4.8 Article

Optimization of mild solar TiO2 photocatalysis as a tertiary treatment for municipal wastewater treatment plant effluents

Journal

APPLIED CATALYSIS B-ENVIRONMENTAL
Volume 128, Issue -, Pages 119-125

Publisher

ELSEVIER
DOI: 10.1016/j.apcatb.2012.03.034

Keywords

Emerging contaminants; Photocatalysis; Solar photoreactors

Funding

  1. Spanish Ministry of Science and Innovation [CTQ2009-13459-C05-01]
  2. University of Almeria
  3. CIEMAT-PSA
  4. CIEMAT

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The appropriate catalyst concentration for industrial wastewater treatment is several hundred milligrams per liter in solar photoreactors. Nonetheless, when the purpose of eliminating emerging contaminants in municipal wastewater treatment plant effluents is for reuse of the water, and they are present at extremely low concentrations, a tertiary treatment with a much lower photocatalyst concentration might be possible. TiO2 concentrations of only tens of mg L-1 were selected to evaluate the influence of catalyst load, initial hydrogen peroxide dose and radiation intensity on the degradation rate of five emerging contaminants (100 mu gL(-1) of ofloxacin, sulfamethoxazole, flumequine, carbamazepine, and 2-hydroxy-biphenyl) spiked in a real municipal wastewater treatment plant effluent. Response surface methodology based on a spherical central composite design was used to optimize the parameters to find the maximal degradation rate. The experiments were carried out using an Evonik P-25 titanium dioxide suspension in a Suntest solar simulator. It has been demonstrated that the use of hydrogen peroxide is highly recommendable for working with TiO2 at low concentrations and high photon flux must be avoided. It has also been demonstrated that too low (less than 40 mg L-1) TiO2 concentration is not recommendable. (C) 2012 Elsevier B.V. All rights reserved.

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