A field-pilot bioreactor exploiting microbial iron (Fe) oxidation and subsequent arsenic (As) and Fe co-precipitation was monitored during 6 months for the passive treatment of As-rich acid mine drainage (AMD). It was implemented at the Carnoules mining site (southern France) where AMD contained 790-1315 mg L-1 Fe(II) and 84-152 mg L-1 As, mainly as As(Ill) (78-83%). The bioreactor consisted in five shallow trays of 1.5 m(2) in series, continuously fed with AMD by natural flow. We monitored the flow rate and the water physico-chemistry including redox Fe and As speciation. Hydraulic retention time (HRT) was calculated and the precipitates formed inside the bioreactor were characterized (mineralogy, Fe and As content, As redox state). Since ...
Arsenic removal consecutive to biological iron oxidation and precipitation is an effective process f...
International audienceArsenic removal consecutive to biological iron oxidation and precipitation is ...
International audiencePassive treatment based on iron biological oxidation is a promising strategy 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 audienceArsenic (As) is a toxic element ubiquitous in acid mine drainage (AMD). It rep...
International audienceThe weathering of sulphide minerals promoted by mining activities can lead to ...
In: Stanley, P.; Wolkersdorfer, Ch.; Wolkersdorfer, K.: Mine Water Management for Future Generations...
In: Stanley, P.; Wolkersdorfer, Ch.; Wolkersdorfer, K.: Mine Water Management for Future Generations...
In: Stanley, P.; Wolkersdorfer, Ch.; Wolkersdorfer, K.: Mine Water Management for Future Generations...
International audienceAcid Mine Drainage (AMD) is an undesired product of the weathering ...
International audienceArsenic is one of the most hazardous elements associated to acid mine drainage...
International audienceAcid mine drainage (AMD) still represents a huge environmental problem. Techni...
International audienceArsenic rich AMDs (Acid Mine Drainages) represent a major source of pollution ...
Passive treatment based on iron biological oxidation is a promising strategy for Arsenic (As)-rich a...
Arsenic removal consecutive to biological iron oxidation and precipitation is an effective process f...
International audienceArsenic removal consecutive to biological iron oxidation and precipitation is ...
International audiencePassive treatment based on iron biological oxidation is a promising strategy 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 audienceArsenic (As) is a toxic element ubiquitous in acid mine drainage (AMD). It rep...
International audienceThe weathering of sulphide minerals promoted by mining activities can lead to ...
In: Stanley, P.; Wolkersdorfer, Ch.; Wolkersdorfer, K.: Mine Water Management for Future Generations...
In: Stanley, P.; Wolkersdorfer, Ch.; Wolkersdorfer, K.: Mine Water Management for Future Generations...
In: Stanley, P.; Wolkersdorfer, Ch.; Wolkersdorfer, K.: Mine Water Management for Future Generations...
International audienceAcid Mine Drainage (AMD) is an undesired product of the weathering ...
International audienceArsenic is one of the most hazardous elements associated to acid mine drainage...
International audienceAcid mine drainage (AMD) still represents a huge environmental problem. Techni...
International audienceArsenic rich AMDs (Acid Mine Drainages) represent a major source of pollution ...
Passive treatment based on iron biological oxidation is a promising strategy for Arsenic (As)-rich a...
Arsenic removal consecutive to biological iron oxidation and precipitation is an effective process f...
International audienceArsenic removal consecutive to biological iron oxidation and precipitation is ...
International audiencePassive treatment based on iron biological oxidation is a promising strategy f...