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1

Beltrán, Fernando J. Ozone reaction kinetics in water and wastewater systems. Lewis, 2004.

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2

Cooper, William J. Reaction rates and mechanisms of advanced oxidation processes (AOP) for water reuse. WateReuse Foundation, 2010.

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3

Holm, Thomas R. Dissolved oxygen and oxidation-reduction potentials in ground water. U.S. Environmental Protection Agency, Robert S. Kerr Environmental Research Laboratory, 1986.

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4

1924-, Stumm Werner, ed. Aquatic chemical kinetics: Reaction rates of processes in natural waters. Wiley, 1990.

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5

Watremetz, L. G. Modelling the methanol synthesis via the reverse water gas shift reaction. UMIST, 1997.

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6

John, Matsumura, ed. Lightning over water: Sharpening America's light forces for rapid-reaction missions : executive summary. Rand, 2001.

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7

Bird, David A. Development of a reaction path approach to modeling post-mining pit water geochemistry. s.n, 1994.

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8

L, Yang S., Kundu K. P, and United States. National Aeronautics and Space Administration., eds. Evaluation of water injection effect on NOx formation for a staged gas turbine combustor. American Institute of Aeronautics and Astronautics, 1996.

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9

L, Yang S., Kundu K. P, and United States. National Aeronautics and Space Administration., eds. Evaluation of water injection effect on NOx formation for a staged gas turbine combustor. American Institute of Aeronautics and Astronautics, 1996.

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10

Jones, S. A. Oxidation-reduction processes in ground water at Naval Weapons Industrial Reserve Plant, Dallas, Texas. U.S. Dept. of the Interior, U.S. Geological Survey, 2003.

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11

Jones, S. A. Oxidation-reduction processes in ground water at Naval Weapons Industrial Reserve Plant, Dallas, Texas. U.S. Dept. of the Interior, U.S. Geological Survey, 2003.

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12

Jones, S. A. Oxidation-reduction processes in ground water at Naval Weapons Industrial Reserve Plant, Dallas, Texas. U.S. Dept. of the Interior, U.S. Geological Survey, 2003.

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13

Jones, S. A. Oxidation-reduction processes in ground water at Naval Weapons Industrial Reserve Plant, Dallas, Texas. U.S. Dept. of the Interior, U.S. Geological Survey, 2003.

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14

Jones, S. A. Oxidation-reduction processes in ground water at Naval Weapons Industrial Reserve Plant, Dallas, Texas. U.S. Dept. of the Interior, U.S. Geological Survey, 2003.

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15

Jones, S. A. Oxidation-reduction processes in ground water at Naval Weapons Industrial Reserve Plant, Dallas, Texas. U.S. Dept. of the Interior, U.S. Geological Survey, 2003.

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16

Jones, S. A. Oxidation-reduction processes in ground water at Naval Weapons Industrial Reserve Plant, Dallas, Texas. U.S. Dept. of the Interior, U.S. Geological Survey, 2003.

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17

Goode, Daniel J. Age, double porosity, and simple reaction modifications for the MOC3D ground-water transport model. U.S. Dept. of the Interior, U.S. Geological Survey, 1999.

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18

Zhang, Zhuohong. Supercritical water oxidation of 4-monochlorobiphenyl (4MCB): Reaction kinetics, destruction efficiency and by-products. UMI Dissertation Services, 2000.

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19

Goode, Daniel J. Age, double porosity, and simple reaction modifications for the MOC3D ground-water transport model. U.S. Dept. of the Interior, U.S. Geological Survey, 1999.

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20

Parkhurst, David L. User's guide to PHREEQC: A computer program for speciation, reaction-path, advective-transport, and inverse geochemical calculations. U.S. Dept. of the Interior, U.S. Geological Survey, 1995.

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21

Wolk, Donna M. Molecular methods for microsporidia detection: Use of an inhibitor control with real-time PCR. Awwa Research Foundation, 2007.

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22

J, Appelo C. A., and Geological Survey (U.S.), eds. User's guide to PHREEQC (version 2): A computer program for speciation, batch-reaction, one-dimensional transport, and inverse geochemical calculations. U.S. Geological Survey, 1999.

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23

L, Parkhurst David. User's guide to PHREEQC (version 2): A computer program for speciation, batch-reaction, one-dimensional transport, and inverse geochemical calculations. U.S. Department of the Interior, U.S. Geological Survey, 1999.

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24

universitet, Uppsala, ed. Studies of the piazselenol reaction and its utilisation in gas chromatographic and spectrofluorimetric methods for the determination of trace selenium. Acta Universitatis Upsaliensis, 1995.

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25

Garbarino, John R. Determination of elements in natural-water, biota, sediment, and soil samples using collision/reaction cell inductively coupled plasma-mass spectrometry. U.S. Geological Survey, 2006.

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26

A, Borisov A., Kadik A. A та Institut geokhimii i analiticheskoĭ khimii im. V.I. Vernadskogo., ред. Fli͡u︡idy i okislitelʹno-vosstanovitelʹnye ravnovesii͡a︡ v magmaticheskikh sistemakh. "Nauka", 1991.

