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Photolytic and TiO2-assisted photocatalytic oxidation of the anxiolytic drug lorazepam (Lorenin (R) pills) under artificial UV light and natural sunlight: A comparative and comprehensive study

Title
Photolytic and TiO2-assisted photocatalytic oxidation of the anxiolytic drug lorazepam (Lorenin (R) pills) under artificial UV light and natural sunlight: A comparative and comprehensive study
Type
Article in International Scientific Journal
Year
2013
Authors
M. A. Sousa
(Author)
FEUP
C. Gonçalves
(Author)
Other
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João H. O. S. Pereira
(Author)
FEUP
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Vítor J. P. Vilar
(Author)
FEUP
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Rui A. R. Boaventura
(Author)
FEUP
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M. F. Alpendurada
(Author)
Other
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Journal
Title: Solar EnergyImported from Authenticus Search for Journal Publications
Vol. 87 No. 1
Pages: 219-228
ISSN: 0038-092X
Publisher: Elsevier
Indexing
Scientific classification
FOS: Engineering and technology > Environmental engineering
CORDIS: Technological sciences > Technology > Environmental technology
Other information
Authenticus ID: P-002-1TF
Abstract (EN): Lorazepam is a recalcitrant drug, frequently quantified in WWTPs' effluents and surface waters, even though it has never been studied under accelerated phototransformation processes. Therefore, the main goal of the present work was to comparatively evaluate lorazepam's photolytic and photocatalytic degradation kinetics using two experimental systems: a lab-scale photochemical reactor provided with an UV medium pressure mercury lamp (LsAUVP) and a solar pilot plant with compound parabolic collectors (SPP-CPCs). Lorazepam was tested in its most commercialized dosage form in Portugal - Lorenine (R) pills, 1 mg ( Wyeth), thus simulating a more realistic scenario. Preliminary results showed that, using the LsAUVP apparatus, lorazepam's highest degradation yield was obtained through photolysis, while using the SPP-CPCs system, the best degradation performance was achieved by photocatalysis with a TiO2 concentration of 200 mg L-1. Furthermore, the degradation kinetic constant obtained for the optimized method when using the SPP-CPCs system (k = 1.49 +/- 0.03 L kJ(-1)) was higher than that with the LsAUVP set-up (k = 0.131 +/- 0.006 L kJ(-1)), which in terms of necessary accumulated UV energy for complete lorazepam degradation, considering the respective method's detection limit (MDL), corresponds to ca. 3 and 25 kJ L-1, respectively. (C) 2012 Published by Elsevier Ltd.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 10
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