Aims: To isolate and characterize an anaerobic bacterial strain from the deeper polluted lagoon sediment able to use as electron acceptors [As(V)] and sulfate SO42-, using lactate as an electron donor. Methods and Results: Methods for isolation from polluted lagoon sediments included anaerobic enrichment cultures in the presence of As(V) andSO(4)(2). Reduction of As(V) to As(III) was observed during the growth of the bacterial strain, and the final concentration of As(III) was lower than the initial As(V) one, suggesting the immobilization of As(III) in the yellow precipitate. The precipitate was identified by energy dispersive spectroscopy X-ray as arsenic sulfide. Scanning electron microscopy (SEM) revealed rod-shaped bacterial c...
International audienceAims: To isolate, identify, and characterize heterotrophic bacteria in acid-mi...
The extensive mining activities in Shimen realgar mine have generated large amounts of secondary ars...
Several technologies have been developed for lowering arsenic in drinking waters below the World Hea...
Aims: To isolate and characterize an anaerobic bacterial strain from the deeper polluted lagoon s...
AIMS: The aim of this study was to isolate arsenic-resistant bacteria from contaminated sediment of ...
Anaerobic microbes play a critical role in the biogeochemistry of arsenic. In this Dissertation, I ...
Dissimilatory arsenate reducing bacteria have been implicated in the mobilization of arsenic from ar...
Dissimilatory arsenate-reducing bacteria have been implicated in the mobilization of arsenic from ar...
Arsenic (As) is a highly toxic chemical that is widely distributed in groundwater around the world. ...
Microbial reduction of arsenate [As(V)] plays an important role in arsenic (As) mobilization in aque...
Arsenic in contaminated groundwater occurs largely as arsenite [As(III)], while As(V) is more preval...
Arsenic in groundwater and private wells used for drinking water is a public health concern in the U...
Previous studies from our laboratory have suggested a role for indigenous metal-reducing bacteria in...
Arsenic occurs in water and soil either as a consequence of human activities or from natural leachin...
Arsenic occurs in water and soil either as a consequence of human activities or from natural leachin...
International audienceAims: To isolate, identify, and characterize heterotrophic bacteria in acid-mi...
The extensive mining activities in Shimen realgar mine have generated large amounts of secondary ars...
Several technologies have been developed for lowering arsenic in drinking waters below the World Hea...
Aims: To isolate and characterize an anaerobic bacterial strain from the deeper polluted lagoon s...
AIMS: The aim of this study was to isolate arsenic-resistant bacteria from contaminated sediment of ...
Anaerobic microbes play a critical role in the biogeochemistry of arsenic. In this Dissertation, I ...
Dissimilatory arsenate reducing bacteria have been implicated in the mobilization of arsenic from ar...
Dissimilatory arsenate-reducing bacteria have been implicated in the mobilization of arsenic from ar...
Arsenic (As) is a highly toxic chemical that is widely distributed in groundwater around the world. ...
Microbial reduction of arsenate [As(V)] plays an important role in arsenic (As) mobilization in aque...
Arsenic in contaminated groundwater occurs largely as arsenite [As(III)], while As(V) is more preval...
Arsenic in groundwater and private wells used for drinking water is a public health concern in the U...
Previous studies from our laboratory have suggested a role for indigenous metal-reducing bacteria in...
Arsenic occurs in water and soil either as a consequence of human activities or from natural leachin...
Arsenic occurs in water and soil either as a consequence of human activities or from natural leachin...
International audienceAims: To isolate, identify, and characterize heterotrophic bacteria in acid-mi...
The extensive mining activities in Shimen realgar mine have generated large amounts of secondary ars...
Several technologies have been developed for lowering arsenic in drinking waters below the World Hea...