Page 331 - gas transport in porous media
P. 331
330
Commission on Geosciences, Environment and Ressources, “Natural Attenuation for Groundwater
Remediation”, National Academy Press, Washington D.C., 2000, 287 pages. Tartre
Crumbling, D.M., “Improving the Cost-effectiveness of Hazardous Waste Site Characterization and
Monitoring”, USEPA Technology Innovation Office, Washington DC, 1999.
Haggerty, R., Schroth, M.H., Istok, J.D., “Simplified Method of Push-pull Test Data Analysis for
Determining In situ Reaction Rate Coefficients”, Ground Water, Vol. 36, March/April 1998.
Lahvis, A.M., Baehr, A.L., “Estimation of Rates ofAerobic Hydrocarbon Biodegradation by Simulation of
Gas Transport in the Unsaturated Zone”, Water Resources Research, Vol. 32, No.7, pages 2231–2249,
July 1996.
National Safety Council, “Fundamentals of Industrial Hygiene”, 4th ed.,1995, p. 579–580.
Reinhard, M., Hopkins, G.D., “In situ Demonstration of Anaerobic BTEX Biodegradation Through
Controlled Release Experiments”, Applied Bioremediation of Petroleum Hydrocarbons, pp. 263–270.
Tartre, A., “Development of an Assessment Method to Monitor Soils Around Underground Petroleum
Storage tanks: In situ GEN-VOC Technology - Project Summary”, The National Contaminated Sites
Remediation Program, Development and Demonstration of Site Remediation Technology (DESRT),
Environment Canada, 1997.
Wiedemeier, T., Wilson, J.T., Kampbell, D.H., Miller, R.N., Hansen, J.E., “Technical Protocol for
Implementing Intrinsic Remediation with Long – Term Monitoring for Natural Attenuation of Fuel
Contamination Dissolved in Groundwater”, Air Force Center for Environmental Excellence, USAF,
1995.
Wiedemeier, T., Swanson, M.A., et al., “Approximation of Biodegradation Rate Constants for Monoaro-
matic Hydrocarbons (BTEX) in Ground Water”, GWMR, pp. 186–194, Summer 1996.

