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1

Stewart, Maurice. Produced water treatment field manual. Gulf Professional Pub., 2011.

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2

Nasr, S. Z. Characterization of surface active contaminants in waste water and produced water treatment. UMIST, 1996.

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3

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

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4

A, Briggs David, AWWA Research Foundation, Contra Costa Water District (Calif.), et al., eds. Advanced water treatment of estuarine water supplies. AWWA Research Foundation, 2008.

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5

Briggs, David A. Advanced water treatment of estuarine water supplies. AWWA Research Foundation, 2008.

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6

A, Johnson Bruce, Water Research Foundation, Phoenix (Ariz ), Las Vegas Valley Water District (Nev.), and South Central Connecticut Regional Water Authority., eds. Localized treatment for disinfection by-products. Water Research Foundation, 2009.

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7

A, Johnson Bruce, Water Research Foundation, Phoenix (Ariz ), Las Vegas Valley Water District (Nev.), and South Central Connecticut Regional Water Authority., eds. Localized treatment for disinfection by-products. Water Research Foundation, 2009.

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8

A, Johnson Bruce, Water Research Foundation, Phoenix (Ariz ), Las Vegas Valley Water District (Nev.), and South Central Connecticut Regional Water Authority., eds. Localized treatment for disinfection by-products. Water Research Foundation, 2009.

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9

Krasner, Stuart W. Controlling the formation of nitrosamines during water treatment. Water Research Foundation, 2015.

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10

Drinking Water Health Effects Task Force. and United States. Environmental Protection Agency. Office of Drinking Water., eds. Health effects of drinking water treatment technologies. Lewis Publishers, 1989.

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11

Elizabeth, Norman℗ĐhSheelagh. The optimisation of legacy water treatment works to produce a more consistent final water quality. Aston University. Department of Chemical Engineering and Applied Chemistry, 1994.

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12

Paul, Etienne. Biological sludge minimization and biomaterials/bioenergy recovery technologies. Wiley, 2012.

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13

A, Minear Roger, and Amy Gary L, eds. Disinfection by-products in water treatment: The chemistry of their formation and control. Lewis Publishers, 1996.

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14

A, Minear R., and Amy Gary L, eds. Disinfection by-products in water treatment: The chemistry of their formation and control. Lewis Publishers, 1996.

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15

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

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16

Lawler, Desmond F. Enhanced reverse osmosis systems: Intermediate treatment to improve recovery. Water Research Foundation, 2011.

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17

1949-, Krasner Stuart W., and AWWA Research Foundation, eds. Case studies of modified treatment practices for disinfection by-product control. Awwa Research Foundation, 2003.

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18

Price, Michael L. Ozone and biological treatment for DBP control and biological stability. AWWA Research Foundation, 1994.

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19

Lucas, S. V. GC/MS analysis of organics in drinking water concentrates and advanced waste treatment concentrates. U.S. Environmental Protection Agency, Health Effects Research Laboratory, 1985.

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20

Lucas, S. V. GC/MS analysis of organics in drinking water concentrates and advanced waste treatment concentrates. U.S. Environmental Protection Agency, Health Effects Research Laboratory, 1985.

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21

Hozalski, Raymond M. Biodegradation of HAAs in distribution systems. Water Research Foundation, 2010.

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22

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

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23

E, Speitel Gerald, and AWWA Research Foundation, eds. Advanced oxidation and biodegradation processes for the destruction of TOC and DBP precursors. AWWA Research Foundation, 1999.

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24

Ltd, Aintel International Group, ed. Bread: Carbonates ; domestic heating ; sanitary protection products ; tea and herbal tea ; water treatment. Mintel International, 1996.

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25

Ksenofontov, Boris. Ecological foundations of waste-free biotechnological industries. INFRA-M Academic Publishing LLC., 2025. https://doi.org/10.12737/2155615.

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Considering biotechnological enterprises as test ones in terms of determining their contribution to the anthropogenic factor of environmental pollution, including the greenhouse effect, is a very new and important approach to solving global environmental problems. The monogram examines modern biotechnological processes for solving environmental problems. The theoretical foundations of the cultivation of microorganisms and the most common ecobiotechnological processes, including biological water purification, biotechnology of soil and air purification, as well as aerobic and anaerobic treatment
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26

Lina, Boulos, ed. An electrochemical reactor to minimize brominated DBPs in a conventional treatment plant. Awwa Research Foundation, 2008.

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27

Lina, Boulos, ed. An electrochemical reactor to minimize brominated DBPs in a conventional treatment plant. Awwa Research Foundation, 2008.

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28

J, Hwang Cordelia, and AWWA Research Foundation, eds. Polar NOM: Characterization, DBPs, treatment. AWWA Research Foundation and American Water Works Association, 2001.

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29

Saber Abdel-Aziz Abdel-Salam Mohamed El-Shafai. Nutrients valorisation via duckweed-based wastewater treatment and aquaculture. Balkema, 2004.

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30

Casey, Richard J. Disinfection by-products in the Wabamun Lake water treatment plant - treated water and Wabamun Lake, July 2002 to March 2003. Science and Standards Branch, Alberta Environment, 2003.

