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Modeling Photocatalytic Reactions Parallel series reaction model

FIGURE 5.2. Pi oposed parallel-series reaction model based on the evolution of observable species on the liquid phase. Full anows represent experimentally supported steps, whereas broken anows represent possible steps, experimentally unconfirmed (Reprinted from Chem. En. Set, 59, M. Salaices, B. SeiTano and H.I. de Lasa, Photocatalytic conversion of phenoiic compounds in sliUTy reactors, 3-i5, Copyright 2004, with permission from Elsevier). [Pg.104]

The consideration of equations (1-12) and/or (1-13) leads to the advancement of photocatalytic conversion rate models, such as the series-parallel model proposed by Salaices et al. (2004) where the derived kinetic parameters are based on the iiradiated weight of catalyst. As such, these can be considered as intrinsic parameters with phenomenological meaning pertinent to the photocatalytic reaction. [Pg.5]

Kinetic Modeling of the Photocatalytic Reaction Network The Parallel-Series Approximation... [Pg.101]

Chapter V addresses the important task of accounting for the complex network of photochemical reactions, establishing viable kinetic modeling. This modeling is essentially based on a series-parallel model of the photocatalytic reaction network. [Pg.192]


See also in sourсe #XX -- [ Pg.9 , Pg.101 , Pg.103 ]




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