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1

P, Kukharʹ V., ed. Aminophosphonic and aminophosphinic acids: Chemistry and biological activity. Wiley, 2000.

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2

University, Iowa, ed. Synthesis of novel fluorinated phosphonic acid electroly for phosphoric acid fuel cells. Final report, January 1s1989-June 30, 1991. Iowa Univ., 1992.

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3

Frazier, A. W. Redistribution of impurities in wet-process phosphoric acid / A.W. Frzier, Y.K. Kim. National Fertilizer Development Center, Tennessee Valley Authority, 1988.

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4

Federal Energy Technology Center (U.S.), ed. Phosphoric acid fuel cell commercialization. U.S. Dept. of Energy, Office of Fossil Energy, Federal Energy Technology Center, 1998.

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5

El-Razik, Salah Mahrose Abd. Extraction of phosphoric acid from phosphateore. University of Salford, 1990.

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6

Hanrahan, Jane. The synthesis of substituted phosphonic acids. typescript, 1995.

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7

J, Kohler John, and National Fertilizer & Environmental Research Center (U.S.), eds. Aluminum removal from phosphoric acid as chukhrovite. National Fertilizer and Environmental Research Center, Tennessee Valley Authority, 1992.

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8

Norwood, Verrill M. Characterization of flourine-, aluminum-, silicon-, and phosphorus-containing complexes in wet-process phosphoric acid using nuclear magnetic resonance spectroscopy. Chemical Research, Tennessee Valley Authority, National Fertilizer Development Center, 1989.

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9

J, Fantel R., and United States. Bureau of Mines., eds. Phosphate availability and supply: A minerals availability appraisal. U.S. Dept. of the Interior, Bureau of Mines, 1988.

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10

1870-1925, Lang W. R., ed. The determination of boric acid, alone, and in the presence of phosphoric acid. University Library, pub. by the Librarian, 1997.

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11

Canada. Environmental Protection Programs Directorate. Technical Services Branch. Phosphoric acid: Environmental and technical information for problem spills. Environment Canada, Environmental Protection Service, 1985.

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12

Becker, Pierre. Phosphates and phosphoric acid: Raw materials, technology, and economics of the wet process. 2nd ed. M. Dekker, 1989.

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13

El-Shall, Hassan E. Decreasing iron content in wet-process phosphoric acid: Final report. Florida Institute of Phosphate Research, 2001.

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14

United States International Trade Commission. Industrial phosphoric acid from Belgium and Israel: Determinations of the Commission in investigation no. 701-TA-286 (final) under the Tariff Act of 1930, together with the information obtained in the investigation; determinations of the Commission in investigations nos. 731-TA-365 and 366 (final) under the Tariff Act of 1930, together with the information obtained in the investigations. U.S. International Trade Commission, 1987.

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15

United States International Trade Commission. Industrial phosphoric acid from Belgium and Israel: Determinations of the Commission in investigations nos. 701-TA-285 and 286 (preliminary) under the Tariff Act of 1930, together with the information obtained in the investigations, determinations of the Commission in investigations nos. 731-TA-365 and 366 (preliminary) under the Tariff Act of 1930, together with the information obtained in the investigations. U.S. International Trade Commission, 1986.

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16

Remick, Robert Jerome. Molten carbonate and phosphoric acid stationary fuel cells: Overview and gap analysis. National Renewable Energy Laboratory, 2010.

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17

Becker, Pierre, ed. Phosphates and phosphoric acid: Raw materials, technology, and economics of the wet process. 6th ed. M. Dekker, 1989.

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18

Kenkyūjō, Kokuritsu Kankyō. Kagaku busshitsu no naibunpi kakuran sayō ni kansuru daiichi dankai seibutsu shiken (rinsan torifeniru): Heisei 24-nendo : gyōmu hōkokusho. Kokuritsu Kankyō Kenkyūjō, 2013.

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19

Center, Lewis Research, and United States. Office of Coal Utilization and Extraction., eds. Assessment and comparison of 100-MW coal gasification phosphoric acid fuel cell power plants. National Aeronautics and Space Administration, Lewis Research Center, 1988.

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20

F, Sabbioni, ed. Phosphoric acid fuel cell for electrical power generation: Development and penetration in the EEC countries. Commission of the European Communities, 1986.

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21

V, Kumar Challa, ed. Novel enzyme/DNA/inorganic materials: A new generation of biomaterials. Nova Science Publishers, 2008.

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22

Park, Sang Joon. Solvent extraction of nickel from nitrate media by DI(2-ethylhexyl) phosphoric acid under high loading conditions. UMI Dissertation Services, 1996.

