Acidic pit lakes can form in open cut mine voids that extend below the groundwater table. The aim of this research was to determine what bulk organic material concentrations best stimulated sulphate-reducing bacteria (SRB) for acid mine drainage (AMD) treatment within a pit lake. An experiment was carried out to assess the effect of different substrate concentrations of sewage sludge on AMD bioremediation efficiency. Experimental microcosms were made of 300 mm long and 100 mm wide acrylic cores, with a total volume of 1.8 L. Four different concentrations of sewage sludge (ranging from 30 to 120 g/L) were tested. As the sewage sludge concentration increased, the bioremediation efficiency also increased, reflecting the higher organic carbon c...
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...
Passive biological treatment of acid mine drainage (AMD) relies on sulfate-reducing bacteria (SRB) s...
Pit lakes (abandoned flooded mine pits) represent a potentially valuable water resource. However, ac...
Research was conducted to evaluate methods for the biological treatment of acid mine drainage (AMD)....
Domestic wastewater sludge can serve as a carbon source in the passive biotic treatment of acid mine...
Acidic mine pit lakes represent a potentially valuable resource to both the environment and the comm...
Acid mine drainage pollution may be associated with large water volume flows and exceptionally long ...
grantor: University of TorontoAcid mine drainage (AMD) contains high concentrations of hea...
Wetland and lake sediments provide conditions where microbial sulphate reduction and biomineralizati...
Requirements for successful biological treatment of acid mine drainage (AMD) rely on the reduction o...
Sulphate-reducing passive bioreactors have received much attention lately as alternating technologie...
Treatment of acid mine drainage (AMD) highly rich in sulfate and multiple metal elements has been in...
Successful long-term bioremediation of mining-influenced water using complex organic matter and natu...
Acid mine drainage (AMD) causes several environmental problems in many countries. The use of biologi...
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...
Passive biological treatment of acid mine drainage (AMD) relies on sulfate-reducing bacteria (SRB) s...
Pit lakes (abandoned flooded mine pits) represent a potentially valuable water resource. However, ac...
Research was conducted to evaluate methods for the biological treatment of acid mine drainage (AMD)....
Domestic wastewater sludge can serve as a carbon source in the passive biotic treatment of acid mine...
Acidic mine pit lakes represent a potentially valuable resource to both the environment and the comm...
Acid mine drainage pollution may be associated with large water volume flows and exceptionally long ...
grantor: University of TorontoAcid mine drainage (AMD) contains high concentrations of hea...
Wetland and lake sediments provide conditions where microbial sulphate reduction and biomineralizati...
Requirements for successful biological treatment of acid mine drainage (AMD) rely on the reduction o...
Sulphate-reducing passive bioreactors have received much attention lately as alternating technologie...
Treatment of acid mine drainage (AMD) highly rich in sulfate and multiple metal elements has been in...
Successful long-term bioremediation of mining-influenced water using complex organic matter and natu...
Acid mine drainage (AMD) causes several environmental problems in many countries. The use of biologi...
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...
Passive biological treatment of acid mine drainage (AMD) relies on sulfate-reducing bacteria (SRB) s...