading to effective decontamination. The treatment with iron-based PAA can also alleviate the biological toxicity of pollutants.
Iron-based PAA activation process is a promising advanced oxidation process for water decontamination which depends on Fe(II) as the main reactive site for PAA activation, resulting in various reactive oxidative species (ROSs) generation. For practical application, the impact of water matrix chloride ion (Cl-) on ROSs production and contaminants removal should be carefully considered. In this study, it's found that the introduction of Cl- (0.1-10 mM) could significantly enhance the reaction rate of the rapid stage (k(obs1)) up to 2.15 times at the initial pH of 4.25 in the Fe(II)/PAA system. Further studies demonstrated that the improved removal capacity of NAP resulted from Cl- induced R-O-center dot generation as indicated by the exposure dose of R-O-center dot increasing from 7.74 x 10(-11) M center dot s to 1.44 x 10(-10) M center dot s, rather than chlorine-containing radicals' generation. DFT calculation results suggested that the formed Fe(II)-Cl- complexes could easily activate PAA to generate more ROSs for NAP removal. Moreover, Fe(II)/PAA treatment can alleviate the biological toxicity of pollutants via both the Escherichia coli test and toxicity assessment. The obtained new knowledge manifested that Cl- can boost ROSs generation and conversion in iron-based PAA systems, providing guidance for the efficient decontamination of chlorine-containing sewage with PAA-based AOPs.

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