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Blowes, D. W., Bain, J. G., Smyth, D. J., Ptacek, C. J., Jambor, J. L., Blowes, D. W., et al. (2003). Treatment of mine drainage using permeable reactive materials.
Environmental Aspects of Mine Wastes
,
31
, 361–376.
Keywords:
acid mine drainage
;
acidification
;
aquatic environment
;
aquifer vulnerability
;
aquifers
;
bacteria
;
biodegradation
;
Canada
;
case studies
;
chemical reactions
;
Cochrane District Ontario
;
concentration
;
damage
;
degradation
;
disposal barriers
;
Eastern Canada
;
effluents
;
environmental analysis
;
ferric iron
;
Fry Canyon
;
ground water
;
iron
;
Kidd Creek Site
;
metal ores
;
metals
;
mines
;
models
;
Monticello Canyon
;
Ontario
;
pollution
;
preferential flow
;
reactive barriers
;
remediation
;
sediments
;
solid waste
;
sulfate ion
;
sulfates
;
sulfides
;
tailings
;
Timmins Ontario
;
United States
;
uranium ores
;
Utah
;
waste disposal
;
waste management
;
waste rock mine water treatment
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Cravotta, C. A., III, Watzlaf, G. R., Naftz, D. L., Morrison, S. J., Fuller, C. C., & Davis, J. A. (2002). Design and performance of limestone drains to increase pH and remove metals from acidic mine drainage Handbook of groundwater remediation using permeable reactive barriers; applications to radionuclides, trace metals, and nutrients.. Amsterdam: Academic Press.
Keywords:
acid mine drainage
;
alkaline earth metals
;
aquatic environment
;
aquifers
;
calcium
;
carbonate rocks
;
chemical properties
;
construction
;
construction materials
;
crushed stone
;
dissolved materials
;
drainage
;
effluents
;
ground water
;
limestone
;
magnesium
;
metals
;
pH
;
pollution
;
porous materials
;
precipitation
;
retention
;
saturation
;
sedimentary rocks
;
sulfate ion
;
suspended materials 22, Environmental geology
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