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1

A, Hulsey Robert, AWWA Research Foundation, Massachusetts Water Resources Authority, Concord (Mass.). Public Works., and Southern Nevada Water Authority, eds. Evaluation of ozone and ultraviolet light. Denver, Colo: Awwa Research Foundation, 2005.

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2

E, Cotton Christine, ed. The ultraviolet disinfection handbook. Denver, Colo: American Water Works Association, 2008.

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3

Rochelle, Paul A. Challenge organisms for inactivation of viruses by ultraviolet treatment. Denver, Colo: Water Research Foundation, 2010.

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4

Jeannie, Darby, and Water Environment Research Foundation, eds. The effect of upstream treatment processes on UV disinfection performance. Alexandria, VA: Water Environment Research Foundation, 1999.

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5

Wright, Harold. Design and performance guidelines for UV sensor systems. Denver, Colorado]: Water Research Foundation, 2009.

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6

Ray, Cantwell, AWWA Research Foundation, and East Bay Municipal Utility District (Calif.), eds. UV disinfection at the East Bay Municipal Utility District. Denver, CO: Awwa Research Foundation, 2006.

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7

Association, International Ultraviolet, ed. Ultraviolet disinfection for wastewater -- low-dose application guidance for secondary and tertiary discharges. Alexandria, Va: Water Environment Federation, 2015.

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8

David, Gaithuma, Heath Mark, Schulz Chris, Bogan Travis, and Water Research Foundation, eds. UV disinfection knowledge base. Denver, CO: Water Research Foundation, 2012.

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9

Ray, Cantwell, AWWA Research Foundation, and East Bay Municipal Utility District (Calif.), eds. UV disinfection at the East Bay Municipal Utility District. Denver, CO: Awwa Research Foundation, 2006.

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10

Ray, Cantwell, AWWA Research Foundation, and East Bay Municipal Utility District (Calif.), eds. UV disinfection at the East Bay Municipal Utility District. Denver, CO: Awwa Research Foundation, 2006.

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11

Hermanson, Ronald E. Drinking water, bacteriological safety and treatment. [Pullman, Wash.]: Cooperative Extension, Washington State University, 1991.

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12

Linden, Karl G. Disinfection efficiency and dose measurement of polychromatic UV light. Denver, CO: Awwa Research Foundation, 2003.

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13

D, Rougier André Ph, and Schaefer H. 1935-, eds. Protection of the skin against ultraviolet radiations. Paris: J. Libbey Eurotext, 1998.

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14

Malley, James P. Evaluation of by-products produced by treatment of groundwaters with ultraviolet irradiation. Denver, CO: The Foundation and American Water Works Association, 1995.

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15

S, Cushing Robert, Crozes Gil F, and AWWA Research Foundation, eds. Practical aspects of UV disinfection. Denver, CO: AWWA Research Foundation and American Water Works Association, 2001.

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16

G, Rice Rip, ed. Ultraviolet light in water and wastewater sanitation. Boca Raton, FL: Lewis Publishers, 2002.

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17

Canada, Canada Environment, Federation of Canadian Municipalities, Ontario. Ministry of the Environment., Windsor (Ont ), Stantec Consulting Ltd, and Hydromantis Inc, eds. Ultraviolet disinfection technology for municipal wastewater treatment plant applications in Canada: Final report. [Ottawa: Environment Canada], 2003.

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18

Gagnon, Graham A. Impact of UV disinfection on biological stability. Denver, CO: Awwa Research Foundation, 2004.

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19

A, Rochelle Paul, and AWWA Research Foundation, eds. An investigation of UV disinfection and repair in Cryptosporidium parvum. Denver, CO: AWWA Research Foundation, 2004.

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20

Linden, Karl G. Impact of UV location and sequence on by-product formation. Denver, Colo: Water Research Foundation, 2012.

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21

Wobma, Paul C. UV disinfection and disinfection by-product characteristics of unfiltered water. Denver, CO: Awwa Research Foundation, 2004.

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22

New York State Energy Research and Development Authority. Evaluation of ultraviolet (UV) radiation disinfection technologies for wastewater treatment plant effluent: Final report. Albany, N.Y: NYSERDA, 2004.

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23

Dixon, Michael. A high intensity ultraviolet light source and delivery system for remote sterilization: Final report. [Toronto]: Queen's Printer for Ontario, 1996.

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24

Ing, Jo-Anne S. Impacts of medium-pressure UV irradiation on disinfection by-product formation: Residuals management plant, Mannheim Water Treatment Plant, Kitchener, Ontario. [Waterloo: s.n.], 1999.

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25

Risk Reduction Engineering Laboratory (U.S.) and Superfund Innovative Technology Evaluation Program (U.S.), eds. CAV-OX[® superscript] cavitation oxidation process, Magnum Water Technology, Inc.: Applications analysis report. Cincinnati, Ohio: Risk Reduction Engineering Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1994.

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26

Alvarez, Matthew B. Treating algal toxins using oxidation, adsorption, and membrane technologies. Denver, Colo: Water Research Foundation, 2010.

