Occurrence of a New Generation of Disinfection Byproducts
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- 26 July 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Environmental Science & Technology
- Vol. 40 (23) , 7175-7185
- https://doi.org/10.1021/es060353j
Abstract
A survey of disinfection byproduct (DBP) occurrence in the United States was conducted at 12 drinking water treatment plants. In addition to currently regulated DBPs, more than 50 DBPs that rated a high priority for potential toxicity were studied. These priority DBPs included iodinated trihalomethanes (THMs), other halomethanes, a nonregulated haloacid, haloacetonitriles, haloketones, halonitromethanes, haloaldehydes, halogenated furanones, haloamides, and nonhalogenated carbonyls. The purpose of this study was to obtain quantitative occurrence information for new DBPs (beyond those currently regulated and/or studied) for prioritizing future health effects studies. An effort was made to select plants treating water that was high in total organic carbon and/or bromide to enable the detection of priority DBPs that contained bromine and/or iodine. THMs and haloacetic acids (HAAs) represented the two major classes of halogenated DBPs formed on a weight basis. Haloacetaldehydes represented the third major class formed in many of the waters. In addition to obtaining quantitative occurrence data, important new information was discovered or confirmed at full-scale plants on the formation and control of DBPs with alternative disinfectants to chlorine. Although the use of alternative disinfectants (ozone, chlorine dioxide, and chloramines) minimized the formation of the four regulated THMs, trihalogenated HAAs, and total organic halogen (TOX), several priority DBPs were formed at higher levels with the alternative disinfectants as compared with chlorine. For example, the highest levels of iodinated THMswhich are not part of the four regulated THMswere found at a plant that used chloramination with no prechlorination. The highest concentration of dichloroacetaldehyde was at a plant that used chloramines and ozone; however, this disinfection scheme reduced the formation of trichloro- acetaldehyde. Preozonation was found to increase the formation of trihalonitromethanes. In addition to the chlorinated furanones that have been measured previously, brominated furanoneswhich have seldom been analyzedwere detected, especially in high-bromide waters. The presence of bromide resulted in a shift to the formation of other bromine-containing DBPs not normally measured (e.g., brominated ketones, acetaldehydes, nitromethanes, acetamides). Collectively, ∼30 and 39% of the TOX and total organic bromine, respectively, were accounted for (on a median basis) by the sum of the measured halogenated DBPs. In addition, 28 new, previously unidentified DBPs were detected. These included brominated and iodinated haloacids, a brominated ketone, and chlorinated and iodinated aldehydes.Keywords
This publication has 32 references indexed in Scilit:
- Evaluation of the stability and analysis of halogenated furanones in disinfected drinking watersAnalytica Chimica Acta, 2005
- Comparative mutagenicity of halomethanes and halonitromethanes in Salmonella TA100: structure–activity analysis and mutation spectraMutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 2004
- Quantification of Nine Haloacetic Acids Using Gas Chromatography with Electron Capture DetectionPublished by American Chemical Society (ACS) ,2000
- Differentiation of Total Organic Brominated and Chlorinated Compounds in Total Organic Halide Measurement: A New Approach with an Ion-Chromatographic TechniquePublished by American Chemical Society (ACS) ,2000
- Formation of Iodo-Trihalomethanes during Disinfection and Oxidation of Iodide-Containing WatersEnvironmental Science & Technology, 2000
- Identification of New Drinking Water Disinfection Byproducts Formed in the Presence of BromideEnvironmental Science & Technology, 1999
- Inhibitors of glycolytic metabolism affect neurulation‐staged mouse conceptuses in vitroTeratology, 1995
- Multispectral Identification of Chlorine Dioxide Disinfection Byproducts in Drinking WaterEnvironmental Science & Technology, 1994
- Identification and quantification of the Ames mutagenic compound 3-chloro-4-(dichloromethyl)-5-hydroxy-2(5H)-furanone and of its geometric isomer (E)-2-chloro-3-(dichloromethyl)-4-oxobutenoic acid in chlorine-treated humic water and drinking water extractsEnvironmental Science & Technology, 1988
- Influence de la Concentration en Bromures sur la Formation de Chloropicrine lors de la Chloration des Eaux. Mise en Evidence de Trihalonitromethanes BromesWater Research, 1988