Combating paraben pollution in surface waters with a variety of photocatalyzed systems: Looking for the most efficient technology

Author:

Dominguez Joaquin R.1,Gonzalez Teresa1,Cuerda-Correa Eduardo M.2,Muñoz-Peña Maria J.1

Affiliation:

1. Dept. Chemical Engineering and Physical Chemistry. University of Extremadura, Avda. Elvas, 06006. Badajoz, Spain

2. Dept. Organic and Inorganic Chemistry. University of Extremadura, Avda. Elvas, 06006Badajoz, Spain

Abstract

AbstractThe constant presence of parabens in natural surface waters has raised a growing concern of the potential long-term toxic effects that parabens may have in wildlife, mainly as endocrine disruptors. The present report describes the results of a study in which different photocatalyzed systems, such as photo-Fenton, Fenton, UV-H2O2, UV-TiO2 and UV-TiO2-H2O2, were applied to the removal of these recalcitrant pollutants in some surface waters, including natural (e.g. rivers) and man-made (e.g. reservoirs and wastewater treatment plants). Degradation of four widely-used parabens (methyl-paraben, ethyl-paraben, propyl-paraben and butyl-paraben) was analyzed. Experimental results reveal that the most efficient method to combat these emerging pollutants was photo-Fenton. When this process was optimized, optimal removal efficiency was attained using doses of H2O2 and Fe(II) equal to 2.92·10−4 mol dm-3 and 1.85·10−5 mol dm-3, respectively. It is also worth noting that the removal rate of these contaminants is slower in natural waters. The results suggest that the photo-Fenton process is promising and maybe an adequate technology for the treatment of these persistent contaminants.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,General Chemistry

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