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27

R, Jones William, Herrera-Fierro Pilar, and United States. National Aeronautics and Space Administration., eds. The effects of acid passivation, tricresyl phosphate pre-soak, and UV/ozone treatment on the tribology of perfluoropolyether-lubricated 440C stainless steel couples. [Washington, DC: National Aeronautics and Space Administration, 1997.

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28

Ksenofontov, Boris, Aleksandr Lukanin, and Evgeniy Pirogov. Chemical and physico-chemical methods of wastewater and man-made water treatment. ru: INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1863094.

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The monograph discusses issues related to chemical and physico-chemical methods of wastewater and man-made water treatment, including oxidation and sorption of pollutants, as well as their coagulation and flocculation and other processes of wastewater and man-made water treatment. At the same time, individual tasks are considered for the first time both in domestic and in the world practice of water treatment. First of all, this applies to the use of strong oxidizing agents in the practice of water purification, as well as neutralizing substances. In addition, the issues of intensification of chemical reactions occurring during wastewater treatment using various reagents are considered. At the same time, water treatment using ultraviolet light, electromagnetic fields, etc. is considered as an intensifying effect. As a result of the complex effect on the treated water, a high technological effect of purification is achieved. For a wide range of readers, including researchers, university professors, graduate students, masters, bachelors and undergraduates.
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29

Weathington, B. Chris. Destruction of cyanide in wastewaters: Review and evaluation. Cincinnati, OH: U.S. Environmental Protection Agency, Water Engineering Research Laboratory, 1988.

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30

Weathington, B. Chris. Destruction of cyanide in wastewaters: Review and evaluation. Cincinnati, OH: U.S. Environmental Protection Agency, Water Engineering Research Laboratory, 1988.

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31

S, Rigel Darrell, ed. Photoaging. New York: Marcel Dekker, 2004.

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32

1949-, Lim Henry W., and Draelos Zoe Kececioglu, eds. Clinical guide to sunscreens and photoprotection. New York: Informa Healthcare, 2008.

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33

Linden, Karl G. Impact of UV and UV/H₂O₂ AOP on EDC activity in water. Denver, Colo: Awwa Research Foundation, 2007.

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34

Linden, Karl G. Impact of UV and UV/H₂O₂ AOP on EDC activity in water. Denver, Colo: Awwa Research Foundation, 2007.

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35

Effect of Upstream Treatment Processes on UV Disinfection Performance, the. Water Environment Federation,US, 1999.

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36

UV disinfection at the East Bay Municipal Utility District. Denver, CO: Awwa Research Foundation, 2006.

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37

Leach, John, Dan Moran, Brian A. Petri, Gary V. Hunter, and Michael Madeau. Full-Scale Implementation of Ultraviolet Disinfiction in Groundwater Treatment Systems. Amer Water Works Assn, 2001.

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38

Mackey, Erin D., Jean-Michel Laine, Robert S. Cushing, Marie-Laure Janex-Habibi, and Nicolas Picard. Bridging Pilot-Scale Testing to Full-Scale Design of UV Disinfection Systems. American Water Works Research Association, 2004.

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39

Ultraviolet Light in Water and Wastewater Sanitation (2002). Taylor & Francis Group, 2017.

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40

Rice, Rip G., and Willy J. Masschelein. Ultraviolet Light in Water and Wastewater Sanitation (2002). Taylor & Francis Group, 2017.

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41

Rice, Rip G., and Willy J. Masschelein. Ultraviolet Light in Water and Wastewater Sanitation (2002). Taylor & Francis Group, 2017.

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42

Rice, Rip G., and Willy J. Masschelein. Ultraviolet Light in Water and Wastewater Sanitation (2002). Taylor & Francis Group, 2017.

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43

Rice, Rip G., and Willy J. Masschelein. Ultraviolet Light in Water and Wastewater Sanitation (2002). Taylor & Francis Group, 2017.

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44

Snicer, Gregory A. Uv Inactivation of Viruses in Natural Waters. Amer Water Works Assn, 1999.

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45

Kozobolis, Vassilios. Corneal Collagen Cross-Linking Using Riboflavin and Ultraviolet-A Irradiation in Keratitis Treatment. INTECH Open Access Publisher, 2012.

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46

Awwa Research Foundation (Corporate Author) and Jennifer L. Clancy (Editor), eds. Susceptibility of Multiple Strains of C. Parvum to Uv Light. American Water Works Association, 2002.

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47

Co, Business Communications. Advanced Technology for Municipal Water Treatment. Business Communications Company, 2003.

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48

Co, Business Communications. Advanced Water Treatment for the Power Generation Industry. Business Communications Company, 2004.

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49

Bishop, Mark, John Young, William Becker, Christine Cotton, Laurel Passantino, Douglas Owen, Matthew Valade, Roopesh Joshi, Mark LeChevallier, and Rich Hubel. Integrating UV Disinfection into Existing Water Treatment. American Water Works Research Foundation, 2005.

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50

Integrating UV disinfection into existing water treatment plants. Denver, Colo: Awwa Research Foundation, 2005.

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