Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous microbial community of highly acidic, oligotrophic acid mine drainage (AMD), but they can be successfully stimulated for in situ bioremediation of an AMD impacted soil (AIS). These anaerobic microorganisms although played central role in sulfate- and metal-removal, they remained inactive in the AIS due to the paucity of organic carbon and extreme acidity of the local environment. The present study investigated the scope for increasing the abundance and activity of inhabitant sulfate- and iron-reducing bacterial populations of an AIS from Malanjkhand Copper Project. An AIS of pH 3.5, high soluble SO42− (7838 mg/l) and Fe (179 mg/l) content was am...
Acid mine drainage (AMD) causes several environmental problems in many countries. The use of biologi...
Extreme acidophiles play central roles in the geochemical cycling of diverse elements in low pH envi...
Extreme acidophiles play central roles in the geochemical cycling of diverse elements in low pH envi...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Acid mine drainage (AMD) is an acidic, iron-rich leachate that causes the dissolution of metals. It ...
Environmental degradation related to mining-generated acid mine drainage (AMD) is a major global con...
Acid Mine Drainage (AMD) is a consequence of mining activity; it results from bacterial and chemical...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
The soils of three fumaroles and one mining site, all with high metal content, were surveyed for the...
Mining waste rocks containing sulfide minerals naturally provide the habitat for iron- and sulfur-ox...
Drainage from metal-sulphide rich rocks may cause considerable environmental stress in the form of e...
Extreme acidophiles play central roles in the geochemical cycling of diverse elements in low pH envi...
Acid mine drainage (AMD) causes several environmental problems in many countries. The use of biologi...
Extreme acidophiles play central roles in the geochemical cycling of diverse elements in low pH envi...
Extreme acidophiles play central roles in the geochemical cycling of diverse elements in low pH envi...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Acid mine drainage (AMD) is an acidic, iron-rich leachate that causes the dissolution of metals. It ...
Environmental degradation related to mining-generated acid mine drainage (AMD) is a major global con...
Acid Mine Drainage (AMD) is a consequence of mining activity; it results from bacterial and chemical...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
The soils of three fumaroles and one mining site, all with high metal content, were surveyed for the...
Mining waste rocks containing sulfide minerals naturally provide the habitat for iron- and sulfur-ox...
Drainage from metal-sulphide rich rocks may cause considerable environmental stress in the form of e...
Extreme acidophiles play central roles in the geochemical cycling of diverse elements in low pH envi...
Acid mine drainage (AMD) causes several environmental problems in many countries. The use of biologi...
Extreme acidophiles play central roles in the geochemical cycling of diverse elements in low pH envi...
Extreme acidophiles play central roles in the geochemical cycling of diverse elements in low pH envi...