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Metal-mediated oxidation of fluoroquinolone antibiotics in water: A review on kinetics, transformation products, and toxicity assessment

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 344, Issue -, Pages 1136-1154

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2017.08.067

Keywords

Water treatment; Advanced oxidation; Micropollutants; Emerging concern; Pharmaceuticals; Water reuse

Funding

  1. Program of the Environment and Sustainability
  2. Funds of National Key Program for the Introduction of Renowned Overseas Professors of P.R. China [MS2017NJDX017]

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Fluoroquinolones (FQs) are among the most potent antimicrobial agents, which have seen their increasing use as human and veterinary medicines to control bacterial infections. FQs have been extensively found in surface water and municipal wastewaters, which has raised great concerns due to their negative impacts to humans and ecological health. It is of utmost importance that FQs are treated before their release into the environment. This paper reviews oxidative removal of FQs using reactive oxygen (O-3 and (OH)-O-center dot), sulfate radicals (SO4 center dot-), and high-valent transition metal (Mn-VII and Fe-VI) species. The role of metals in enhancing the performance of reactive oxygen and sulfur species is presented. The catalysts can significantly enhance the production of (OH)-O-center dot and/or SO4 center dot- radicals. At neutral pH, the second-order rate constants (k, M-1 s(-1)) of the reactions between FQs and oxidants follow the order as k((OH)-O-center dot) > k(O-3)> k(Fe-VI) > k(Mn-VII). Moieties involved to transform target FQs to oxidized products and participation of the catalysts in the reaction pathways are discussed. Generally, the piperazinyl ring of FQs was found as the preferential attack site by each oxidant. Meanwhile, evaluation of aquatic ecotoxicity of the transformation products of FQs by these treatments is summarized. (C) 2017 Elsevier B.V. All rights reserved.

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