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1

Rao, Bhamidimarri, International Association on Water Pollution Research and Control., Massey University, and New Zealand. Dept. of Health., eds. Alternative waste treatment systems. London: Elsevier Applied Science, 1988.

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2

K, Rowe R., and Rowe R. K, eds. Barrier systems for waste disposal facilities. New York: Spon Press, 2004.

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3

P, Lewis Sangeeta, ed. Waste containment systems, waste stabilization, and landfills: Design and evaluation. New York: J. Wiley, 1994.

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4

Rowe, R. Kerry. Clayey barrier systems for waste disposal facilities. London: E. & FN Spon, 1995.

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5

M, Quigley Robert, and Booker John R, eds. Clayey barrier systems for waste disposal facilities. London: E & FN Spon, 1997.

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6

International Atomic Energy Agency; IAEA. Performance assessment for underground radioactive waste disposal systems. Vienna: International Atomic Energy Agency, 1985.

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7

J, Varma C. V., and Committee for International Geosynthetics Society (India), eds. Waste containment with geosynthetics. [New Delhi]: Committee for International Geosynthetics Society (India), 1997.

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8

United States. Dept. of Energy. Office of Civilian Radioactive Waste Management, ed. OCRWM Systems Engineering Management Plan (SEMP). Washington, D.C: U.S. Dept. of Energy, Office of Civilian Radioactive Waste Management, 1990.

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9

Sulphur-assisted corrosion in nuclear disposal systems. Leeds: Maney Publishing, 2011.

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10

1949-, Clark Michael, Smith Denis 1956-, and Blowers Andrew, eds. Waste location: Spatial aspects of waste management, hazards, and disposal. London: Routledge, 1992.

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11

San Francisco (Calif.). Dept. of City Planning., ed. Recycling and solid waste systems plan initial study. San Francisco, CA: City and County of San Francisco, Dept. of City Planning, 1991.

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12

Kumar, Mahendra. Waste disposal systems in slaughterhouses suitable for developing countries. Delhi: Daya Pub. House, 2011.

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13

United States. Dept. of Energy. Office of Civilian Radioactive Waste Management, ed. OCRWM Systems Engineering Management Plan (SEMP). 3rd ed. Washington, DC: The Office, 1994.

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14

(Firm), Knovel, ed. Sulphur-assisted corrosion in nuclear disposal systems. Leeds, UK: Published for the European Federation of Corrosion by Maney on behalf of the Institute of Materials, 2011.

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15

United States. Dept. of Energy. Office of Civilian Radioactive Waste Management, ed. Permanent geologic disposal systems for radioactive waste: International cooperation program. [Washington, D.C.]: U.S. Dept. of Energy, Office of Civilian Radioactive Waste Management, 1986.

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16

Administration of public solid waste management systems. Littleton, Colo: Water Resources Publications, 1992.

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17

Boye, Fred. Closed systems. Appleton, Wis: Institute of Paper Chemistry, 1985.

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18

Gershman, Brickner & Bratton., ed. Small-scale municipal solid waste energy recovery systems. New York: Van Nostrand Reinhold Co., 1986.

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19

Resources, Illinois Office of Solid Waste and Renewable. Geographic information systems (GIS) solid waste management facilities site screening. Springfield, Ill: Illinois Dept. of Energy and Natural Resources, Office of Solid Waste and Renewable Resources, 1990.

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20

L, Crichton, Enviros Aspinwall, and Scotland. Scottish Executive. Environment Group., eds. Separate waste collection systems: Best practice review : final report. Edinburgh: Scottish Executive, 2003.

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21

service), SpringerLink (Online, ed. Environmental Microbiology of Aquatic and Waste Systems. Dordrecht: Springer Science+Business Media B.V., 2011.

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22

Horst, Krause, North Atlantic Treaty Organization. Scientific Affairs Division., and NATO Advanced Research Workshop on Conversion Concepts for Commercial Applications and Disposal Technologies of Energetic Systems (1994 : Moscow, Russia), eds. Conversion concepts for commercial applications and disposal technologies of energetic systems. Dordrecht: Kluwer Academic, 1997.

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23

Masurat, Peter A. Potential for corrosion in disposal systems for high level radioactive waste by Meiothermus and Desulfovibrio. Göteborg: Göteborg University, 2006.

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24

Masurat, Peter A. Potential for corrosion in disposal systems for high level radioactive waste by Meiothermus and Desulfovibrio. Göteborg: Göteborg University, 2006.

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25

Reed, Sherwood C. Natural systems for waste management and treatment. 2nd ed. New York: McGraw-Hill, 1995.

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26

Reed, Sherwood C. Natural systems for waste management and treatment. New York: McGraw-Hill, 1988.

