Page 382 - Materials Chemistry, Second Edition
P. 382

CAT3525_C10.qxd  1/31/2005  12:00 PM  Page 353
                       The Sanitary Landfill                                                       353
                       Blight, G. E. and Fourie, A. B., Leachate Generation in Landfills in Semi-Arid Climates, Proceedings of the
                             Institution of Civil Engineers, Geotechnical Engineering, United Kingdom, 1999.
                       Boltze, U. and de Freitas, M., Monitoring gas emissions from landfill sites, Waste Manag. Res., 15, 463–476,
                             1997.
                       Brumner, D.R. and Keller, D.J., Sanitary Landfill Design and Operation, SW-65ts, U.S. Environmental
                             Protection Agency, Washington, DC, 1972.
                       California Waste Management Board, Landfill Gas Characterization, California Waste Management Board,
                             State of California, Sacramento, CA, October 1988.
                       Chandler, J.A., Jewell, W.J., Gossett, J.M., Vansoset, P.J., and Robertson, J.B., Predicting Methane Fermentation
                             Biodegradability, Biotechnology and Bioengineering Symposium, No. 10, pp. 93–107, 1980.
                       Chanton, J., Rutkowski, C.M., and Mosher, B., Quantifying Methane Oxidation from Landfills Using Stable
                             Isotope Analysis of Downwind Plumes, in Environmental Impact, Academic Press, Harcourt Brace,
                             Jovanovich, London, 1999.
                       Christensen, T. H., and Kjeldsen, P., Basic Biochemical Processes in Landfills, in Sanitary Landfilling Process,
                             Technology and Environmental Impact, Christensen, T.H., Cossu, R., and Stegmann, P., (Eds):
                             Academic Press, Harcourt Brace, Jovanovich, London, 1989.
                       Coons, L. M., Ankeny, M., and Bulik, G. M., Alternative Earthen Final Covers for Industrial and Hazardous
                             Waste  Trenches in Southwest Idaho, Proceedings of the 3rd  Annual  Arid Climate Symposium,
                             SWANA, Albuquerque, NM, 2000.
                       County of Los  Angeles, Department of County Engineer, Los  Angeles, and Engineering-Science, Inc.,
                             Development of Construction and Use Criteria for Sanitary Landfills, An Interim Report, U.S.
                             Department of Health, Education, and  Welfare, Public Health Service, Bureau of Solid  Waste
                             Management, Cincinnati, OH, 1969.
                       Crawford, J.F. and Smith, P.G., Landfill Technology, Butterworth, London, UK, 1985.
                       Davis, S.N., and DeWiest, R.J. M., Hydrogeology, Wiley, New York, NY, 1989.
                       Deipser, A. and Stegmann, R., The origin and fate of volatile trace components in municipal solid waste land-
                             fills, Waste Manage. Res., 12, 129–139, 1994.
                       Ehrig, H.J., Leachate Quality, in Sanitary Landfilling: Process, Technology and Environmental Impact, Christensen,
                             T.H., Cossu, R., and Stegmann, P., (Eds.),Academic Press, Harcourt Brace, Jovanavich, London, UK, 1989.
                       El-Fadel, M., Shazbak, S., Saliby, E., and Leckie, J., Comparative assessment of settlement models for munic-
                             ipal solid waste landfill application, Waste Manage. Res., 17, 347–368, 1999.
                       Drobny, N.L., Hull, H.E., and Testiu, R.F., Recovery and Utilization of Municipal Solid Waste, SW-10c. U.S.
                             Environmental Protection Agency, Washington, DC, 1971.
                       Fisher, S.R. and Potter, K.W., Evaluation of the Use of DUMPSTAT to Detect the Impact of Landfills on
                             Groundwater Quality, Wisconsin Department of Natural Resources, Madison, WI, 1998.
                       Herrera, T.A., Lang, R., and Tchobanoglous, G., A Study of the Emissions of Volatile Organic Compounds
                             Found in Landfills, Proceeding of the 43rd  Annual Purdue Industrial  Waste Conference, Lewis
                             Publishers, Inc., Chelsea, MI, 1989, pp. 229–238.
                       Hilger, H., Wollum, A.G., and Barlaz, M., Landfill methane oxidation response to vegetation, fertilization, and
                             liming, J. Environ. Qual., 29, 2000.
                       Kaiser, E.R., Chemical Analyses of Refuse Compounds, in Proceedings of National Incinerator Conference,
                             ASME, New York, NY, 1966.
                       Kodikara, J., Analysis of tension development in geomembranes placed on landfill slopes, Geotextiles
                             Geomembranes, 18, 2000.
                       Koerner, R.M. and Daniel, D.E., Better cover-ups, Civil Eng., 62, 1992.
                       Lang, R.J., Stallard, W.M., Stiegler, L.C., Herrera, T.A., Chang, D.P.Y., and Tchobanoglous, G., Summary Report:
                             Movement of Gases in Municipal Solid Waste Landfills, prepared for the California Waste Management
                             Board, Department of Civil Engineering, University of California, Davis, Davis, CA, 1989.
                       Manna, L., Zanetti, M.C., and Genon, G., Modeling biogas production at landfill sites, Resour. Conserv.,
                             Recycling, 26, 1999.
                       Mantell, C.L., (Ed.), Solid Wastes: Origin, Collection, Processing, and Disposal, Wiley-Interscience, New
                             York, NY, 1975.
                       Mathias, S.L., Discouraging Seagulls: The Los Angeles approach, Waste Age, 15, 1984.
                       Neissen, W.R., Properties of Waste Materials, in Handbook of Solid Waste Management, Wilson, D.G., (Ed.),
                             Van Nostrand Reinhold, New York, NY, 1977.
   377   378   379   380   381   382   383   384   385   386   387