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1

DiGiano, Francis A. Disinfectant decay and corrosion: Laboratory and field studies. Denver, CO: Awwa Research Foundation, 2004.

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2

Black & Veatch, ed. White's handbook of chlorination and alternative disinfectants. 5th ed. Hoboken, N.J: Wiley, 2010.

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3

Selecting disinfectants in a security-conscious environment. Denver, CO: American Water Works Association, 2009.

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4

The handbook of chlorination and alternative disinfectants. 4th ed. New York: J. Wiley, 1999.

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5

The handbook of chlorination and alternative disinfectants. 3rd ed. New York: Van Nostrand Reinhold, 1992.

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6

Pacific Northwest Pollution Control Association. Disinfecting wastewater for discharge & reuse: Proceedings : March 17-20, 1996, Portland, Marriott, Portland, OR. Alexandria, Va: Water Environment Federation, 1996.

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7

Bull, Richard J. Health effects of disinfectants and disinfection by-products. Denver, CO: AWWA Research Foundation and American Water Works Association, 1991.

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8

Spellman, Frank R. Choosing disinfection alternatives for water/wastewater treatment. Lancaster, Pa: Technomic Pub. Co., 1999.

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9

Boyd, Glen R. Effect of changing disinfectants on distribution system lead and copper release. Denver, Colo: AWWA Research Foundation, 2006.

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10

American Water Works Association. Conference, American Water Works Association. Water Quality Division., and American Water Works Association. Research Division., eds. Proceedings. Denver, CO: American Water Works Association, 1989.

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11

New York State Energy Research and Development Authority. Optimization of UV disinfection. [Denver, Col.]: Awwa Research Foundation and New York State Energy Research and Development Authority, 2007.

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12

Directorate, Canada Environmental Health. A national survey of chlorinated disinfection by-products in Canadian drinking water. Ottawa, Ont: Environmental Health Directorate, 1995.

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13

Alden, C. J. NTP technical report on the toxicology and carcinogenesis studies of chlorinated water (CAS NOS. 7782-50-5 and 7681-52-9) and chloraminated water (CAS NO. 10599-90-3) (deionized and charcoal-filtered) in F344/N rats and B6C3F1 mice (drinking water studies). Research Triangle Park, NC: U.S. Dept. of Health and Human Services, Public Health Service, National Institutes of Health, National Toxicology Program, 1992.

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14

Reiber, Steve Harold. Chloramine effects on distribution system materials. Denver, CO: AWWA Research Foundation, 1993.

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15

Watson, Montgomery. Mathematical modeling of the formation of THMs and HAAs in chlorinated natural waters, final report. Denver, CO: Water Industry Technical Action Fund, American Water Works Association, 1993.

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16

1933-, Gordon Gilbert, and AWWA Research Foundation, eds. Disinfectant residual measurement methods. Denver, CO: American Water Works Association, 1987.

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17

Awwa Research Foundation (Corporate Author), ed. Effect of Initial Microbial Concentration on Disinfectant Efficiency. Amer Water Works Assn, 2002.

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18

Disinfectants And Disinfectant By-products (Environmental Health Criteria). World Health Organization, 2000.

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19

United States. Environmental Protection Agency. Office of Water., ed. Complying with the Stage 1 disinfectants and disinfection byproducts rule : one of the simple tools for effective peformance (STEP) guide series : for small systems adding any chemical disinfectant. [Washington, D.C.]: EPA, Office of Water, 2006.

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20

United States. Environmental Protection Agency. Office of Water., ed. Complying with the Stage 1 disinfectants and disinfection byproducts rule : one of the simple tools for effective peformance (STEP) guide series : for small systems adding any chemical disinfectant. [Washington, D.C.]: EPA, Office of Water, 2006.

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21

Complying with the Stage 1 disinfectants and disinfection byproducts rule : one of the simple tools for effective peformance (STEP) guide series : for small systems adding any chemical disinfectant. [Washington, D.C.]: EPA, Office of Water, 2006.

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22

1933-, Gordon Gilbert, and AWWA Research Foundation, eds. A Survey of the current status of residual disinfectant measurement methods for all chlorine species and ozone. Denver, CO: American Water Works Association, 1987.

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23

Laboratory, Water Engineering Research, ed. Alternative oxidant and disinfectant treatment strategies for controlling trihalomethane formation: Project summary. Cincinnati, OH: U.S. Environmental Protection Agency, Water Engineering Research Laboratory, 1988.

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24

Vikesland, Peter J. The Role of the Pipe-Water Interface in Dbp Formation and Disinfectant Loss. Amer Water Works Assn, 2000.

