Microbial populations and microbe-mineral interactions were examined in waste rock characterized by neutral rock drainage (NRD). Samples of three primary sulfide-bearing waste rock types (i.e., marble-hornfels, intrusive, exoskarn) were collected from field-scale experiments at the Antamina Cu–Zn–Mo mine, Peru. Microbial communities within all samples were dominated by neutrophilic thiosulfate oxidizing bacteria. However, acidophilic iron and sulfur oxidizers were present within intrusive waste rock characterized by bulk circumneutral pH drainage. The extensive development of microbially colonized porous Fe(III) (oxy)hydroxide and Fe(III) (oxy)hydroxysulfate precipitates was observed at sulfide-mineral surfaces during examination by field e...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
The Richmond Mine at Iron Mountain, Shasta County, California, USA provides an excellent opportunit...
The effect of bacteriogenic iron oxides (BIOS) on microbial community structure in subterranean igne...
Microbial populations and microbe-mineral interactions were examined in waste rock characterized by ...
Microbial populations and microbe-mineral interactions were examined in waste rock characterized by ...
© 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open acce...
© 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open acce...
The microbial populations of waste rock piles and field cells producing neutral pH drainage at the A...
The microbial populations of waste rock piles and field cells producing neutral pH drainage at the A...
Acid Mine Drainage (AMD) is a consequence of mining activity; it results from bacterial and chemical...
Mine waste rock and drainage pose lasting environmental, social, and economic threats to the mining ...
The geochemical dynamics and composition of microbial communities within a low-temperature (�8.5°...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
This study presents population analyses of microbial communities inhabiting a site of extreme acid m...
This study presents population analyses of microbial communities inhabiting a site of extreme acid m...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
The Richmond Mine at Iron Mountain, Shasta County, California, USA provides an excellent opportunit...
The effect of bacteriogenic iron oxides (BIOS) on microbial community structure in subterranean igne...
Microbial populations and microbe-mineral interactions were examined in waste rock characterized by ...
Microbial populations and microbe-mineral interactions were examined in waste rock characterized by ...
© 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open acce...
© 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open acce...
The microbial populations of waste rock piles and field cells producing neutral pH drainage at the A...
The microbial populations of waste rock piles and field cells producing neutral pH drainage at the A...
Acid Mine Drainage (AMD) is a consequence of mining activity; it results from bacterial and chemical...
Mine waste rock and drainage pose lasting environmental, social, and economic threats to the mining ...
The geochemical dynamics and composition of microbial communities within a low-temperature (�8.5°...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
This study presents population analyses of microbial communities inhabiting a site of extreme acid m...
This study presents population analyses of microbial communities inhabiting a site of extreme acid m...
The microbial community of acid mine drainage (AMD) fascinates researchers by their adaption and rol...
The Richmond Mine at Iron Mountain, Shasta County, California, USA provides an excellent opportunit...
The effect of bacteriogenic iron oxides (BIOS) on microbial community structure in subterranean igne...