Applied Catalysis2022,Vol.31712.DOI:10.1016/j.apcatb.2022.121804

Generalized kinetic model for the photocatalytic degradation processes: Validation for dye wastewater treatment in a visible-LED tubular reactor

Daniel Olivo-Alanfs Alcione Garcia-Gonzalez Miguel Angel Mueses
Applied Catalysis2022,Vol.31712.DOI:10.1016/j.apcatb.2022.121804

Generalized kinetic model for the photocatalytic degradation processes: Validation for dye wastewater treatment in a visible-LED tubular reactor

Daniel Olivo-Alanfs 1Alcione Garcia-Gonzalez 1Miguel Angel Mueses2
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作者信息

  • 1. Universidad Autonoma de Nuevo Leon (UANL), Facultad de Ciencias Quimicas, Av. Universidad S/N, Cd. Universitaria, San Nicolas de los Garza C.P. 66455, Nuevo Leon, Mexico
  • 2. Modeling & Application of Advanced Oxidation Process, Photocatalysis & Photoreactors Engineering, Department of Chemical Engineering, Universidad de Cartagena, 1382-195 Cartagena de Indias, Colombia
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Abstract

A novel generalized kinetic model was developed to predict the photocatalytic degradation of methylene blue and synthetic blue wastewater. The kinetic model was validated using nitrogen-crosslinking, ZnO-incorporated, and chlorophyll-sensitized phenolic resins as photocatalysts. The model considers the generation of reactive oxygen species (ROS), rate of electron-hole pair generation (Rg), and the attack of ROS on the pollutant. The six-flux model was used to elucidate the absorption and scattering of photons in a visible-LED tubular reactor, while the extended effective quantum yield model helped to calculate the harnessed energy by the photocatalyst;; both parameters were employed for the calculation of Rg. The model showed robustness and high accuracy (R~2 >0.85) under several operational conditions for dye-containing water. When the physical-chemical characteristics of the semiconductor and the reactive media are added to the kinetic model, it represents a major step in the process engineering of heterogeneous photocatalysis systems.

Key words

Photoreactor/Photocatalysis/Quantum yield/Reaction kinetic modeling/Semiconductor phenolic resin

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出版年

2022
Applied Catalysis

Applied Catalysis

ISSN:0926-3373
被引量6
参考文献量39
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