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23

Singleton, D. J. Wear and corrosion of 12 alloys during laboratory milling of phosphate rock in phosphoric acid waste water. U.S. Dept. of the Interior, Bureau of Mines, 1985.

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24

Walsh, A. J. Development of an analytical method for the determination of dibutyl butyl phosphonate in wet process phosphoric acid. University of Wolverhampton, 1994.

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25

National Register of Foreign Collaborations (India) and India. Dept. of Scientific & Industrial Research., eds. Technology in Indian phosphoric acid industry: A status report prepared under the National Register of Foreign Collaborations. Govt. of India, Dept. of Scientific & Industrial Research, Ministry of Science & Technology, 1989.

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26

Canada. Environmental Protection Programs Directorate. Technical Services Branch., ed. Nitric acid: Environmental and technical information for problem spills. Environment Canada, Environmental Protection Service, 1985.

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27

Canada. Environmental Protection Programs Directorate. Technical Services Branch., ed. Acetic acid: Environmental and technical information for problem spills. Environment Canada, Environmental Protection Service, 1985.

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28

Geological Survey (U.S.), ed. A modification in the determination of reducible sulfur by the tin(II)-strong phosphoric acid method using the LECOtmSC132 Sulfur Analyzer. U.S. Dept. of the Interior, Geological Survey, 1986.

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29

United States. National Aeronautics and Space Administration., ed. Effects of the cooling system parameters on heat transfer and performance of the PAFC stack during transient operation. Cleveland State University, 1992.

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30

United States. National Aeronautics and Space Administration., ed. Effects of the cooling system parameters on heat transfer and performance of the PAFC stack during transient operation. Cleveland State University, 1992.

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31

Canada. Environmental Protection Service. Technical Services Branch., ed. Urea: Environmental and technical information for problem spills. Environmental Canada, Environmental Protection Service, 1985.

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32

Canada. Environmental Protection Programs Directorate. Technical Services Branch., ed. Sulphur dioxide: Environmental and technical information for problem spills. Environment Canada, Environmental Protection Service, 1985.

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33

Canada. Environmental Protection Programs Directorate. Technical Services Branch., ed. Ethylene glycol: Environmental and technical information for problem spills. Environment Canada, Environmental Protection Service, 1985.

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34

Canada. Environmental Protection Programs Directorate. Technical Services Branch., ed. Formaldehyde. Environmental Protection Service, 1985.

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35

Canada. Environmental Protection Programs Directorate. Technical Services Branch., ed. Cyclohexane: Environmental and technical information for problem spills. Environment Canada, Environmental Protection Service, 1985.

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36

Canada. Environmental Protection Programs Directorate. Technical Services Branch., ed. Naphtha: Environmental and technical information for problem spills. The Branch, 1985.

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37

Canada. Environmental Protection Programs Directorate. Technical Services Branch., ed. Sodium sulphate: Environmental and technical information for problem spills. Environment Canada, Environmental Protection Service, 1985.

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38

Canada. Environmental Protection Programs Directorate. Technical Services Branch., ed. Tetraethyl lead: Environmental and technical information for problem spills. Environment Canada, Environmental Protection Service, 1985.

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39

Harney, Dennis J. A kinetic study of the enzyme systems deaminating phenylalanine and tyrosine using the specific PAL inhibitor 2-aminoindan-2-phosphonic acid (AIP). 1996.

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40

Desmarteau, D. D. Novel fluorinated acids for phosphoric acid fuel cells. 1989.

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41

Works, American Water. B507-16 Phosphoric Acid. American Water Works Association, 2016.

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42

AWWA B507-23 Phosphoric Acid. American Water Works Association, 2023.

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43

Elgafi, Mohamed. Phosphoric Acid and Phosphate Fertilizers. CRC Press LLC, 2017.

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44

The Phosphoric Acid Industry [Working Title]. IntechOpen, 2020. http://dx.doi.org/10.5772/intechopen.87759.

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45

Wiener, Michael Schorr, and Benjamin Valdez, eds. Phosphoric Acid Industry - Problems and Solutions. InTech, 2017. http://dx.doi.org/10.5772/63661.

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46

Triethyl phosphate: Phosphoric acid triethyl ester. VCH, 1993.

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47

Aluminum removal from phosphoric acid as chukhrovite. National Fertilizer and Environmental Research Center, Tennessee Valley Authority, 1992.

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48

Gilmour, Rodney. Phosphoric Acid: Purification, Uses, Technology, and Economics. Taylor & Francis Group, 2013.

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49

Phosphoric Acid: Purification, Uses, Technology, and Economics. Taylor & Francis Group, 2017.

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50

Phosphoric Acid: Purification, Uses, Technology, and Economics. Taylor & Francis Group, 2013.

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