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27

United States. National Aeronautics and Space Administration., ed. Construction of a direct water-injected two-stroke engine for phased direct fuel injection-high pressure charging investigations: Order number, A49222D (LAS), April 1, 1998. Orbital Engine Company (USA) Inc., 1998.

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28

Hyne, J. B. Aquathermolysis: A synopsis of work on the chemical reaction between water (steam) and heavy oil sands during simulated steam stimulation. AOSTRA Library and Information Service], 1986.

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29

Peter, Taylor. Interactions of silica wity iron oxides: Effects on oxide transformations and sorption properties. Whiteshell Laboratories, 1995.

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30

Taylor, Peter. Interactions of silica with iron oxides: Effects on oxide transformations and sorption properties. AECL, Whiteshell Laboratories, 1995.

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31

Mycroft, Jeffrey. Survival of "Escherichia Coli" (0157) in water at different conditions of pH and temperature ; and Detection of a verotoxin positve strain by polymerase chain reaction (PCR). Laurentian University, 2001.

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32

Sparks, Donald L., and Timothy J. Grundl, eds. Mineral-Water Interfacial Reactions. American Chemical Society, 1999. http://dx.doi.org/10.1021/bk-1998-0715.

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33

Rich, Ronald. Inorganic Reactions in Water. Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/978-3-540-73962-3.

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34

Lindstrm, U. Marcus, ed. Organic Reactions in Water. Blackwell Publishing Ltd, 2007. http://dx.doi.org/10.1002/9780470988817.

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35

Dixneuf, Pierre H., and Victorio Cadierno, eds. Metal-Catalyzed Reactions in Water. Wiley-VCH Verlag GmbH & Co. KGaA, 2013. http://dx.doi.org/10.1002/9783527656790.

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36

Water Gas Shift Reaction. Elsevier, 2015. http://dx.doi.org/10.1016/c2013-0-09821-0.

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37

Rich, Ronald. Inorganic Reactions in Water. Springer Berlin / Heidelberg, 2010.

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38

Beltran, Fernando J. Ozone Reaction Kinetics for Water and Wastewater Systems. Taylor & Francis Group, 2003.

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39

Beltran, Fernando J. Ozone Reaction Kinetics for Water and Wastewater Systems. Taylor & Francis Group, 2003.

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40

Beltran, Fernando J. Ozone Reaction Kinetics for Water and Wastewater Systems. Taylor & Francis Group, 2003.

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41

Beltran, Fernando J. Ozone Reaction Kinetics for Water and Wastewater Systems. CRC, 2003.

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42

Beltran, Fernando J. Ozone Reaction Kinetics for Water and Wastewater Systems. Taylor & Francis Group, 2003.

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43

Beltran, Fernando J. Ozone Reaction Kinetics for Water and Wastewater Systems. Taylor & Francis Group, 2003.

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44

Beltran, Fernando. Ozone Reaction Kinetics for Water and Wastewater Systems. Taylor & Francis Group, 2003.

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45

Ozone reaction kinetics for water and wastewater systems. Lewis, 2003.

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46

Oppenländer, Thomas. Photochemical Purification of Water and Air: Advanced Oxidation Processes - Principles, Reaction Mechanisms, Reactor Concepts. Wiley & Sons, Limited, John, 2007.

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47

Oppenländer, Thomas, and Thomas Oppenländer. Photochemical Purification of Water and Air: Advanced Oxidation Processes - Principles, Reaction Mechanisms, Reactor Concepts. Wiley & Sons, Incorporated, John, 2007.

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48

Williams, J., RA Hook, and HL Gascoigne, eds. Farming Action: Catchment Reaction. CSIRO Publishing, 1998. http://dx.doi.org/10.1071/9780643104990.

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Abstract:
Dryland farming is a major export earner for many temperate-zone countries, yet it continues to degrade a country's natural resources. Effects are not restricted to the land - changes in water quality can reduce the potential uses of water and bring about catastrophic changes in both freshwater and coastal ecosystems.
 Farming Action: Catchment Reaction provides a comprehensive technical overview of the relationships between dryland farming systems and catchment land and water quality in Australia, and integrates it in a whole system framework. It deals with the issues in terms of people, pointers, processes and prediction as it discusses social aspects of developing and implementing research to improve dryland farming systems in catchment management programs, indicators of catchment health, and the processes which determine the impact of the farming action on the catchment response. It concludes by considering the adequacy of our ability to use this process knowledge in models to predict the effect of dryland farming on catchment condition.
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49

Earthwatch Conference on Water, the Nigerian Water Forum (3rd 2004 Ibadan,Nigeria). Treatment & testing methods in water management: 3rd Earthwatch Conference on Water, the Nigerian Water Forum, Ibadan, Nigeria, 2004. 2004.

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50

Oppenländer, Thomas. Photochemical Purification of Water and Air: Advanced Oxidation Processes (AOPs): Principles, Reaction Mechanisms, Reactor Concepts. Wiley-VCH, 2003.

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