Abstract
An easily recoverable photo-catalyst in solid form has been synthesized and applied in catalytic ozonation in the presence of primidone. Maghemite, graphene oxide and titania (FeGOTi) constituted the solid. Additionally, titania (TiO2) and graphene oxide–titania (GOTi) catalysts were also tested for comparative reasons. The main characteristics of FeGOTi were 144 m2/g of surface area; a 1.29 Raman D and G band intensity ratio; a 26-emu g−1 magnetic moment; maghemite, anatase and brookite main crystalline forms; and a 1.83 eV band gap so the catalyst can absorb up to the visible red region (677 nm). Single ozonation, photolysis, photolytic ozonation (PhOz), catalytic ozonation (CatOz) and photocatalytic ozonation (PhCatOz) were applied to remove primidone. In the presence of ozone, the complete removal of primidone was experienced in less than 15 min. In terms of mineralization, the best catalyst was GOTi in the PhCatOz processes (100% mineralization in 2 h). Meanwhile, the FeGOTi catalyst was the most efficient in CatOz. FeGOTi led, in all cases, to the highest formation of HO radicals and the lowest ozone demand. The reuse of the FeGOTi catalyst led to some loss of mineralization efficacy after four runs, likely due to C deposition, the small lixiviation of graphene oxide and Fe oxidation.
Funder
Agencia Estatal de Investigación of Spain
Junta de Extremadura and European Funds for Regional Development
Subject
Physical and Theoretical Chemistry,Catalysis,General Environmental Science
Reference79 articles.
1. Advanced catalytic ozonation for degradation of pharmaceutical pollutants―A review;Issaka;Chemosphere,2022
2. Photocatalytic ozonation of wastewater: A review;Mecha;Environ. Chem. Lett.,2020
3. Beltrán, F.J., Rey, A., and Gimeno, O. (2021). The role of catalytic ozonation processes on the elimination of dbps and their precursors in drinking water treatment. Catalysts, 11.
4. Application of ozonation for pharmaceuticals and personal care products removal from water;Gomes;Sci. Total Environ.,2017
5. Von Ozonation of drinking water: Part I. Oxidation kinetics and product formation;Gunten;Water Res.,2003
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