A pathogenic Escherichia coli (E.coli) O157:H7 and O26:H11 dose-response model was set up for a quantitative microbial risk assessment (QMRA) of the waterborne diseases associated with managed aquifer recharge (MAR) practices in semiarid regions. The MAR facility at Forcatella (Southern Italy) was selected for the QMRA application. The target counts of pathogens incidentally exposed to hosts by eating contaminated raw crops or while bathing at beaches of the coastal area were determined by applying the Monte Carlo Markov Chain (MCMC) Bayesian method to the water sampling results. The MCMC provided the most probable pathogen count reaching the target and allowed for the minimization of the number of water samplings, and hence, reducing the associated costs. The sampling stations along the coast were positioned based on the results of a groundwater flow and pathogen transport model, which highlighted the preferential flow pathways of the transported E. coli in the fractured coastal aquifer. QMRA indicated tolerable (<10 DALY) health risks for bathing at beaches and irrigation with wastewater, with 0.4 infectious diseases per year (11.4% probability of occurrence) associated with the reuse of reclaimed water via soil irrigation even though exceeding the E. coli regulation limit of 10 CFU/100 mL by five times. The results show negligible health risk and insignificant impacts on the coastal water quality due to pathogenic E. coli in the wastewater used for MAR. However, droughts and reclaimed water quality can be considered the main issues of MAR practices in semiarid regions suggesting additional reclaimed water treatments and further stress-tests via QMRAs by considering more persistent pathogens than E. coli.

Application of QMRA to MAR operations for safe agricultural water reuses in coastal areas

Masciopinto C
Primo
Writing – Review & Editing
;
Vurro M
Data Curation
;
Lorusso N
Secondo
Software
;
2020

Abstract

A pathogenic Escherichia coli (E.coli) O157:H7 and O26:H11 dose-response model was set up for a quantitative microbial risk assessment (QMRA) of the waterborne diseases associated with managed aquifer recharge (MAR) practices in semiarid regions. The MAR facility at Forcatella (Southern Italy) was selected for the QMRA application. The target counts of pathogens incidentally exposed to hosts by eating contaminated raw crops or while bathing at beaches of the coastal area were determined by applying the Monte Carlo Markov Chain (MCMC) Bayesian method to the water sampling results. The MCMC provided the most probable pathogen count reaching the target and allowed for the minimization of the number of water samplings, and hence, reducing the associated costs. The sampling stations along the coast were positioned based on the results of a groundwater flow and pathogen transport model, which highlighted the preferential flow pathways of the transported E. coli in the fractured coastal aquifer. QMRA indicated tolerable (<10 DALY) health risks for bathing at beaches and irrigation with wastewater, with 0.4 infectious diseases per year (11.4% probability of occurrence) associated with the reuse of reclaimed water via soil irrigation even though exceeding the E. coli regulation limit of 10 CFU/100 mL by five times. The results show negligible health risk and insignificant impacts on the coastal water quality due to pathogenic E. coli in the wastewater used for MAR. However, droughts and reclaimed water quality can be considered the main issues of MAR practices in semiarid regions suggesting additional reclaimed water treatments and further stress-tests via QMRAs by considering more persistent pathogens than E. coli.
2020
Istituto di Ricerca Sulle Acque - IRSA
Inglese
8
http://www.scopus.com/record/display.url?eid=2-s2.0-85089851166&origin=inward
Sì, ma tipo non specificato
Reclaimed water quality
Managed aquifer recharge
E. coli O157:H7 and O26:H11
Dose-infection model
QMRA
Questo articolo evidenzia come il riuso irriguo di acqua garantisca una risorsa per l’approvvigionamento irriguo, con una qualità dell’acqua adeguata in termini di concentrazioni di patogeni, facendo riferimento agli Escherichia coli, in particolare. In particolare, questo articolo suggerisce, passo dopo passo, come si procede nella determinazione del rischio sulla salute dell’uomo, quando di utilizza acqua di riuso di impianto di managed aquifer recharge (MAR), vale a dire impianti di trattamento di effluenti provenienti da impianti municipali di depurazione delle acque reflue. Il calcolo del rischio sulla salute è stato eseguito all’impianto MAR di Forcatella, (Fasano, Brindisi) dove gli autori hanno condotto più campagne di monitoraggio della qualità delle acque superficiali e sotterrane, sia all’interno che all’esterno dell’impianto. La dose infettiva per la i vari utilizzi dell’acqua è stata considerata in un modello innovativo dose-infezione proposto dagli autori, fra i quali c’è il famoso prof. C. N. Hass (Drexel University, Philadelphia, USA), che utilizza la soluzione analitica (cioè l’integrale) della curva di infezione derivata trial test di letteratura. Il rischio ha mostrato alcune criticità per la qualità dell’acqua di balneazione, per la presenza di scarichi di acqua non adeguatamente trattata lungo la costa nonostante l’elevata presenza turistica durante l’estate.
Internazionale
Elettronico
5
info:eu-repo/semantics/article
262
Masciopinto, C; Vurro, M; Lorusso, N; Santoro, D; Haas, Cn
01 Contributo su Rivista::01.01 Articolo in rivista
open
   Networking for Drinking Water Supply in Adriatic Region.
   DrinkAdria
   EU-IPA Adriatic Cross Border Cooperation (CBC) programme 2013/2016
   7.100.000,00
   Project code 1°str./0004/0
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/410602
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