Publication | Closed Access
Atmospheric Photosensitized Heterogeneous and Multiphase Reactions: From Outdoors to Indoors
100
Citations
105
References
2011
Year
Direct PhotolysisChemical EngineeringEnvironmental ChemistryEngineeringPhotochemistryPhotosystemsAtmospheric SciencePowerful Atmospheric ReactorsAtmospheric PhotochemistryAir QualityMultiphase ReactionsChemistryAir PollutionEnvironmental PhotochemistryChemical KineticsPhotochemical ExcitationHealth Sciences
This proposal involves direct photolysis processes occurring in the troposphere incorporating photochemical excitation and intermolecular energy transfer. The study of such processes could provide a better understanding of ·OH radical formation pathways in the atmosphere and in consequence, of a more accurate prediction of the oxidative capacity of the atmosphere. Compounds that readily absorb in the tropospheric actinic window (ionic organic complexes, PAHs, aromatic carbonyl compounds) acting as potential photosensitizers of atmospheric relevant processes are explored. The impact of hotosensitation on relevant systems which could act as powerful atmospheric reactors,that is, interface ocean-atmosphere, urban and forest surfaces and indoor air environments is also discussed.
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