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Photo-oxidative degradation of toluene in aqueous media by hydroxyl radicals

dc.contributor.authorHatipoglu, Arzu
dc.contributor.authorVione, Davide
dc.contributor.authorYalcin, Yelda
dc.contributor.authorMinero, Claudio
dc.contributor.authorCinar, Zekiye
dc.contributor.institutionauthorHATİPOĞLU, Arzu
dc.date.accessioned2026-06-27T12:52:19Z
dc.date.issued2010
dc.description.abstractThis study has the goal of determining the most probable reaction path and the product distribution for the photo-oxidative degradation of toluene in aqueous media. A combination of experimental and quantum mechanical methods were used to elucidate the effect of water solvent on the reaction rate and on the subsequent formation of the primary intermediates. In the experimental part of the study, the formation yields of hydroxylated intermediates and of benzaldehyde were measured by HPLC, in the presence of nitrate under UVB irradiation as the (OH)-O-center dot source. Modeling of the reaction paths was performed with density functional theory (DFT) calculations, to investigate the most plausible mechanism for the initial (OH)-O-center dot attack and to determine the identities of the primary intermediates. Rate coefficients for all the reaction paths were computed by the Transition State Theory (TST) to obtain the product distribution. The effect of solvent water was investigated by using COSMO as the solvation model. The experimental results combined with DFT calculations indicate that ortho-addition to finally give o-cresol is the dominant reaction path for gas and aqueous media. The presence of a dielectric medium such as water has a stabilizing effect that decreases the overall energy for this mechanism. Finally, the significance for surface waters of the reaction between toluene and (OH)-O-center dot was studied by use of a recently developed photochemical model that foresees the lifetime of a compound upon reaction with (OH)-O-center dot, as a function of the reaction rate constant, the chemical composition of the surface water layer, and the water column depth. (C) 2010 Elsevier B.V. All rights reserved.en
dc.description.sponsorshipYildiz Technical University Research Foundation [24-01-02-15]
dc.description.sponsorshipPNRA
dc.description.sponsorshipMIUR [2007L8Y4NB, 36]
dc.description.urihttps://doi.org/10.1016/j.jphotochem.2010.07.021
dc.identifier.doi10.1016/j.jphotochem.2010.07.021
dc.identifier.eissn1873-2666
dc.identifier.endpage68
dc.identifier.issn1010-6030
dc.identifier.issue1
dc.identifier.startpage59
dc.identifier.urihttps://hdl.handle.net/20.500.14981/47681
dc.identifier.volume215
dc.identifier.wos000282864700009
dc.language.isoeng
dc.publisherELSEVIER SCIENCE SA
dc.relation.ispartofJOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY
dc.rightsopenAccess
dc.subjectToluene
dc.subjectHydroxyl radical
dc.subjectPhoto-oxidative degradation
dc.subjectDFT calculation
dc.subjectCOSMO
dc.subjectMOLECULAR-ENERGIES
dc.subjectORGANIC-COMPOUNDS
dc.subjectOH RADICALS
dc.subjectBENZENE
dc.subjectOXIDATION
dc.subjectVOLATILE
dc.subjectADDUCTS
dc.subjectNITRITE
dc.subjectNITRATE
dc.subjectPHENOL
dc.subjectChemistry
dc.titlePhoto-oxidative degradation of toluene in aqueous media by hydroxyl radicals
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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