Hydroxyl radical induced degradation of ibuprofen.

Sci Total Environ

Institute of Chemistry, Research Group of Environmental Chemistry, University of Szeged, Szeged, Hungary.

Published: March 2013

AI Article Synopsis

  • Pulse radiolysis experiments characterized ibuprofen intermediates formed during electron beam irradiation in a solution.
  • 60Co γ-irradiation was used for end product characterization, with samples analyzed via UV-vis spectra or HPLC.
  • The study found that ibuprofen degradation is more efficient under oxidative conditions, with initial degradation products being more toxic before toxicity decreased at higher doses.

Article Abstract

Pulse radiolysis experiments were used to characterize the intermediates formed from ibuprofen during electron beam irradiation in a solution of 0.1mmoldm(-3). For end product characterization (60)Co γ-irradiation was used and the samples were evaluated either by taking their UV-vis spectra or by HPLC with UV or MS detection. The reactions of OH resulted in hydroxycyclohexadienyl type radical intermediates. The intermediates produced in further reactions hydroxylated the derivatives of ibuprofen as final products. The hydrated electron attacked the carboxyl group. Ibuprofen degradation is more efficient under oxidative conditions than under reductive conditions. The ecotoxicity of the solution was monitored by Daphnia magna standard microbiotest and Vibrio fischeri luminescent bacteria test. The toxic effect of the aerated ibuprofen solution first increased upon irradiation indicating a higher toxicity of the first degradation products, then decreased with increasing absorbed dose.

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http://dx.doi.org/10.1016/j.scitotenv.2013.01.007DOI Listing

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