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27

Miles, Irene. Septic systems: A homeowner's guide. Urbana, Ill: University of Illinois Extension, 2001.

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28

Ulbrecht, Alan. Waste reduction activities and options for a manufacturer of systems to produce semiconductors. Cincinnati, OH: U.S. Environmental Protection Agency, Risk Reduction Engineering Laboratory, 1992.

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29

Kroeker, Ed. State of the art review septic tank-disposal field systems. [Edmonton]: Alberta Environment, Municipal Engineering Branch, Standards and Approvals Division, 1985.

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30

M, Dawson D. Nonlinear control of robotic systems for environmental waste and restoration. Englewood Cliffs, NJ: PTR Prentice Hall, 1995.

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31

Evelyn, Bassey, and Committee on Vital Environmental Resources., eds. Sickening wastes: A study of medical waste management systems in Port Harcourt and Benin City, Nigeria. Benin City, Nigeria: Committee on Vital Environmental Resources, 2005.

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32

American Institute of Chemical Engineers. Center for Chemical Process Safety., ed. Guidelines for pressure relief and effluent handling systems. New York, N.Y: The Institute, 1998.

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33

Water and Sanitation Program (World Bank). South Asia. Implementing integrated solid waste management systems in India: Moving towards the regional approach. New Delhi: Water and Sanitation Program - South Asia, World Bank, 2007.

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34

J, Cudahy, and United States. Dept. of Energy. Office of Technology Development, eds. Integrated thermal treatment systems study: U.S. Department of Energy Internal Review Panel report. Washington, DC: U.S. Dept. of Energy, Assistant Secretary for Environmental Management, Office of Technology Development, 1995.

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35

Munroe, Glenn. User-pay systems for solid waste management in Canadian municipalities. Toronto, Ontario: ICURR Press, 1999.

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36

R, Roy William. Geochemical interactions of hazardous wastes with geological formations in deep-well systems. Champaign, Ill: Illinois State Geological Survey, 1989.

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37

Daniel, David E. Compilation of information on alternative barriers for liner and cover systems. Cincinnati, OH: U.S. Environmental Protection Agency, Risk Reduction Engineering Laboratory, 1991.

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38

Organized technology: Networks and innovation in technical systems. West Lafayette, Ind: Purdue University Press, 1985.

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39

Saishū Shobunjō Gijutsu Shisutemu Kenkyū Kyōkai, ed. Kurōzudo shisutemu shobunjō: Gijutsu handobukku. Tōkyō-to Chiyoda-ku: Ōmusha, 2012.

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40

National Research Council (U.S.). Panel on Coupled Hydrologic/Tectonic/Hydrothermal Systems at Yucca Mountain. Ground water at Yucca Mountain: How high can it rise? : final report of the Panel on Coupled Hydrologic/Tectonic/Hydrothermal Systems at Yucca Mountain. Washington, D.C: National Academy Press, 1992.

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41

Hussey, Vincent. Siting a facility using geographic information systems (GIS). Dublin: University College Dublin, 1996.

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42

United Nations Environment Programme. Mediterranean Action Plan. and World Health Organization, eds. Guidelines on environmental inspection systems for the Mediterranean region =: Lignes directrices sur les systemes d'inspection environnementale pour la region Mediterraneenne. Athens: UNEP, 2004.

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43

Agarwal, Ravi. Recycling responsibility: Traditional systems and new challenges of urban solid waste in India. New Delhi: Srishti, 2002.

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44

J, Marivoet, and Bonne A, eds. PAGIS: Performance Assessment of Geological Isolation Systems for Radioactive Waste : disposal in clay formations. Luxembourg: Commission of the European Communities, 1988.

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45

Agency, OECD Nuclear Energy, European Commission, and NIREX, eds. Engineered barrier systems (EBS) in the context of the entire safety case: Workshop proceedings, Oxford, United Kingdom, 25-27 September 2002. Paris, France: Nuclear Energy Agency, Organisation for Economic Co-operation and Development, 2003.

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46

Rowe, R. K. Barrier Systems for Waste Disposal. Taylor & Francis Group, 1999.

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47

Quigley, R. M., R. K. Rowe, John R. Booker, and Richard Brachman. Barrier Systems for Waste Disposal Facilities. Taylor & Francis Group, 2019.

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48

Rowe, R. Kerry, R. M. Quigley, J. R. Booker, and Richard Brachman. Barrier Systems for Waste Disposal Facilities. Taylor & Francis Group, 2004.

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49

Rowe, R. Kerry, R. M. Quigley, J. R. Booker, and Richard Brachman. Barrier Systems for Waste Disposal Facilities. Taylor & Francis Group, 2004.

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50

NCCER. 02404-02 Private Waste Disposal Systems IG. Pearson Education, Limited, 2003.

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