4.7 Article

Heterogeneous catalytic ozonation of ciprofloxacin in water with carbon nanotube supported manganese oxides as catalyst

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 227, Issue -, Pages 227-236

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2012.05.039

Keywords

Heterogeneous catalytic ozonation; Ciprofloxacin; Carbon nanotube supported manganese oxides; Hydroxyl radicals

Funding

  1. Natural Science Foundation of China [50708067, 51078281]
  2. Foundation for the Author of the National Excellent Doctoral Dissertation of China [2007848]
  3. Fundamental Research Funds for the Central Universities [0400219192]

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Carbon nanotube-supported manganese oxides (MnOx/MWCNT) were used as catalysts to assist ozone in degrading ciprofloxacin in water. Manganese oxides were successfully loaded on multi-walled carbon nanotube surfaces by simply impregnating the carbon nanotube with permanganate solution. The catalytic activities of MnOx/MWCNT in ciprofloxacin ozonation, including degradation, mineralization effectiveness, and antibacterial activity change, were investigated. The presence of MnOx/MWCNT significantly elevated the degradation and mineralization efficiency of ozone on ciprofloxacin. The microbiological assay with a reference Escherichia coli strain indicated that ozonation with MnOx/MWCNT results in more effective antibacterial activity inhibition of ciprofloxacin than that in ozonation alone. The effects of catalyst dose, initial ciprofloxacin concentration, and initial pH conditions on ciprofloxacin ozonation with MnOx/MWCNT were surveyed. Electron spin resonance trapping was applied to assess the role of MnOx/MWCNT in generating hydroxyl radicals (HO center dot) during ozonation. Stronger 5,5-dimethyl-1-pyrroline-N-oxide-OH signals were observed in the ozonation with MnOx/MWCNT compared with those in ozonation alone, indicating that MnOx/MWCNT promoted the generation of hydroxyl radicals. The degradation of ciprofloxacin was studied in drinking water and wastewater process samples to gauge the potential effects of water background matrix on MnOx/MWCNT catalytic ozonation. (C) 2012 Elsevier BM. All rights reserved.

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