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1

Wellington, T. C., ed. Modern Chlor-Alkali Technology. Springer Netherlands, 1992. http://dx.doi.org/10.1007/978-94-011-2880-3.

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2

Prout, N. M., and J. S. Moorhouse, eds. Modern Chlor-Alkali Technology. Springer Netherlands, 1989. http://dx.doi.org/10.1007/978-94-009-1137-6.

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3

O’Brien, Thomas F., Tilak V. Bommaraju, and Fumio Hine. Handbook of Chlor-Alkali Technology. Springer US, 2005. http://dx.doi.org/10.1007/b113786.

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4

Paine, P. J. Compliance with chlor-alkali mercury regulations, 1986-1989: Status report. Environment Canada, 1994.

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5

McBeath, I. Status report on compliance with the chlor-alkali mercury regulations 1984-85. Environment Canada, 1987.

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6

McBeath, I. Status report on compliance with the chlor-alkali mercury regulations 1982-83. Industrial Programs Branch, Environmental Protection Service, 1985.

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7

Symposium on Electrochemical Engineering in the Chlor-Alkali and Chlorate Industries (1987 Honolulu, Hawaii). Proceedings of the Symposium on Electrochemical Engineering in the Chlor-Alkali and Chlorate Industries. Electrochemical Society, 1988.

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8

Board, India Central Pollution Control. Cost benefit analysis for changeover of hg-cell to membrane cell technology in Chlor-Alkali industry. Central Pollution Control Board, Ministry of Environment & Forests, Govt. of India, 2006.

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9

McBeath, I. Review of the Canadian chlor-alkali industry: Status of the industry and measures taken for the control of water pollution. The Service, 1985.

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10

C, Wellington T., and Society of Chemical Industry, eds. Modern-chlor-alkali technology. Published for SCI by Elsevier Applied Science, 1992.

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11

Moorhouse, John. Modern Chlor-Alkali Technology. 5th ed. Blackwell Publishing Limited, 2001.

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12

Moorhouse, John. Modern Chlor-Alkali Technology. Wiley & Sons, Incorporated, John, 2008.

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13

Wall, K. Modern Chlor-Alkali Technology. Ellis Horwood Ltd, 1986.

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14

M, Prout N., Moorhouse J. S, and Society of Chemical Industry, eds. Modern chlor-alkali technology. Published for the Society of Chemical Industry by Elsevier, 1990.

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15

Moorhouse, John, ed. Modern Chlor‐Alkali Technology. Wiley, 2001. http://dx.doi.org/10.1002/9780470999479.

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16

O'Brien, Thomas. Handoook of Chlor-Alkali Technology. Plenum Publishing Corporation, 2005.

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17

Hine, F., Tilak V. Bommaraju, and Thomas F. O'Brien. Handbook of Chlor-Alkali Technology. Kluwer Academic / Plenum Publishers, 2004.

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18

O'Brien, Thomas. Handoook of Chlor-Alkali Technology. Plenum Publishing Corporation, 2005.

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19

O'Brien, Thomas. Handoook of Chlor-Alkali Technology. Plenum Publishing Corporation, 2005.

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20

O'Brien, Thomas. Handoook of Chlor-Alkali Technology. Plenum Publishing Corporation, 2005.

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21

O'Brien, Thomas. Handoook of Chlor-Alkali Technology. Plenum Publishing Corporation, 2005.

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22

Prout, N. M. Modern Chlor-Alkali Technology: Volume 4. Springer, 2011.

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23

Curry, R. W. Modern Chlor-Alkali Technology (Special Publication). Royal Society of Chemistry, 1995.

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24

Wall, Kevin. Modern Chlor-Alkali Technology Vol. 3. Prentice Hall Ptr, 1986.

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25

S, Sealey, Royal Society of Chemistry (Great Britain), Society of Chemical Industry. Electrochemical Technology Group., and London International Chlorine Symposium (1997), eds. Modern chlor-alkali technology: Volume 7. Royal Society of Chemistry, 1998.

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26

W, Curry R., Royal Society of Chemistry (Great Britain), Society of Chemical Industry. Electrochemical Technology Group., and London International Chlorine Symposium (1994), eds. Modern chlor-alkali technology: Volume 6. Royal Society of Chemistry, 1995.

