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Degradation of chlordecone and beta-hexachlorocyclohexane by photolysis, (photo-)fenton oxidation and ozonation
Authors:Germán Cruz-González  Carine Julcour  Hélène Chaumat  Valérie Bourdon  Felipe Ramon-Portugal  Sarra Gaspard
Institution:1. Laboratoire de Génie Chimique, Université de Toulouse, CNRS, INPT, UPS, Toulouse, France;2. Instituto Superior de Tecnologías y Ciencias Aplicadas (InSTEC)- Universidad de La Habana, Avenida Salvador Allende No 1110 entre Infanta y Avenida Rancho Boyeros, Quinta de los Molinos, A.P. 6163, La Habana, Cuba;3. Service Commun de Spectrométrie de Masse, Université Paul Sabatier, Porte 157, Batiment 2R1, 118, route de Narbonne, Toulouse Cedex 09, France;4. UMR CNRS/UPS/ENFA 5174 “Evolution et Diversité Biologique”, école National de Formation Agronomique, 2, Route de Narbonne, BP 22687, Auzeville Tolosane, Castanet Cedex, France;5. Laboratoire COVACHIM M2E, EA 3592, Université des Antilles et de la Guyane, BP 250, Pointe à Pitre Cedex, Guadeloupe
Abstract:Intensive use of chlorinated pesticides from the 1960s to the 1990s has resulted in a diffuse contamination of soils and surface waters in the banana-producing areas of the French West Indies. The purpose of this research was, for the first time, to examine the degradation of two of these persistent pollutants – chlordecone (CLD) and beta-hexachlorocyclohexane (β-HCH) in 1 mg L?1 synthetic aqueous solutions by means of photolysis, (photo-) Fenton oxidation and ozonation processes. Fenton oxidation is not efficient for CLD and yields less than 15% reduction of β-HCH concentration in 5 h. Conversely, both molecules can be quantitatively converted under UV-Vis irradiation reaching 100% of degradation in 5 h, while combination with hydrogen peroxide and ferrous iron does not show any significant improvement except in high wavelength range (>280 nm). Ozonation exhibits comparable but lower degradation rates than UV processes. Preliminary identification of degradation products indicated that hydrochlordecone was formed during photo-Fenton oxidation of CLD, while for β-HCH the major product peak exhibited C3H3Cl2 as most abundant fragment.
Keywords:Water treatment  advanced oxidation process  UV treatment  Fenton reaction  ozonation  pesticide  micropollutant  chlordecone  HCH
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