Author(s) -
H. Mountacer,
Si Mohamed Nemmaoui,
Salah Rafqah,
Guillaume Voyard,
Mohamed Sarakha
Publication year - 2013
Publication title -
isrn environmental chemistry
Language(s) - English
Resource type - Journals
ISSN - 2314-6419
DOI - 10.1155/2013/319178
Subject(s) - algorithm , chemistry , materials science , computer science
The photocatalytic degradation of the organophosphorus fenamiphos (FN) was studied using titanium dioxide as a photocatalyst and 365 nm as an excitation wavelength. Under our experimental conditions and in aerated solutions, the irradiation in the presence of TiO2 P25 (1.0 g L−1) permitted the evaluation of the half lifetime to 9.5 minutes. Laser flash photolysis experiments showed the formation of an initial species owing to the attack of the hydroxyl radical on FN. It was identified as the adduct -FN. The second order rate constant for its formation was evaluated to moL−1 L s−1. All the products are formed via the formation of such transient intermediate. They were identified by means of HPLC/MS using electrospray in positive mode (). Two main processes are responsible for FN photocatalytic transformation: (i) hydroxylation on the aromatic structure and (ii) the scission of the C–O bond. A mechanistic scheme was proposed for the photocatalytic process of FN using titanium dioxide. An efficient mineralization was observed within 24 hours by using a suntest setup.
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