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25

United States. Environmental Protection Agency. Office of Water, ed. Complying with the Stage 1 disinfectants and disinfection byproducts rule: Basic guide : one of the Simple Tools for Effective Performance (STEP) guide series for small systems adding any chemical disinfectant. [Washington, D.C.]: U.S. Environmental Protection Agency, Office of Water, 2006.

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26

Wood, Delmer W. Determination of disinfectant residuals in chlorine dioxide treated water using flow injection analysis. 1990.

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27

Alternative oxidant and disinfectant treatment strategies for controlling trihalomethane formation: Project summary. Cincinnati, OH: U.S. Environmental Protection Agency, Water Engineering Research Laboratory, 1988.

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28

Monaghan, Pegeen. An evaluation of chlorine as a disinfectant for potable water supplies in the United States: Weighing the human health risks. 1991.

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29

Washington (State). Division of Drinking Water., ed. Alternate disinfectants: Using disinfectants other than chlorine. [Olympia, Wash.]: Washington State Dept. of Health, Environmental Health Programs, Division of Drinking Water, 2004.

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30

Washington (State). Division of Drinking Water., ed. Alternate disinfectants: Using disinfectants other than chlorine, questions & answers. [Olympia, Wash.]: Washington State Dept. of Health, Environmental Health Programs, Division of Drinking Water, 2004.

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31

Inactivation of Waterborne Emerging Pathogens by Selected Disinfectants. American Water Works Association, 2002.

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32

Clifford, White George, and Black & Veatch., eds. White's handbook of chlorination and alternative disinfectants. 5th ed. Hoboken, N.J: Wiley, 2010.

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33

White, Geo Clifford. The handbook of chlorination and alternative disinfectants. 3rd ed. Van Nostrand Reinhold, 1992.

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34

Fitzpatrick, Timothy William. Toward understanding and predicting the performance of demand release disinfectants. 1986.

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35

Disinfectants and disinfection byproducts: Stage 1 rule. [Olympia, Wash.]: Washington State Dept. of Health, Environmental Health Programs, Division of Drinking Water, 2004.

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36

Awwa Research Foundation (Corporate Author), American Water Works Association (Corporate Author), and Gordon R. Finch (Editor), eds. Synergistic Effects of Mutlitple Disinfectants: Revised Final Report. Amer Water Works Assn, 1999.

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37

United States. Environmental Protection Agency. Office of Water., ed. Alternative disinfectants and oxidants guidance manual. [Washington, D.C.]: U.S. Environmental Protection Agency, Office of Water, 1999.

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38

United States. Environmental Protection Agency. Office of Water and United States. Environmental Protection Agency. Office of Water Program Operations., eds. Alternative disinfectants and oxidants guidance manual. [Washington, D.C.]: U.S. Environmental Protection Agency, Office of Water, 1999.

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39

Using DWSRF funds to comply with the stage 1 disinfectants and disinfection byproducts rule. Washington, DC: U.S. Environmental Protection Agency, Office of Ground Water and Drinking Water, 2002.

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40

Agency, Ireland Environmental Protection, ed. Water treatment manuals: Disinfection. Wexford: E.P.A., 1998.

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41

Fielding, M., and M. Farrimond. Disinfection By-products in Drinking Water: Current Issues. Woodhead Publishing Ltd, 1999.

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42

Tanju, Karanfil, ed. Disinfection by-products: Occurrence, formation, health effects, and control. Washington, DC: American Chemical Society, 2008.

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43

Kril, Michael Bohdan. Solid phase supported chemical disinfectants: Interactions with and activity against microorganisms. 1986.

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44

Disinfection by-product formation by alternative disinfectants and removal by granular activated carbon. Cincinnati, Ohio: Water Engineering Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1993.

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45

Laboratory, Water Engineering Research, ed. Disinfection by-product formation by alternative disinfectants and removal by granular activated carbon. Cincinnati, Ohio: Water Engineering Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1993.

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46

Laboratory, Water Engineering Research, ed. Disinfection by-product formation by alternative disinfectants and removal by granular activated carbon. Cincinnati, Ohio: Water Engineering Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1993.

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47

Laboratory, Water Engineering Research, ed. Disinfection by-product formation by alternative disinfectants and removal by granular activated carbon. Cincinnati, Ohio: Water Engineering Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1993.

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48

Disinfection by-product formation by alternative disinfectants and removal by granular activated carbon. Cincinnati, Ohio: Water Engineering Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1993.

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49

Disinfection by-product formation by alternative disinfectants and removal by granular activated carbon. Cincinnati, Ohio: Water Engineering Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1993.

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50

Bull, Richard J., Stuart Krasner, and Phillippe Daniel. Health Effects and Occurrence of Disinfection By-Products. 9 9, 2001.

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