Extreme acidophiles play central roles in the geochemical cycling of diverse elements in low pH environments. This has been harnessed in biotechnologies such as biomining, where microorganisms facilitate the recovery of economically important metals such as gold. By generating both extreme acidity and a chemical oxidant (ferric iron) many species of prokaryotes that thrive in low pH environments not only catalyze mineral dissolution but also trigger both community and individual level adaptive changes. These changes vary in extent and direction depending on the ore mineralogy, water availability and local climate. The use of indigenous versus introduced microbial consortia in biomining practices is still a matter of debate. Yet, indigenous ...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Haloalkaliphilic microorganisms are double extremophiles functioning optimally at high salinity and ...
Haloalkaliphilic microorganisms are double extremophiles functioning optimally at high salinity and ...
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...
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...
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...
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...
Mining and processing of metal sulfide ores produces waters containing metals and inorganic sulfur c...
Haloalkaliphilic microorganisms are double extremophiles functioning optimally at high salinity and ...
Mining and processing of metal sulfide ores produces waters containing metals and inorganic sulfur c...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Haloalkaliphilic microorganisms are double extremophiles functioning optimally at high salinity and ...
Haloalkaliphilic microorganisms are double extremophiles functioning optimally at high salinity and ...
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...
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...
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...
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...
Mining and processing of metal sulfide ores produces waters containing metals and inorganic sulfur c...
Haloalkaliphilic microorganisms are double extremophiles functioning optimally at high salinity and ...
Mining and processing of metal sulfide ores produces waters containing metals and inorganic sulfur c...
Sulfate- and iron-reducing heterotrophic bacteria represented minor proportion of the indigenous mic...
Haloalkaliphilic microorganisms are double extremophiles functioning optimally at high salinity and ...
Haloalkaliphilic microorganisms are double extremophiles functioning optimally at high salinity and ...