Holistic approach to chemical and microbiological quality of aquatic ecosystems impacted by wastewater effluent discharges

Sci Total Environ. 2022 Aug 20:835:155388. doi: 10.1016/j.scitotenv.2022.155388. Epub 2022 Apr 27.

Abstract

Wastewater treatment plants (WWTPs) collect wastewater from various sources and use different treatment processes to reduce the load of pollutants in the environment. Since the removal of many chemical pollutants and bacteria by WWTPs is incomplete, they constitute a potential source of contaminants. The continuous release of contaminants through WWTP effluents can compromise the health of the aquatic ecosystems, even if they occur at very low concentrations. The main objective of this work was to characterize, over a period of four months, the treatment steps starting from income to the effluent and 5 km downstream to the receiving river. In this context, the efficiency removal of chemical pollutants (e.g. hormones and pharmaceuticals, including antibiotics) and bacteria was assessed in a WWTP case study by using a holistic approach. It embraces different chemical and biological-based methods, such as pharmaceutical analysis by HPLC-MSMS, growth rate inhibition in algae, ligand binding estrogen receptor assay, microbial community study by 16S and shotgun sequencing along with relative quantification of resistance genes by quantitative polymerase chain reaction. Although both, chemical and biological-based methods showed a significant reduction of the pollutant burden in effluent and surface waters compared to the influent of the WWTP, no complete removal of pollutants, pathogens and antibiotic resistance genes was observed.

Keywords: Antibiotics; Antimicrobial resistance; Bioassays; Metagenomics; Pharmaceuticals; Wastewater treatment plant.

MeSH terms

  • Bacteria
  • Environmental Monitoring / methods
  • Microbiota*
  • Rivers / chemistry
  • Waste Disposal, Fluid / methods
  • Wastewater / chemistry
  • Water Pollutants, Chemical* / analysis
  • Water Purification*

Substances

  • Waste Water
  • Water Pollutants, Chemical