Published June 2021 | Version v1
Journal article

Treatment of wastewater effluents from Bogotá – Colombia by the photo-electro-Fenton process: Elimination of bacteria and pharmaceutical

  • 1. Grupo de Investigación en Ciencias Biológicas y Químicas (GIBIQS), Facultad de Ciencias, Universidad Antonio Nariño (UAN), Bogotá (Colombia)
  • 2. Grupo de Investigación en Remediación Ambiental y Biocatálisis (GIRAB), Instituto de Química, Facultad de Ciencias Exactas y Naturales, Universidad de Antioquia (UdeA), Calle 70 No. 52-21, Medellín (Colombia)
  • 3. Universidad Nacional de Colombia - Sede Bogotá, Facultad de Ciencias, Departamento de Química, Carrera 30 45-03, Edificio 451 Oficina 101, Bogotá (Colombia)
  • 4. Research Institute for Pesticides and Water (IUPA), University Jaume I, Castellón (Spain)

Description

Highlights: • 25 pharmaceutical compounds were detected representing a high environmental risk. • Bacteria families were detected by metagenomic analyses. • PEF process enhanced the elimination of pharmaceuticals and some pathogenic bacteria. • PEF system eliminated approximately 94% of the genetic material. In this work, the occurrences of bacteria families and relevant pharmaceuticals in municipal wastewater effluents from Bogotá (Colombia), and their treatment by the photo-electro-Fenton process were studied. Twenty-five representative pharmaceuticals (azithromycin, carbamazepine, ciprofloxacin, clarithromycin, diclofenac, enalapril, gabapentin, iopromide, metoprolol, sulfamethoxazole, trimethoprim, valsartan, clindamycin, erythromycin, levamisole, lincomycin, norfloxacin, oxolinic acid, phenazone, primidone, salbutamol, sulfadiazine, tetracycline, tramadol, and venlafaxine) were quantified in the effluent by LC-MS/MS analysis. Four of these target compounds (azithromycin, diclofenac, trimethoprim, norfloxacin) were found at concentrations that represent an environmental risk. In addition, several bacteria families related to water and foodborne diseases were identified in such effluents (e.g., Pseudomonadaceae, Campylobacteraceae, Aeromonadaceae, Enterobacteriaceae, and Bacteroidaceae), via shotgun-metagenomic technique. Then, a bench-scale photo-electro-Fenton (PEF) system equipped with a DSA anode (Ti/IrO2-SnO2) and a GDE cathode was applied to treat such effluents. After 60 min, this treatment led to a decrease in the ratio of the bacterial content in the original samples, ~150 thousand times, and a pondered removal of 66.12% for the pharmaceuticals. The study of the process pathways indicated that the bacteria and pharmaceuticals elimination mainly occurred through attacks of hydroxyl and chlorine radicals. Interestingly, in the case of pharmaceuticals, their environmental risk quotients were diminished after the PEF application. Furthermore, the prolonged action of this electrochemical process induced ~15% of mineralization and a significant reduction of the total DNA (removal >85%). Hence, the photo-electro-Fenton process showed to be a promising alternative to deal with municipal effluents for limiting the waterborne diseases, pollution by pharmaceuticals, and mobility/availability of genetic material coming from microorganisms.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.scitotenv.2020.144890

Additional details

Identifiers

DOI
10.1016/j.scitotenv.2020.144890;
PII
S0048969720384230;

Publishing Information

Journal Title
Science of the Total Environment
Journal Volume
772
Journal Page Range
vp.
ISSN
0048-9697
CODEN
STENDL

Optional Information

Copyright
Copyright (c) 2021 Elsevier B.V. All rights reserved.