Informing ASR Treatment Practices in a Florida Aquifer through a Human Health Risk Approach

Author:

Gitter Anna1ORCID,Mena Kristina D.1,Lisle John T.2ORCID

Affiliation:

1. Department of Epidemiology, Human Genetics and Environmental Sciences, University of Texas Health Science Center-Houston School of Public Health, Houston, TX 77030, USA

2. U.S. Geological Survey, St. Petersburg Coastal and Marine Science Center, St. Petersburg, FL 33701, USA

Abstract

Aquifer storage and recovery (ASR) can augment water supplies and hydrologic flows under varying climatic conditions. However, imposing drinking water regulations on ASR practices, including pre-treatment before injection into the aquifer, remains arguable. Microbial inactivation data—Escherichia coli, Pseudomonas aeruginosa, poliovirus type 1 and Cryptosporidium parvum—were used in a human health risk assessment to identify how the storage time of recharged water in the Floridan Aquifer enhances pathogen inactivation, thereby mitigating the human health risks associated with ingestion. We used a quantitative microbial risk assessment to evaluate the risks for a gastrointestinal infection (GI) and the associated disability-adjusted life years (DALYs) per person per year. The risk of developing a GI infection for drinking water no longer exceeded the suggested annual risk threshold (1 × 10−4) by days 31, 1, 52 and 80 for each pathogen, respectively. DALYs per person per year no longer exceeded the World Health Organization threshold (1 × 10−6) by days 27, <1, 43 and 72. In summary, storage time in the aquifer yields a significant reduction in health risk. The findings emphasize that considering microbial inactivation, caused by storage time and geochemical conditions within ASR storage zones, is critical for recharge water treatment processes.

Funder

South Florida Water Management District

USGS Coastal & Marine Hazards & Resources Program

Southwest Center for Occupational and Environmental Health

Publisher

MDPI AG

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health

Reference51 articles.

1. Pyne, D. (2005). Aquifer Storage Recovery: A Guide to Groundwater Recharge through Wells, ASR Systems. [2nd ed.].

2. National Park Service (2023, July 10). Comprehensive Everglades Restoration Plan (CERP), Available online: https://www.evergladesrestoration.gov.

3. South Florida Water Management District (2023, July 10). Everglades, Available online: https://www.sfwmd.gov/our-work/cerp-project-planning.

4. USEPA (2006). USEPA Ground Water Rule.

5. Florida Department of Environmental Protection (2013). Drinking Water Standards, Monitoring, and Reporting.

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