Science-based pathogen treatment requirements for direct potable reuse

Author:

Pecson Brian M.1ORCID,Kaufmann Anya1ORCID,Gerrity Daniel2,Haas Charles N.3ORCID,Seto Edmund4,Ashbolt Nicholas J.5,Slifko Theresa6,Darby Emily1ORCID,Olivieri Adam7

Affiliation:

1. Trussell Technologies, Oakland, California, USA

2. Applied Research and Development Center, Southern Nevada Water Authority, Las Vegas, Nevada, USA

3. Drexel University, Philadelphia, Pennsylvania, USA

4. University of Washington, Seattle, Washington, USA

5. University of South Australia, Adelaide, Australia

6. Metropolitan Water District of Southern California, Los Angeles, California, USA

7. EOA, 1410 Jackson Street, Oakland, California, USA

Abstract

This study specifies science-based pathogen treatment requirements for direct potable reuse using high-quality monitoring data and probabilistic approaches to ensure consistent and reliable protection of public health.

Funder

California State Water Resources Control Board

Publisher

Royal Society of Chemistry (RSC)

Subject

Water Science and Technology,Environmental Engineering

Reference46 articles.

1. C. N.Haas , J. B.Rose and C. P.Gerba , Quantitative microbial risk assessment , Wiley , New York , 1999

2. Modeling the Risk From Giardia and Viruses in Drinking Water

3. State Water Resources Control Board , Investigation on the feasibility of developing uniform water recycling criteria for direct potable reuse: Report to the legislature September 2016 - Public Review Draft , State Water Resources Control Board , Sacramento, CA , 2016

4. A. W.Olivieri , J.Crook , M. A.Anderson , R. J.Bull , J. E.Drewes , C. N.Haas , W.Jakubowski , P. L.McCarty , K. L.Nelson , J. B.Rose , D. L.Sedlak and T. J.Wade , Evaluation of the Feasibility of Developing Uniform Water Recycling Criteria for Direct Potable Reuse , California State Water Resources Control Board , Fountain Valley, CA , 2016

5. Distributions of waterborne pathogens in raw wastewater based on a 14-month, multi-site monitoring campaign

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