[1]
ABEM (2006). ABEM Terrameter SAS 1000/4000 Instructions Manual.
[2]
Bernstone, C., & Dahlin, T. (1997). DC Resistivity Mapping of Old Landfills: Two Case Studies. European Journal of Engineering and Environmental Geophysics, 2, 121-136.
[3]
Diersch, H. J. G. (2002). FEFLOW Reference Manual, Wasy GmbH, Berlin.
[4]
El-Fadel, M., Findikakis, A. N., & Leckie, J. O. (1997). Modeling Leachate Generation and Transport in Solid Waste Landfills. Environmental Technology, 18, 669-686.
http://dx.doi.org/10.1080/09593331808616586
[5]
EWSWA (2011). EWSWA Annual Monitoring Report. Genivar, 1-22.
[6]
Farquhar, G. J. (1989). Leachate: Production and Characterization. Canadian Journal of Civil Engineering, 16, 317-325.
http://dx.doi.org/10.1139/l89-057
[7]
Freeze, R. A., Massmann, J., Smith, L., Sperling, T., & James, B. (1990). Hy-drogeological Decision Analysis: A Framework, Groundwater, 28, 738-765.
http://dx.doi.org/10.1111/j.1745-6584.1990.tb01989.x
[8]
Joshi, S. D. (2013). Hydrogeophysical Investigation of Contaminant Distribution at a Closed Landfill in Southwestern Ontario, Canada. M.Sc. Thesis, Windsor: University of Windsor.
[9]
Kjeldsen, P., Barlaz, M. A., Rooker, A. P., Baun, A., Ledin, A., & Christensen, T. H. (2002). Present and Long-Term Composition of MSW Landfill Leachate: A Review. Critical Reviews in Environmental Science and Technology, 32, 297-336.
http://dx.doi.org/10.1080/10643380290813462
[10]
Loke, M. H. (1999). A Practical Guide to 2D and 3D Surveys. Electrical Imaging Surveys for Environmental and Engineering Studies, 8-10.
[11]
McNeill, J. D. (1980). Electromagnetic Terrain Conductivity Measurement at Low Induction Numbers. Geonics Ltd., Technical Note TN-6.
[12]
Osiensky, J. L. (1995). Time Series Electrical Potential Field Measurements for Early Detection of Groundwater Contamination. Journal of Environmental Health, 30, 1601-1626.
[13]
Radulescu, M., Valerian, C., & Yang, J. (2007). Time-Lapse Electrical Resistivity Anomalies Due to Contaminant Transport around Land Fills. Annals of Geophysics, 50, 453-468.
[14]
Reichard, E. G., & Evans, J. S. (1989). Assessing the Value of Hydrological Information for Risk-Based Remedial Action Decisions. Water Resources Research, 25, 1451-1460.
http://dx.doi.org/10.1029/WR025i007p01451
[15]
RES2DINV Manual (2006). Geoelectrical Imaging 2D and 3D. Geotomo Software, 1-50.
[16]
Scott, J., Beydoun, D., Amal, R., Low, G., & Cattle, J. (2005). Landfill Management, Leachate Generation and Leach Testing of Solid Wastes in Australia and Overseas. Critical Reviews in Environmental Science and Technology, 35, 239-332.
http://dx.doi.org/10.1080/10643380590917969
[17]
Taylor, R. S. (1999). Development and Applications of Geometric-Sounding Electromagnetic (G-SEM) Systems. Society of Exploration Geophysicists 1999 Technical Program Expanded Abstracts, Sixty-Ninth Annual Meeting.
http://dx.doi.org/10.1190/1.1821076
[18]
Zhu, K., & Yang, J. (2008). Time-Dependent Magnetometric Resistivity Ano-malies of Groundwater Contamination: Synthetic Results from Computational Hydro-Geophysical Modeling. Applied Geophysics, 5, 322-330.
http://dx.doi.org/10.1007/s11770-008-0041-3
[19]
Zume, J. T., Tarhule, A., & Christenson, S. (2006). Subsurface Imaging of an Abandoned Solid Waste Landfill Site in Norman, Oklahoma. Groundwater Monitoring and Remediation, 26, 62-69.
http://dx.doi.org/10.1111/j.1745-6592.2006.00066.x