Impact of phosphate addition on PFAS treatment performance for drinking water

Author:

Haupert Levi M.1ORCID,Redding Adam2,Gray J. Margaret3,Civardi John3,Datsov Boris4,Sanan Toby T.1ORCID,Mills Marc A.1,Speth Thomas F.1ORCID,Burkhardt Jonathan B.1ORCID

Affiliation:

1. Office of Research and Development, Center for Environmental Solutions and Emergency Response U.S. Environmental Protection Agency Cincinnati Ohio USA

2. Calgon Carbon Corporation, Drinking Water Solutions Moon Township Pennsylvania USA

3. Mott MacDonald Iselin New Jersey USA

4. ORAU Student Services Contractor Oak Ridge Associated Universities Cincinnati Ohio USA

Abstract

AbstractAdding new unit operations to drinking water treatment systems requires consideration of not only efficacy for its design purpose but also costs, water quality characteristics, impact on overall regulatory compliance, and impact of other treatment unit operations. Here, pilot study results for ion exchange (IX) and granular activated carbon (GAC) are presented for a utility with both per‐ and polyfluoroalkyl substances (PFAS) and volatile organic contaminant removal needs. Specifically, the impact of upstream air stripping and phosphate addition on PFAS treatment performance was evaluated. Modeling was used to fit the IX and GAC pilot data and predict performance under different scenarios. GAC performance was generally consistent for treating water before or after the air stripper, but the addition of phosphate prior to air‐stripping resulted in a loss of 15%–25% capacity for some PFAS on IX media, demonstrating the need to consider the entire treatment train before implementing PFAS removal unit operations.

Publisher

Wiley

Subject

Water Science and Technology,Environmental Engineering,General Chemistry,Filtration and Separation

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