4.8 Article

Oxidation of Triclosan by Permanganate (Mn(VII)): Importance of Ligands and In Situ Formed Manganese Oxides

Journal

ENVIRONMENTAL SCIENCE & TECHNOLOGY
Volume 43, Issue 21, Pages 8326-8331

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/es901663d

Keywords

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Funding

  1. Natural Science Foundation of China [50821002]
  2. State Key Laboratory of Urban Water Resource and Environment [2008DX06]

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Experiments were conducted to examine permanganate (Mn(VII); KMnO4) oxidation of the widely used biocide triclosan (one phenolic derivative) in aqueous solution at pH values of 5-9. Under slightly acidic conditions, the reactions displayed autocatalysis, suggesting the catalytic role of in situ formed MnO2. This was further supported by the promoting effects of the addition of preformed MnO2 colloids on Mn(VII) oxidations of triclosan and two other selected phenolics (i.e., phenol and 2,4-dichlorophenol), as well as p-nitrophenol which otherwise showed negligible reactivity toward Mn(VII) and MnO2 colloids, respectively. Surprisingly, phosphate buffer significantly enhanced Mn(VII) oxidation of triclosan, as well as phenol and 2,4-dichlorophenol over a wide pH range. Further, several other selected ligands (i.e., pyrophosphate, EDTA, and humic acid) also exerted oxidation enhancement supporting a scenario where highly active aqueous manganese intermediates (Mn(INT)(aq)) formed in situ upon Mn(VII) reduction might be stabilized to a certain extent in the presence of ligands and subsequently involved in further oxidation of target phenolics, whereas without stabilizing agents Mn(INT)(aq) autodecomposes or disproportionates spontaneously. The effectiveness of Mn(VII) for the oxidative removal of triclosan in natural water and wastewater was confirmed, Their background matrices were also found to accelerate Mn(VII) oxidation of phenolics.

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