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Rammlmair, D., & Grissemann, C. (2000). Natural attenuation in slag heaps versus remediation. In D. Rammlmair, J. Mederer, T. Oberthuer, R. B. Heimann, & H. J. Pentinghaus (Eds.),
Applied mineralogy in research, economy, technology, ecology and culture
(pp. 645–648).
Keywords:
acid mine drainage
;
alteration
;
concentration
;
concepts
;
crust
;
deposition
;
design
;
development
;
diagenesis
;
exhalative processes
;
fines
;
fluvial features
;
ground water
;
leaching
;
metallurgy
;
mining
;
mining geology
;
mobilization
;
natural attenuation
;
physicochemical properties
;
Plantae
;
pollution
;
precipitation
;
remediation
;
rivers
;
slag
;
time scales
;
toxic materials
;
transportation
;
volatiles
;
wind transport 22, Environmental geology
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Wingenfelder, U., Hansen, C., Furrer, G., & Schulin, R. (2005). Removal of heavy metals from mine waters by natural zeolites.
Environ Sci Technol, ES & T
,
39
(12), 4606–4613.
Keywords:
Groundwater problems and environmental effects Pollution and waste management non radioactive remediation heavy metal mine drainage acid mine drainage
;
acidification
;
Central Europe
;
chemical composition
;
chemical fractionation
;
dissolved materials
;
Europe
;
framework silicates
;
geochemistry
;
grain size
;
heavy metals
;
hydrochemistry
;
ion exchange
;
lead
;
metals
;
mines
;
mining
;
mobilization
;
models
;
pH
;
pollutants
;
pollution
;
precipitation
;
remediation
;
samples
;
silicates
;
spectra
;
Switzerland
;
toxic materials
;
X-ray diffraction data
;
X-ray fluorescence spectra
;
zeolite group
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