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  4. Reactive species monitoring and their contribution for removal of textile effluent with photocatalysis under UV and visible lights: Dynamics and mechanism
 
research article

Reactive species monitoring and their contribution for removal of textile effluent with photocatalysis under UV and visible lights: Dynamics and mechanism

Zeghioud, Hichem
•
Assadi, Aymen Amine
•
Khellaf, Nabila
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October 1, 2018
Journal Of Photochemistry And Photobiology A-Chemistry

In this study, the photocatalytic activities were investigated for the treatment of Reactive Green 12 (RG 12) solution under UV and visible irradiation using Cu doped TiO2, and TiO2 impregnated on (1) cellulose and (2) UV-C activated polyester catalysts. The obtained results revealed that TiO2 impregnated on UV-C activated polyester showed promising performances compared to the other synthesized catalysts. Moreover, the dispersion of active sites on UV-C pretreated polyester was optimized and tested for RG 12 removal in the binary mixture, the presence of Direct Red 89 (DR 89) dye had an inhibiting effect on the rate of RG 12 discoloration process because of the competitive effect between dyes molecules toward the available active sites. The role and contribution of reactive oxidizing species (ROS): center dot OH, O-2 center dot(-) and h(+) was also examined with the two catalysts under different light sources; it was found that the superoxide radical anion played the key role in RG 12 photocatalytic degradation for both TiO2 supported catalysts. Nevertheless, the behavior of O-2 center dot(-) radicals was found to be changed from promoting effect to inhibitory effect when changing light from UV to Visible.

  • Details
  • Metrics
Type
research article
DOI
10.1016/j.jphotochem.2018.07.031
Web of Science ID

WOS:000444356600013

Author(s)
Zeghioud, Hichem
Assadi, Aymen Amine
Khellaf, Nabila
Djelal, Hayet
Amrane, Abdeltif
Rtimi, Sami  
Date Issued

2018-10-01

Publisher

ELSEVIER SCIENCE SA

Published in
Journal Of Photochemistry And Photobiology A-Chemistry
Volume

365

Start page

94

End page

102

Subjects

Chemistry, Physical

•

Chemistry

•

photocatalytic surfaces

•

pollutant degradation

•

batch reactor

•

radical scavengers

•

dyes mixture

•

visible light

•

dielectric barrier discharge

•

aqueous-solution

•

sunlight irradiation

•

hydrated electrons

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hydroxyl radicals

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hydrogen-atoms

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rate constants

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waste-water

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tio2

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degradation

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LTP  
Available on Infoscience
December 13, 2018
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/152410
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