International audiencePassive treatment based on iron biological oxidation is a promising strategy for Arsenic (As)-rich acid mine drainage (AMD) remediation. In the present study, we characterized by 16S rRNA metabarcoding the bacterial diversity in a field-pilot bioreactor treating extremely As-rich AMD in situ, over a 6 months monitoring period. Inside the bioreactor, the bacterial communities responsible for iron and arsenic removal formed a biofilm ("biogenic precipitate") whose composition varied in time and space. These communities evolved from a structure at first similar to the one of the feed water used as an inoculum to a structure quite similar to the natural biofilm developing in situ in the AMD. Over the monitoring period, iro...
International audienceA field-pilot bioreactor exploiting microbial iron (Fe) oxidation and subseque...
International audienceMicrobial oxidation of iron (Fe) and arsenic (As) followed by their co-precipi...
International audienceMicrobial oxidation of iron (Fe) and arsenic (As) followed by their co-precipi...
International audiencePassive treatment based on iron biological oxidation is a promising strategy f...
Passive treatment based on iron biological oxidation is a promising strategy for Arsenic (As)-rich a...
Passive treatment based on iron biological oxidation is a promising strategy for Arsenic (As)-rich a...
Passive treatment based on iron biological oxidation is a promising strategy for Arsenic (As)-rich a...
International audienceArsenic rich AMDs (Acid Mine Drainages) represent a major source of pollution ...
International audienceSemi-passive bioreactors based on iron and arsenic oxidation and coprecipitati...
International audienceArsenic removal consecutive to biological iron oxidation and precipitation is ...
International audienceArsenic (As) is a toxic element ubiquitous in acid mine drainage (AMD). It rep...
International audienceArsenic (As) is one of the most toxic pollutants commonly associated with mine...
A field-pilot bioreactor exploiting microbial iron (Fe) oxidation and subsequent arsenic (As) and Fe...
Arsenic removal consecutive to biological iron oxidation and precipitation is an effective process f...
International audienceA field-pilot bioreactor exploiting microbial iron (Fe) oxidation and subseque...
International audienceA field-pilot bioreactor exploiting microbial iron (Fe) oxidation and subseque...
International audienceMicrobial oxidation of iron (Fe) and arsenic (As) followed by their co-precipi...
International audienceMicrobial oxidation of iron (Fe) and arsenic (As) followed by their co-precipi...
International audiencePassive treatment based on iron biological oxidation is a promising strategy f...
Passive treatment based on iron biological oxidation is a promising strategy for Arsenic (As)-rich a...
Passive treatment based on iron biological oxidation is a promising strategy for Arsenic (As)-rich a...
Passive treatment based on iron biological oxidation is a promising strategy for Arsenic (As)-rich a...
International audienceArsenic rich AMDs (Acid Mine Drainages) represent a major source of pollution ...
International audienceSemi-passive bioreactors based on iron and arsenic oxidation and coprecipitati...
International audienceArsenic removal consecutive to biological iron oxidation and precipitation is ...
International audienceArsenic (As) is a toxic element ubiquitous in acid mine drainage (AMD). It rep...
International audienceArsenic (As) is one of the most toxic pollutants commonly associated with mine...
A field-pilot bioreactor exploiting microbial iron (Fe) oxidation and subsequent arsenic (As) and Fe...
Arsenic removal consecutive to biological iron oxidation and precipitation is an effective process f...
International audienceA field-pilot bioreactor exploiting microbial iron (Fe) oxidation and subseque...
International audienceA field-pilot bioreactor exploiting microbial iron (Fe) oxidation and subseque...
International audienceMicrobial oxidation of iron (Fe) and arsenic (As) followed by their co-precipi...
International audienceMicrobial oxidation of iron (Fe) and arsenic (As) followed by their co-precipi...