A robust scenario analysis approach to water recycling quantitative microbial risk assessment

Author:

Jones Christopher H1ORCID,Wylie Varsha2,Ford Hannah3,Fawell John4,Holmer Melanie5,Bell Katherine6

Affiliation:

1. Brown and Caldwell , 701 Pike St # 1300, Seattle, WA 98101 , United States

2. Southern Water Services Limited , Lewes Road, Falmer, Brighton BN1 9PY , United Kingdom

3. El Toro Water District , 24251 Los Alisos Blvd, Lake Forest, CA 92630 , United States

4. Independent Consultant , Bourne End SL8 5UW , United Kingdom

5. Brown and Caldwell , 202 Cousteau Place, Suite 175, Davis, CA 95618 , United States

6. Brown and Caldwell , 220 Athens Way, Suite 500, Nashville, TN 37228 , United States

Abstract

AbstractAimsThe growing need to access recycled water as a source for drinking water supply necessitates management of perceived risks. This study aimed to use quantitative microbial risk analysis (QMRA) to evaluate microbiological risks of indirect water recycling.Methods and ResultsScenario analyses of risk probabilities of pathogen infection were conducted to investigate four key quantitative microbial risk assessment model assumptions: treatment process failure, drinking water consumption events per day, inclusion or exclusion of an engineered storage buffer, and treatment process redundancy. Results demonstrated that the proposed water recycling scheme could meet WHO pathogen risk guidelines of ∼10−3 annual risk of infection under 18 simulated scenarios.

Funder

Southern Water Services Limited

Brown and Caldwell

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,General Medicine,Biotechnology

Reference58 articles.

1. Public acceptability of indirect potable water reuse in the south-east of England;Aitken;Water Supply,2014

2. Water resources management plan 2019;Anglian Water,2019

3. Drinking water through recycling;ATSE,2013

4. Pathogen reduction requirements for direct potable reuse in Antarctica: evaluating human health risks in small communities;Barker;Sci Total Environ,2013

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