Environmental Engineering Reference
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Gu, B. D. Watson, Goldberg W., Bogle M.A., and Allred D. 1998. Reactive Barriers
for the Retention and Removal of Uranium, Technetium, and Nitrate in
Groundwater. RTDF Meeting, Beaverton, OR, April 15-16.
Guiguer N.J., Molson E.O., and Frind T.F. 1992. FLONET-Equipotential and Streamlines
Simulation Package, Waterloo Hydrogeologic Software and the Waterloo Center
for Groundwater Research, Waterloo, Ontario.
Gupta N. and Fox T.C. 1999. Hydrogeologic modeling for permeable reactive barriers.
Journal of Hazardous Mater 68: 19-39.
Hemsi P.S. and Shackelford C.D. 2006. An evaluation of the influence of aquifer het-
erogeneity on permeable reactive barrier design, Water Resources. Research 42,
W03402.
Hsieh P.A. and Freckleton J.R. 1993. Documentation of a computer program to simu-
late horizontal-flow barriers using the U.S. Geological Survey modular three-
dimensional finite-difference ground-water flow model, U.S. Geological Survey
Open-File Report 92-477.
Jeen S.W., Mayer K.U, Gillham R.W., and Blowes D.W. 2007. Reactive transport model-
ing of trichloroethene treatment with declining reactivity of iron. Environmental
Science and Technology 41: 1432-1438.
Jirásko D. and Vaníˇek I. 2009. The interaction of groundwater with permeable reac-
tive barrier (PRB). The Academia and Practice of Geotechnical Engineering . Cairo:
IFOS, pp. 2473-2478. ISBN 978-1-60750-031-5.
Johnson R.L., Tratnyek P.G., Miehr R., Thoms R.B., and Bandstra J.Z. 2005. Reduction
of hydraulic conductivity and reactivity in zero-valent iron columns by oxygen
and TNT. Ground Water Monitoring and Remediation 25(1): 129-136.
Kipp K.L. 1997. Guide to revised heat and solute transport simulator HST3D. Version
2. US geological Survey, Colorado. US.
Komnitsas K., Bartzas G., and Paspaliaris I. 2006. Modeling of reaction front
progress in fly ash permeable reactive barriers. Environmental Forensics 7(3):
219-231.
Kwong S., Small J., and Tahir B. 2007. Modelling the remediation of contaminated
groundwater using zero-valent iron barrier. WM'07 conference, Tucson, AZ.
Landau L.D. and Lifschitz E.M. 1982. Fluid Mechanics , 2nd edition. Pergamon Press,
Oxford, England, p. 15.
Li L., Benson C.H. and Lawson E.M. 2006. Modeling porosity reductions caused
by mineral fouling in continuous-wall permeable reactive barriers. Journal of
Contaminant Hydrology 83: 89-121.
Liang L., Sullivan A.B., West O.R., Kamolpornwijit W., and Moline G.R. 2003.
Predicting the precipitation of mineral phases in permeable reactive barriers.
Environmental Engineering Science 20(6): 635-653.
Mayer K.U., Benner S.G., and Blowes D.W. 2006. Process-based reactive transport
modelling of a permeable reactive barrier for the treatment of mine drainage.
Journal of Contaminant Hydrology 85: 195-211.
Mayer K.U., Blowes D.W., and Frind E.O. 2001. Reactive transport modeling of an in
situ reactive barrier for the treatment of hexavalent chromium and trichloroeth-
ylene in groundwater. Water Resources Research 37: 3091-3104.
Mayer K.U., Frind E.O., and Blowes D.W. 2002. Multicomponent reactive transport
modeling in variably saturated porous media using a generalized formulation
for kinetically controlled reactions. Water Resources Research 38: 1174-1195.
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