Published 2017 | Version v1
Journal article

Photodegradation of sulfamethazine, sulfamethoxypiridazine, amitriptyline, and clomipramine drugs in aqueous media

  • 1. Faculty of Public Health I, Lebanese University, Hadath, (Lebanon)
  • 2. Laboratory for Analysis of Organic Compound LACO, National Council for Scientific Research CNRS, Lebanese Atomic Energy Commission, Beirut, (Lebanon)
  • 3. CNRS, EPOC, UMR 5805, F-33400 Talence (France)

Description

The photochemical transformation of two antibacterial sulfonamides, namely sulfamethazine (SMT) and sulfamethoxypyridazine (SMP), and two tricyclic antidepressants, namely amitriptyline (AMT) and clomipramine (CMP) were investigated. Experiments conducted in river water under artificial sunlight irradiation show an acceleration of the degradation for SMT, SMP, and CMP of a factor 1.6–7.7 by comparison to purified water. This acceleration is, at least partially, due to photosensitized reactions which can occur in river water. The photodegradation of CMP was particularly fast. In addition, no degradation was observed for AMT in purified water while photosensitized reaction occurs. Under ultraviolet (254 nm) irradiation in purified water, the four drugs were degraded. Calculated quantum yields of photodegradation were of 4.3 103, 5.1103, 7.6103, and 65.0103 respectively for SMT, SMP,AMT, and CMP. UV coupled with hydrogen peroxide (UV/H2O2) was used as an advanced oxidationprocess for water depollution. The calculated second order rate constants of reaction with hydroxyl radicals were of 5.0 109, 5.0 109, 8.0 109 and 9.5109 L mol1 s1 for SMT, SMP, AMT and CMP, respectively. Finally, the structures of photoproducts were proposed according to LC–MS/MS analyses. The elimination of SO2 was the main photochemical process for SMT and SMP. In the case of AMT and CMP, hydration and hydroxylation, respectively, were observed. (author)

Additional details

Publishing Information

Journal Title
Journal of Photochemistry and Photobiology. A, Chemistry
Journal Volume
336
Journal Page Range
p. 176-182
ISSN
1010-6030

Optional Information

Notes
2 figs.; 2 tabs.; 31 refs.