Fate of microbial contamination in a South European Coastal Lagoon (Ria Formosa) under the influence of treated effluents dispersal

Author:

Caetano Sandra12,Correia Cátia1,Vidal Ana Flor Torres1,Matos André1,Ferreira Cristina1,Cravo Alexandra13ORCID

Affiliation:

1. CIMA, Centre of Marine and Environmental Research/ARNET—Infrastructure Network in Aquatic Research, University of Algarve , Campus de Gambelas, 8000-139 Faro , Portugal

2. School of Health (ESS), University of Algarve, Escola Superior de Saúde da Universidade do Algarve , Campus de Gambelas, Edifício 1, Piso 3, 8005-139 Faro , Portugal

3. Sciences and Technology Faculty (FCT), University of Algarve, Faculdade de Ciências e Tecnologia , Campus de Gambelas, Edifício 7, 8005-139 Faro , Portugal

Abstract

Abstract Aim Assessment of the fate of microbial contamination driven from treated wastewater disposal at a highly productive zone on a South European coastal lagoon (Ria Formosa). Methods and results Microbial indicators of contamination (Total coliforms, Escherichia coli, and Enterococci) were evaluated monthly during September 2018–September 2020 at three study areas (Faro, Olhão, and Tavira) under different wastewater discharge flows and hydrodynamic conditions. Additional data on E. coli monitoring in bivalves, available from the national institution responsible for their surveillance was also considered. The maximum microbial contamination was found at Faro, the highest-load and less-flushed study area, contrasting the lowest contamination at Olhão, a lower-load and strongly flushed area. The wastewater impact decreased along the spatial dispersal gradients and during high water, particularly at Faro and Tavira study areas, due to a considerable dilution effect. Microbial contamination at Olhão increased during the summer, while at the other study areas seasonal evidence was not clear. Data also indicate that E. coli in bivalves from bivalve production zones next to the three study areas reflected the differentiated impact of the wastewater treatment plants effluents on the water quality of those areas. Conclusions Effluent loads together with local hydrodynamics, water temperature, solar radiation, precipitation, and land runoff as well as seabirds populations and environmentally adapted faecal or renaturelized bacterial communities, contributed to microbial contamination of the study areas.

Funder

FCT

CIMA

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,General Medicine,Biotechnology

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