Acid mine drainage (AMD) is an acidic, iron-rich leachate that causes the dissolution of metals. It constitutes a worldwide problem of environmental contamination detrimental to aquatic life and water quality. AMD, however, is naturally attenuated at Davis Mine in Rowe, Massachusetts. We hypothesize that sulfate-reducing bacteria (SRB) are attenuating AMD. To elucidate the mechanisms by which SRB attenuate AMD, three research projects were conducted using a suite of molecular and geochemical techniques. First we established biological influence on the attenuation of AMD by comparing the microbial community and geochemical trends of microcosms of two contrasting areas within the site: AMD attenuating (AZ) and AMD generating (GZ) zones. The d...
Sulfate is the most important terminal electron acceptor on earth and plays a pivotal role in the mi...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
cited By 8International audienceA 3-year survey on sulfate-reducing bacteria (SRB) was conducted in ...
Acid mine drainage (AMD) is an acidic, iron-rich leachate that causes the dissolution of metals. It ...
Acid Mine Drainage (AMD) is a consequence of mining activity; it results from bacterial and chemical...
Previous studies have shown that sulfate-reducing bacteria (SRB) are present and possibly active in ...
Sediments recovered from the flooded mine workings of the Penn Mine, a Cu-Zn mine abandoned since th...
Mining waste rocks containing sulfide minerals naturally provide the habitat for iron- and sulfur-ox...
Acid mine drainages (AMDs) arise at the weathering of sulphidic minerals. The occurrence of acidic s...
Microbial sulfate (SO42−) reduction in Acid Mine Drainage (AMD) environments can ameliorate the acid...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Two abandoned mine tailings sites (Calumet near Ottawa, and Potter near Timmins, Ontario) have been ...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
Davis Pyrite Mine collapsed in 1910 after 28 years of operation. Since that time, acidic drainage ha...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Sulfate is the most important terminal electron acceptor on earth and plays a pivotal role in the mi...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
cited By 8International audienceA 3-year survey on sulfate-reducing bacteria (SRB) was conducted in ...
Acid mine drainage (AMD) is an acidic, iron-rich leachate that causes the dissolution of metals. It ...
Acid Mine Drainage (AMD) is a consequence of mining activity; it results from bacterial and chemical...
Previous studies have shown that sulfate-reducing bacteria (SRB) are present and possibly active in ...
Sediments recovered from the flooded mine workings of the Penn Mine, a Cu-Zn mine abandoned since th...
Mining waste rocks containing sulfide minerals naturally provide the habitat for iron- and sulfur-ox...
Acid mine drainages (AMDs) arise at the weathering of sulphidic minerals. The occurrence of acidic s...
Microbial sulfate (SO42−) reduction in Acid Mine Drainage (AMD) environments can ameliorate the acid...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Two abandoned mine tailings sites (Calumet near Ottawa, and Potter near Timmins, Ontario) have been ...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
Davis Pyrite Mine collapsed in 1910 after 28 years of operation. Since that time, acidic drainage ha...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Sulfate is the most important terminal electron acceptor on earth and plays a pivotal role in the mi...
Industrial activities and the natural oxidation of metallic sulfide-ores produce sulfate-rich waters...
cited By 8International audienceA 3-year survey on sulfate-reducing bacteria (SRB) was conducted in ...