Understanding the impact of water distribution system conditions on the biodegradation of haloacetic acids and expression of bacterial dehalogenase genes

•HAA5 biodegradation was examined under the effect of water distribution system conditions.•Low basic pH and high concentrations of TOC enhanced HAA biodegradation.•The overall order of mean HAA degradation rates was di > mono > tri-halogenated HAAs.•Relative deh gene expression results suppor...

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Veröffentlicht in:Journal of hazardous materials 2018-06, Vol.351, p.293-300
Hauptverfasser: Behbahani, Mohsen, Lin, Boren, Phares, Tamara L., Seo, Youngwoo
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Sprache:eng
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Zusammenfassung:•HAA5 biodegradation was examined under the effect of water distribution system conditions.•Low basic pH and high concentrations of TOC enhanced HAA biodegradation.•The overall order of mean HAA degradation rates was di > mono > tri-halogenated HAAs.•Relative deh gene expression results supported HAA biodegradation data. The objective of this study is to evaluate the influence of water distribution system conditions (pH, total organic carbon, residual chlorine, and phosphate) on haloacetic acids (HAAs) biodegradation. A series of batch microcosm tests were conducted to determine biodegradation kinetics and collected biomass was used for real time quantitative reverse transcription polymerase chain reaction analyses to monitor how these drinking water distribution system conditions affect the relative expression of bacterial dehalogenase genes. It was observed that tested water distribution system conditions affected HAA biodegradation with different removal efficiencies (0–100%). HAA biodegradation was improved in tested samples with TOC (3 mg/L) and pH 8.5 compared to those of TOC (0 mg/L) and pH 7, respectively. However, slight improvement was observed with the increased PO4 concentration (3.5 mg/L), and the presence of residual chlorine even at low concentration prohibited biodegradation of HAAs. The observed trend in the relative expression of dehII genes was compatible with the HAA biodegradation trend. Overall relative expression ratio of dehII genes was lower at pH 7, phosphate (0.5 mg/L), and TOC (0 mg/L) in comparison with pH 8.5, phosphate (3.5 mg/L), and TOC (3 mg/L) in the same experimental conditions.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2018.02.047