Changes in Blood Trihalomethane Concentrations Resulting From Differences in Water Quality and Water Use Activities

Author:

Ashley David L.1,Blount Benjamin C.1,Singer Philip C.2,Depaz Erika2,Wilkes Charles3,Gordon Sydney4,Lyu Christopher5,Masters John5

Affiliation:

1. a Emergency Response and Air Toxicants Branch, Division of Laboratory Sciences, National Center for Environmental Health, Centers for Disease Control and Prevention (CDC), Atlanta, GA

2. b Department of Environmental Sciences and Engineering, University of North Carolina, Chapel Hill

3. c Wilkes Technologies, Inc., Bethesda, MD

4. d Battelle Memorial Institute in Columbus, OH

5. e Battelle in the Durham, NC, Office

Publisher

Informa UK Limited

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health,General Environmental Science,Toxicology

Reference33 articles.

1. Rook JJ. Haloforms in drinking waters. J Am Water Works Assoc. 1976; 68:168-172.

2. Krasner S, McGuire MJ, Jacangelo JG, Patania NL, Reagan KM, Aieto EM. The occurrence of disinfection by-products in US drinking water. J Am Water Works Assoc. 1989; 81:41-53.

3. Obolensky A, Singer PC. Halogen substitution patterns among disinfection byproducts in the information collection rule database. Environ Sci Technol. 2005; 39:2719-2730.

4. Bull RJ, Birnbaum LS, Cantor KP, et al. Water chlorination: essential process or cancer hazard? Fundam Appl Toxicol. 1995; 28:155-166.

5. Cantor KP, Hoover R, Hartge P, et al. Bladder cancer, drinking water source, and tap water consumption: a case-control study. J Natl Cancer Inst. 1987; 79:1269-1279.

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