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31

Hladik, Michelle L. Chloroacetamide herbicides and their transformation products in drinking water. Awwa Research Foundation, 2006.

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32

Ash, Michael. Handbook of water treatment chemicals: An international guide to more than 3400 products by trade name, chemical, function, and manufacturer. Gower, 1996.

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33

Canty, Geoffrey A. Utilization of coal combustion by-products for in situ treatment of acidic mine waters. Graduate College, University of Oklahoma, 1999.

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34

Jásek, Jaroslav. Pražské kaly. Scriptorium, 2009.

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35

Stephenson, Roger. Fate of pharmaceuticals and personal care products through municipal wastewater treatment processes. Water Environment Research Foundation, 2007.

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36

J, Bull Richard, AWWA Research Foundation, and United States. Environmental Protection Agency., eds. Use of toxicological and chemical models to prioritize DBP research: Prepared by Richard J. Bull ... [et al.] ; jointly sponsored by AWWA Research Foundation and U.S. Environmental Protection Agency. AWWA Research Foundation, 2006.

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37

Bansode, Rishipal R. Granular activated carbons from agricultural by-products: Potential applications in drinking water and municipal wastewater treatments. Louisiana State University Agricultural Center, Louisiana Agricultural Experiment Station, Louisiana Cooperative Extension Service, 2005.

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38

Ksenofontov, Boris. New approaches to solving ecobiotechnological problems using combined technology. INFRA-M Academic Publishing LLC., 2025. https://doi.org/10.12737/2195508.

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For the first time, the monograph comprehensively addresses issues related to solving ecological and biological problems through the use of microbiological technologies and new original combined machinery in the form of combines of various types. The theoretical foundations of the cultivation of microorganisms and the most widespread ecobiotechnological technologies, including biological water purification, biotechnology of soil and air purification, as well as aerobic and anaerobic treatment of sewage sludge and waste, are described. Special attention is paid to the purification of soil and w
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39

International Symposium on Biogas Production, Wastewater Treatment, and Management Strategies of Organic Resources (2005 Suwŏn-si, Korea). International Symposium on Biogas Production, Wastewater Treatment, and Management Strategies of Organic Resources: Suwon, Korea, Sep. 5, 2005. National Institute of Agricultural Science and Technology, 2005.

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40

Kuznecov, Vyacheslav, and Oleg Bryuhanov. Gasified boiler units. INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1003548.

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The textbook gives the basic concepts of gasified heat generating (boiler) installations and the terminology used in boiler technology, the principle of operation and device of gasified heat generating (boiler) installations. The types and device of heat generators (boilers) of their furnace devices are considered; types and device of gas-burning devices, the number and places of their installation in furnace devices; auxiliary equipment-devices for air supply and removal of combustion products, devices for water treatment, steam supply and circulation of the coolant of hot water boilers; devi
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41

Produced Water Treatment Field Manual. Elsevier, 2011. http://dx.doi.org/10.1016/c2009-0-61889-4.

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42

Stewart, Maurice, Ken Arnold, and Stewart Maurice Jr. Produced Water Treatment Field Manual. Elsevier Science & Technology Books, 2011.

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43

Villez, Kris, Daniel Aguado, Janelcy Alferes, Queralt Plana, Maria Victoria Ruano, and Oscar Samuelsson, eds. Metadata Collection and Organization in Wastewater Treatment and Wastewater Resource Recovery Systems. IWA Publishing, 2024. http://dx.doi.org/10.2166/9781789061154.

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In recent years, the wastewater treatment field has undergone an instrumentation revolution. Thanks to increased efficiency of communication networks and extreme reductions in data storage costs, wastewater plants have entered the era of big data. Meanwhile, artificial intelligence and machine learning tools have enabled the extraction of valuable information from large-scale datasets. Despite this potential, the successful deployment of AI and automation depends on the quality of the data produced and the ability to analyze it usefully in large quantities. Metadata, including a quantification
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44

Stevens, Daryl, ed. Growing Crops with Reclaimed Wastewater. CSIRO Publishing, 2006. http://dx.doi.org/10.1071/9780643093522.

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This comprehensive work examines the fundamentals required for reclaimed water schemes to deliver sustainable farming operations that achieve the yield and quality of produce necessary for acceptance in the market.
 Growing Crops with Reclaimed Wastewater reviews the historical background of water treatment, its use and disposal from Australian wastewater treatment facilities and the technologies now utilised to treat our wastewater for reuse. The major concerns of chemical, physical and pathological qualities of reclaimed water are addressed, ensuring that the environmental, economic and
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45

POTW market for treatment products: 1994, 1995 forecast : treatment equipment, engineering services, treatment chemicals. Water Environment Federation, 1993.

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46

Localized treatment for disinfection by-products. Water Research Foundation, 2009.

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47

The 2006-2011 World Outlook for Water Treatment Products. Icon Group International, Inc., 2005.

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48

Parker, Philip M. The 2007-2012 World Outlook for Water Treatment Products. ICON Group International, Inc., 2006.

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49

Govind, J. Water and Wastewater Treatment Chemicals: US Products, Applications and Markets. CRC, 1994.

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50

Association, British Effluent and Water. British water and effluent treatment: Products and services, association members. BWEA, 1985.

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