4.6 Article

How Photocatalyst Dosage and Ultrasound Application Influence the Photocatalytic Degradation Rate of Phenol in Water: Elucidating the Mechanisms Behind

Journal

WATER
Volume 12, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/w12061672

Keywords

phenol; advanced oxidation processes; ultrasound; photocatalysis; deagglomeration

Funding

  1. Agency for Innovation by Science and Technology Flanders [IWT/093025]
  2. Industrial Research Fund of KU Leuven [KP/10/006]

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Photocatalysis is of high interest for the treatment of wastewater containing non-biodegradable organic components. In this work, the photocatalytic degradation of phenol by TiO(2)photocatalysis was assessed, the influence of ultrasound (US) treatment was evaluated, and the mechanisms behind it were elucidated. It was shown that the TiO(2)concentration (in suspension) has a large influence on the degradation kinetics. At high TiO(2)concentrations, a reduced efficiency was observed due to the shielding of the UV light by TiO(2)particles. US treatment effectively increased phenol degradation by improving the mass transfer while it was shown by the experimental data that particle deagglomeration did not play a significant role. The degradation mainly occurred through indirect phenol oxidation by hydroxyl (OH*) radicals, which were formed in situ at the surface of the photocatalyst. Finally, based on the partial least squares (PLS) methodology, a mathematical model was developed, representing phenol degradation as a function of the selected process conditions.

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