The use of wetlands is a promising technology to treat acid mine drainage, yet there is little understanding of the fundamental biological processes involved. They are considered to centre on the complex anaerobic ecology within sediments and involve the removal of metals by sulphate-reducing bacteria (SRB). These bacteria generate hydrogen sulphide and cause precipitation of metals from solution as the insoluble metal sulphide. Sulphate-reducing bacteria have been isolated from natural and constructed wetlands receiving acid mine drainage. Sulphide production by isolates and removal of the metals iron, manganese and zinc were measured, as well as utilization of a range of carbon sources. Marked ecological differences between the wetlands w...
Constructed wetlands have the potential to trap and remove metals in mine wastewater. to determine t...
Successful long-term bioremediation of mining-influenced water using complex organic matter and natu...
The application of microorganisms for treating high sulfate effluents is proving to be an effective ...
The biogeochemistry of wetlands is conducive to the retention of sulphate and other contaminants, as...
Natural and artificial vegetated wetlands have the unique ability to retain pollutants from water. F...
Dealing with high concentrations of sulphates and metals in ongoing mine drainage is one of the majo...
This article is devoted to the process of bacterial sulphate reduction, which is used to removal of ...
Mine associated wastewater is characteristically elevated in metals and other contaminants and has b...
Mine wastewater is characteristically elevated in metals and sulfate and conventionally treated with...
Acid Mine Drainage (AMD) is an environmental phenomenon that is being experienced by some surface mi...
One of the most important problems affecting mining companies around the world is the treatment of a...
Bioremediation strategies that depend on bacterial sulfate reduction for heavy metals remediation ha...
Natural recovery and remediation of acid mine drainage (AMD) reduces the generation of acidity and t...
Dissimilatory sulphate reduction, brought about by the action of sulphate reducing bacteria (SRB) wa...
Bioremediation strategies that depend on bacterial sulfate reduction for heavy metals remediation ha...
Constructed wetlands have the potential to trap and remove metals in mine wastewater. to determine t...
Successful long-term bioremediation of mining-influenced water using complex organic matter and natu...
The application of microorganisms for treating high sulfate effluents is proving to be an effective ...
The biogeochemistry of wetlands is conducive to the retention of sulphate and other contaminants, as...
Natural and artificial vegetated wetlands have the unique ability to retain pollutants from water. F...
Dealing with high concentrations of sulphates and metals in ongoing mine drainage is one of the majo...
This article is devoted to the process of bacterial sulphate reduction, which is used to removal of ...
Mine associated wastewater is characteristically elevated in metals and other contaminants and has b...
Mine wastewater is characteristically elevated in metals and sulfate and conventionally treated with...
Acid Mine Drainage (AMD) is an environmental phenomenon that is being experienced by some surface mi...
One of the most important problems affecting mining companies around the world is the treatment of a...
Bioremediation strategies that depend on bacterial sulfate reduction for heavy metals remediation ha...
Natural recovery and remediation of acid mine drainage (AMD) reduces the generation of acidity and t...
Dissimilatory sulphate reduction, brought about by the action of sulphate reducing bacteria (SRB) wa...
Bioremediation strategies that depend on bacterial sulfate reduction for heavy metals remediation ha...
Constructed wetlands have the potential to trap and remove metals in mine wastewater. to determine t...
Successful long-term bioremediation of mining-influenced water using complex organic matter and natu...
The application of microorganisms for treating high sulfate effluents is proving to be an effective ...