Investigation of the formation of NDMAUFC across biofilters

Author:

Kent Ashley N.1ORCID,Russell Caroline G.2,Carter Jason T.3ORCID,Mitch William A.4,Hozalski Raymond M.5,Huck Peter M.6

Affiliation:

1. Arcadis U.S., Inc. Austin Texas USA

2. Carollo Engineers, Inc. Austin Texas USA

3. Arcadis U.S., Inc. Birmingham Alabama USA

4. Stanford University Stanford California USA

5. University of Minnesota Minneapolis Minnesota USA

6. University of Waterloo Waterloo Ontario Canada

Abstract

AbstractFull‐scale sampling at 16 facilities illustrated that NDMA precursor concentrations, measured by adding chloramine under Uniform Formation Conditions (NDMAUFC), increased across biofiltration at 7 of 16 facilities (by 3–48 ng/L or 12%–296%) but stayed the same or decreased (by up to 5 ng/L or 24%) at the other nine facilities. Increases in NDMAUFC concentrations were attributed to both particulate and soluble precursors. Only two facilities had an increase in NDMAUFC greater than 10 ng/L. However, NDMAUFC concentrations in the biofilter effluent from five facilities exceeded 10 ng/L during one or more sampling events. For these facilities, testing at multiple scales showed that mitigation steps could include pretreatment with ozone (which resulted in overall lower NDMAUFC), increased free chlorine contact time prior to ammonia addition, and/or optimized biofilter design and operation.

Publisher

Wiley

Subject

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

Reference48 articles.

1. A review of soluble microbial products (SMP) in wastewater treatment systems;Barker D. J.;Water Science Technology,1999

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