Acid mine drainage -- Sulphate reducing bacteria -- Carbon sources for passive bioreactors or PRBs for AMD treatment -- Supplementary parameters and relations between laboratory and full scale passive bioreactors -- Sterilization of media -- Characterization and reactivity assessment of organic substrates for sulphate-reducing bacteria in acid mine drainage treatment
The aim of this study was to find cheap, solid substrate material for sulphate reducing bacteria (SR...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
Treatment of acid mine drainage is carried out by physical, chemical and biological methods. The bio...
Passive bioreactors involving sulphate-reducing bacteria (SRB) are a reasonable alternative technolo...
Sulphate-reducing passive bioreactors have received much attention lately as alternating technologie...
The development of low-operational-cost and low-operational-complexity active sulphate (SO4) reducin...
Treatment of acid mine drainage (AMD) highly rich in sulfate and multiple metal elements has been in...
Domestic wastewater sludge can serve as a carbon source in the passive biotic treatment of acid mine...
grantor: University of TorontoAcid mine drainage (AMD) contains high concentrations of hea...
Requirements for successful biological treatment of acid mine drainage (AMD) rely on the reduction o...
Acid mine drainage (AMD) causes several environmental problems in many countries. The use of biologi...
The uncontrolled release of acid mine drainage (AMD) characterized by elevated concentrations of dis...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
Passive biological treatment of acid mine drainage (AMD) relies on sulfate-reducing bacteria (SRB) s...
Acid mine drainage (AMD) is an environmental hazard across the world. Passive bioreactors utilizing ...
The aim of this study was to find cheap, solid substrate material for sulphate reducing bacteria (SR...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
Treatment of acid mine drainage is carried out by physical, chemical and biological methods. The bio...
Passive bioreactors involving sulphate-reducing bacteria (SRB) are a reasonable alternative technolo...
Sulphate-reducing passive bioreactors have received much attention lately as alternating technologie...
The development of low-operational-cost and low-operational-complexity active sulphate (SO4) reducin...
Treatment of acid mine drainage (AMD) highly rich in sulfate and multiple metal elements has been in...
Domestic wastewater sludge can serve as a carbon source in the passive biotic treatment of acid mine...
grantor: University of TorontoAcid mine drainage (AMD) contains high concentrations of hea...
Requirements for successful biological treatment of acid mine drainage (AMD) rely on the reduction o...
Acid mine drainage (AMD) causes several environmental problems in many countries. The use of biologi...
The uncontrolled release of acid mine drainage (AMD) characterized by elevated concentrations of dis...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
Passive biological treatment of acid mine drainage (AMD) relies on sulfate-reducing bacteria (SRB) s...
Acid mine drainage (AMD) is an environmental hazard across the world. Passive bioreactors utilizing ...
The aim of this study was to find cheap, solid substrate material for sulphate reducing bacteria (SR...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
Treatment of acid mine drainage is carried out by physical, chemical and biological methods. The bio...