Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters with low pH and high heavy metals content, generally termed acid mine drainage (AMD). This is of great environmental concern as some heavy metals are highly toxic. Within a number of possibilities, biological treatment applying sulfate-reducing bacteria (SRB) is an attractive option to treat AMD and to recover metals. The process produces alkalinity, neutralizing the AMD simultaneously. The sulfide that is produced reacts with the metal in solution and precipitates them as metal sulfides. Here, important factors for biotechnological application of SRB such as the inocula, the pH of the process, the substrates and the reactor design are discu...
grantor: University of TorontoAcid Mine Drainage (AMD) contains high concentrations of dis...
Arsenic (As) and antimony (Sb) from mining sites can seep into aquatic ecosystems by acid mine drain...
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...
ABSTRACT The key purpose of this research was to explore the capacity of an anaerobic stirred batch ...
Abstract The aim of this study was to develop a biological method for the simultaneous removal of s...
Mining waste rocks containing sulfide minerals naturally provide the habitat for iron- and sulfur-ox...
Dissimilatory sulphate reduction, brought about by the action of sulphate reducing bacteria (SRB) wa...
Research was conducted to evaluate methods for the biological treatment of acid mine drainage (AMD)....
Toxic heavy metals and metalloids constitute an international pollution problem that not only impact...
Acidic and metal-polluted drainage water from abandoned pyrite mines affect aquatic life in several ...
Acid mine drainage (AMD) causes several environmental problems in many countries. The use of biologi...
One of the most important problems affecting mining companies around the world is the treatment of a...
Mining contributes to water pollution through the generation and uncontrolled release of sulfuric ac...
Sulfate in waste waters, especially in effluents of the mining industry, is a growing concern in env...
grantor: University of TorontoAcid Mine Drainage (AMD) contains high concentrations of dis...
Arsenic (As) and antimony (Sb) from mining sites can seep into aquatic ecosystems by acid mine drain...
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...
ABSTRACT The key purpose of this research was to explore the capacity of an anaerobic stirred batch ...
Abstract The aim of this study was to develop a biological method for the simultaneous removal of s...
Mining waste rocks containing sulfide minerals naturally provide the habitat for iron- and sulfur-ox...
Dissimilatory sulphate reduction, brought about by the action of sulphate reducing bacteria (SRB) wa...
Research was conducted to evaluate methods for the biological treatment of acid mine drainage (AMD)....
Toxic heavy metals and metalloids constitute an international pollution problem that not only impact...
Acidic and metal-polluted drainage water from abandoned pyrite mines affect aquatic life in several ...
Acid mine drainage (AMD) causes several environmental problems in many countries. The use of biologi...
One of the most important problems affecting mining companies around the world is the treatment of a...
Mining contributes to water pollution through the generation and uncontrolled release of sulfuric ac...
Sulfate in waste waters, especially in effluents of the mining industry, is a growing concern in env...
grantor: University of TorontoAcid Mine Drainage (AMD) contains high concentrations of dis...
Arsenic (As) and antimony (Sb) from mining sites can seep into aquatic ecosystems by acid mine drain...
The uncontrolled release of acid mine drainage (AMD) characterized by elevated concentrations of dis...