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27

United States. Environmental Protection Agency. Office of Air Quality Planning and Standards. Air Quality Strategies and Standards Division., ed. Economic impact analysis for the proposed mercury cell chlor-alkali production NESHAP. U.S. Environmental Protection Agency, Office of Air Quality Planning and Standards, 2000.

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28

Macmullin, Robert Burns. Chlor-Alkali and Chlorate Technology: R.B. Macmullin Memorial Symposium: Proceedings of the Symposium (Proceedings). Electrochemical Society, 1999.

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29

Waste from the titanium dioxide industry: Mercury losses from the chlor-alkali industry ; radioactive discharges. 1992.

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30

Canada. Environmental Protection Service. Pollution Measurement Division., ed. Reference method for source testing: Measurement of releases of mercury from mercury cell chlor-alkali plants. Environment Canada, 1990.

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31

United States. Environmental Protection Agency. Office of Air Quality Planning and Standards., ed. Hazardous air pollutant emissions from mercury cell chlor-alkali plants: Background information document for proposed standards. U.S. Environmental Protection Agency, Office of Air and Radiation, Office of Air Quality Planning and Standards, 2002.

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32

Canada, Canada Environment, and River Road Environmental Technology Centre. Pollution Measurement Division., eds. Reference method for source testing: Measurement of releases of mercury from mercury cell chlor-alkali plants. The Division, 1990.

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33

Ltd, ICON Group. SHANGHAI CHLOR-ALKALI CHEMICAL CO., LTD.: Labor Productivity Benchmarks and International Gap Analysis (Labor Productivity Series). 2nd ed. Icon Group International, 2000.

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34

Ltd, ICON Group. SHANGHAI CHLOR-ALKALI CHEMICAL CO., LTD.: International Competitive Benchmarks and Financial Gap Analysis (Financial Performance Series). 2nd ed. Icon Group International, 2000.

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35

United States. Environmental Protection Agency. Office of Air Quality Planning and Standards, ed. Hazardous air pollutant emissions from mercury cell chlor-alkali plants: Background information document for proposed standards. U.S. Environmental Protection Agency, Office of Air and Radiation, Office of Air Quality Planning and Standards, 2002.

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36

United States. Environmental Protection Agency. Office of Air Quality Planning and Standards., ed. Hazardous air pollutant emissions from mercury cell chlor-alkali plants: Background information document for proposed standards. U.S. Environmental Protection Agency, Office of Air and Radiation, Office of Air Quality Planning and Standards, 2002.

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37

Fuller, T. F., P. C. Foller, and F. Hine. Advances in Mathematical Modelling & Simulation of Electrochemical Processes & Oxygen Depolarized Cathodes & Activated Cathodes for Chlor-Alkali (Proceedings). Electrochemical Society, 1998.

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38

C, Jeffery T., and Electrochemical Society Meeting, eds. Proceedings of the symposia on chlor-alkali and chlorate production and new mathematical and computational methods in electrochemical engineering. Electrochemical Society, 1993.

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39

United States. Environmental Protection Agency. Emission Standards Division. and United States. Environmental Protection Agency. Office of Air Quality Planning and Standards., eds. National emission standards for hazardous air pollutants from mercury cell chlor-alkali plants: Background information document for proposed standards. U.S. Environmental Protection Agency, Office of Air and Radiation, Office of Air Quality Planning and Standards, 2002.

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40

Hine, Fumio, Thomas F. O'Brien, and Tilak V. Bommaraju. Handbook of Chlor-Alkali Technology: Volume I: FundamentalsVolume II: Brine Treatment and Cell OperationVolume III: Facility Design and Product HandlingVolume ... Developments (Developments in Hydrobiology). Springer, 2005.

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41

Modern Chlor-Akali Technology. Royal Society of Chemistry, 1998.

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42

Van Zee, John William, 1952-, Electrochemical Society. Industrial Electrolysis and Electrochemical Engineering Division., Electrochemical Society. Energy Technology Division., Electrochemical Society Meeting, Symposium on Advances in Mathematical Modeling and Simulation of Electrochemical Processes (1998 : San Diego, Calif.), and Symposium on Oxygen Depolarized Cathodes and Activated Cathodes for Chlor-Alkali and Chlorate Processes (1998 : San Diego, Calif.), eds. Proceedings of the Symposium on Advances in Mathematical Modeling and Simulation of Electrochemical Processes and [the Symposium on] Oxygen Depolarized Cathodes and Activated Cathodes for Chlor-Alkali and Chlorate Processes. Electrochemical Society, 1998.

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