2013•American Water Works AssociationRequires access

Chlorate, perchlorate, and bromate in onsite‐generated hypochlorite systems

Benjamin D. Stanford, Aleksey N. Pisarenko, Deborah J. Dryer, Janie C. Zeigler‐Holady, Sujanie Gamage, Oscar Quiñones, Brett J. Vanderford, Eric Dickenson

Open publisher page 19 citations

Abstract

This study evaluated the occurrence and temporal variability of chlorate, perchlorate, and bromate in 26 low‐strength onsite‐generated (OSG) hypochlorite systems and three high‐strength systems. None of the samples from the systems tested would have contributed more than 1 μg/L perchlorate to the finished water, even at a 10‐mg/L chlorine dose; similarly, none of the samples exceeded the NSF International specific product allowable concentration for bromate of 0.5 μg/mg free chlorine. Of the samples collected, however, 10 of the 29 unique OSG systems would have exceeded the US Environmental Protection Agency's 210‐μg/L health reference level for chlorate at a dose of only 5 mg/L chlorine, and 21 of the 29 would have exceeded 210 μg/L chlorate at the 10‐mg/L chlorine maximum use level. No apparent correlation was found between chlorate production and OSG brand, age, or capacity nor was any correlation observed between chlorate production and pH, transition metals, chloride, conductivity, or temperature.

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What this paper is about

This study evaluated the occurrence and temporal variability of chlorate, perchlorate, and bromate in 26 low‐strength onsite‐generated (OSG) hypochlorite systems and three high‐strength systems. None of the samples from the systems tested would have contributed more than 1 μg/L perchlorate to the finished water, even at a 10‐mg/L chlorine dose; similarly, none of the samples exceeded the NSF International specific product allowable concentration for bromate of 0.5 μg/mg free chlorine. Of the samples collected, however, 10 of the 29 unique OSG systems would have exceeded the US Environmental Protection Agency's 210‐μg/L health reference level for chlorate at a dose of only 5 mg/L chlorine, and 21 of the 29 would have exceeded 210 μg/L chlorate at the 10‐mg/L chlorine maximum use level. No apparent correlation was found between chlorate production and OSG brand, age, or capacity nor was any correlation observed between chlorate production and pH, transition metals, chloride, conductivity, or temperature.

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Available abstract

This study evaluated the occurrence and temporal variability of chlorate, perchlorate, and bromate in 26 low‐strength onsite‐generated (OSG) hypochlorite systems and three high‐strength systems. None of the samples from the systems tested would have contributed more than 1 μg/L perchlorate to the finished water, even at a 10‐mg/L chlorine dose; similarly, none of the samples exceeded the NSF International specific product allowable concentration for bromate of 0.5 μg/mg free chlorine. Of the samples collected, however, 10 of the 29 unique OSG systems would have exceeded the US Environmental Protection Agency's 210‐μg/L health reference level for chlorate at a dose of only 5 mg/L chlorine, and 21 of the 29 would have exceeded 210 μg/L chlorate at the 10‐mg/L chlorine maximum use level. No apparent correlation was found between chlorate production and OSG brand, age, or capacity nor was any correlation observed between chlorate production and pH, transition metals, chloride, conductivity, or temperature.

Key concepts: Chlorate, Bromate, Perchlorate, Hypochlorite, Chlorine, Chemistry, Maximum Contaminant Level, Chloride

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