Mining contributes to water pollution through the generation and uncontrolled release of sulfuric acid and metalliferous drainage (AMD). While sulfate reducing bacteria have been used for the bioremediation of AMD, one of the main limitations to using sulfate-reducing bioreactors is that most species are highly sensitive to acidity; therefore it is necessary to avoid direct contact between acidic mine waters and the bacteria, which is normally achieved by using “off-line” systems. There have been few successful applications using acidophilic, sulfate-reducing bacterial populations, which tolerate low pH and high metal concentrations and allow direct metal sulfide precipitation to occur within a single bioreactor unit. Here, we describe the ...
Waste streams from industrial processes such as metal smelting or mining contain high concentrations...
The microbial sulfur cycle plays an important role in acidic environments such as acid mine drainage...
Sulphate reducing bacteria (SRB) offer promise for the treatment of mine waste due to their effectiv...
Abstract The aim of this study was to develop a biological method for the simultaneous removal of s...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
Dissimilatory sulphate reduction, brought about by the action of sulphate reducing bacteria (SRB) wa...
Acidic mine drainage (AMD) is regarded as a pollutant and considered as potential source of valuable...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
A sulfidogenic bioreactor, operated at low pH (4–5), was set up and used to remove transition metals...
ABSTRACT The key purpose of this research was to explore the capacity of an anaerobic stirred batch ...
Toxic heavy metals and metalloids constitute an international pollution problem that not only impact...
Mining waste rocks containing sulfide minerals naturally provide the habitat for iron- and sulfur-ox...
Biological treatment using sulfate-reducing bacteria (SRB) is a promising approach to remediate acid...
Acid mine drainage (AMD) causes several environmental problems in many countries. The use of biologi...
Biosulfidogenesis (the generation of hydrogen sulfide by microorganisms) in acidic liquors was inves...
Waste streams from industrial processes such as metal smelting or mining contain high concentrations...
The microbial sulfur cycle plays an important role in acidic environments such as acid mine drainage...
Sulphate reducing bacteria (SRB) offer promise for the treatment of mine waste due to their effectiv...
Abstract The aim of this study was to develop a biological method for the simultaneous removal of s...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
Dissimilatory sulphate reduction, brought about by the action of sulphate reducing bacteria (SRB) wa...
Acidic mine drainage (AMD) is regarded as a pollutant and considered as potential source of valuable...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
A sulfidogenic bioreactor, operated at low pH (4–5), was set up and used to remove transition metals...
ABSTRACT The key purpose of this research was to explore the capacity of an anaerobic stirred batch ...
Toxic heavy metals and metalloids constitute an international pollution problem that not only impact...
Mining waste rocks containing sulfide minerals naturally provide the habitat for iron- and sulfur-ox...
Biological treatment using sulfate-reducing bacteria (SRB) is a promising approach to remediate acid...
Acid mine drainage (AMD) causes several environmental problems in many countries. The use of biologi...
Biosulfidogenesis (the generation of hydrogen sulfide by microorganisms) in acidic liquors was inves...
Waste streams from industrial processes such as metal smelting or mining contain high concentrations...
The microbial sulfur cycle plays an important role in acidic environments such as acid mine drainage...
Sulphate reducing bacteria (SRB) offer promise for the treatment of mine waste due to their effectiv...