International audienceMicrobial oxidation of iron (Fe) and arsenic (As) followed by their co-precipitation leads to the natural attenuation of these elements in As-rich acid mine drainage (AMD). The parameters driving the activity and diversity of bacterial communities responsible for this mitigation remain poorly understood. We conducted batch experiments to investigate the effect of temperature (20 vs 35 °C) and nutrient supply on the rate of Fe and As oxidation and precipitation, the bacterial diversity (high-throughput sequencing of 16S rRNA gene), and the As oxidation potential (quantification of aioA gene) in AMD from the Carnoulès mine (France). In batch incubated at 20 °C, the dominance of iron-oxidizing bacteria related to Gallione...
International audienceArsenic is one of the most hazardous elements associated to acid mine drainage...
The (bio-)geochemical processes driving As mobilisation from streambed sediments affected by acid mi...
International audienceAcid mine drainage (AMD) still represents a huge environmental problem. Techni...
International audienceMicrobial oxidation of iron (Fe) and arsenic (As) followed by their co-precipi...
International audienceArsenic (As) is one of the most toxic pollutants commonly associated with mine...
International audienceThe acid waters (pH=2.73–3.37) originating from the Carnoulès mine tailings co...
International audienceArsenic rich AMDs (Acid Mine Drainages) represent a major source of pollution ...
International audienceThe weathering of sulphide minerals promoted by mining activities can lead to ...
International audiencePassive treatment based on iron biological oxidation is a promising strategy f...
A field-pilot bioreactor exploiting microbial iron (Fe) oxidation and subsequent arsenic (As) and Fe...
International audienceAims: To isolate, identify, and characterize heterotrophic bacteria in acid-mi...
International audienceArsenic removal consecutive to biological iron oxidation and precipitation is ...
Passive treatment based on iron biological oxidation is a promising strategy for Arsenic (As)-rich a...
International audienceArsenic (As) is a toxic element ubiquitous in acid mine drainage (AMD). It rep...
More than 20 years ago, Paques B.V. introduced innovative biotechnologies to recover metals and to r...
International audienceArsenic is one of the most hazardous elements associated to acid mine drainage...
The (bio-)geochemical processes driving As mobilisation from streambed sediments affected by acid mi...
International audienceAcid mine drainage (AMD) still represents a huge environmental problem. Techni...
International audienceMicrobial oxidation of iron (Fe) and arsenic (As) followed by their co-precipi...
International audienceArsenic (As) is one of the most toxic pollutants commonly associated with mine...
International audienceThe acid waters (pH=2.73–3.37) originating from the Carnoulès mine tailings co...
International audienceArsenic rich AMDs (Acid Mine Drainages) represent a major source of pollution ...
International audienceThe weathering of sulphide minerals promoted by mining activities can lead to ...
International audiencePassive treatment based on iron biological oxidation is a promising strategy f...
A field-pilot bioreactor exploiting microbial iron (Fe) oxidation and subsequent arsenic (As) and Fe...
International audienceAims: To isolate, identify, and characterize heterotrophic bacteria in acid-mi...
International audienceArsenic removal consecutive to biological iron oxidation and precipitation is ...
Passive treatment based on iron biological oxidation is a promising strategy for Arsenic (As)-rich a...
International audienceArsenic (As) is a toxic element ubiquitous in acid mine drainage (AMD). It rep...
More than 20 years ago, Paques B.V. introduced innovative biotechnologies to recover metals and to r...
International audienceArsenic is one of the most hazardous elements associated to acid mine drainage...
The (bio-)geochemical processes driving As mobilisation from streambed sediments affected by acid mi...
International audienceAcid mine drainage (AMD) still represents a huge environmental problem. Techni...