A chemical and bio-analytical protocol is proposed as a holistic monitoring framework for the assessment of WWTPs (Wastewater Treatment Plants) performance. This combination of tests consists of: i) an analysis of emerging contaminants, to be added to the established physicoechemical parameters in order to understand the causes of (new) pollution phenomena and ii) some of the bio-analytical tools most widely applied in the field of wastewater research, which provide information on groups of chemicals with a common mode of toxic action (baseline toxicity, estrogenicity and mutagenicity/genotoxicity, selected as the most representative for human health). The negative effects of the discharge can thus be highlighted directly and used to assess the global environmental impact of WWTPs. As a validation, this multi-tiered approach was applied to a full-scale WWTP (150,000 p.e.), where different measurements were carried out: EDCs (Endocrine Disrupting Compounds) detection; algal growth inhibition, bioluminescence inhibition and acute toxicity test (for baseline toxicity); an E-Screenlike assay (for estrogenic activity); Ames, Allium cepa and Comet tests (for mutagenic/genotoxic activity). As a result, the WWTP showed good performance for all these issues, displaying its ability to enhance effluent quality, except for residual mutagenic behaviour, probably due to the by-products generated by the tertiary ozonation.

The assessment of WWTPs performance: Towards a jigsaw puzzle evaluation?

PAPA, MATTEO;CERETTI, Elisabetta;VIOLA, Gaia Claudia Viviana;FERETTI, Donatella;ZERBINI, Ilaria;MAZZOLENI, Giovanna;STEIMBERG, Nathalie;PEDRAZZANI, Roberta;BERTANZA, Giorgio
2016-01-01

Abstract

A chemical and bio-analytical protocol is proposed as a holistic monitoring framework for the assessment of WWTPs (Wastewater Treatment Plants) performance. This combination of tests consists of: i) an analysis of emerging contaminants, to be added to the established physicoechemical parameters in order to understand the causes of (new) pollution phenomena and ii) some of the bio-analytical tools most widely applied in the field of wastewater research, which provide information on groups of chemicals with a common mode of toxic action (baseline toxicity, estrogenicity and mutagenicity/genotoxicity, selected as the most representative for human health). The negative effects of the discharge can thus be highlighted directly and used to assess the global environmental impact of WWTPs. As a validation, this multi-tiered approach was applied to a full-scale WWTP (150,000 p.e.), where different measurements were carried out: EDCs (Endocrine Disrupting Compounds) detection; algal growth inhibition, bioluminescence inhibition and acute toxicity test (for baseline toxicity); an E-Screenlike assay (for estrogenic activity); Ames, Allium cepa and Comet tests (for mutagenic/genotoxic activity). As a result, the WWTP showed good performance for all these issues, displaying its ability to enhance effluent quality, except for residual mutagenic behaviour, probably due to the by-products generated by the tertiary ozonation.
2016
2015
Ateneo di appartenenza
LS7_10 Public health and epidemiology
LS7_11 Environment and health risks including radiation
LS8_9 Environmental toxicology
LS9_9 Biotechnology, bioreactors, applied microbiology
PE5_9 Environment chemistry
PE8_3 Civil engineering, maritime/hydraulic engineering, geotechnics, waste treatment
Esperti anonimi
Inglese
Internazionale
ELETTRONICO
145
291
300
10
Ecotoxicity, EDCs, Estrogenicity, Mutagenicity, Wastewater
no
9
info:eu-repo/semantics/article
262
Papa, Matteo; Ceretti, Elisabetta; Viola, Gaia Claudia Viviana; Feretti, Donatella; Zerbini, Ilaria; Mazzoleni, Giovanna; Steimberg, Nathalie; Pedrazz...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/468108
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