We demonstrate adsorption and partial incorporation of arsenic, in its soluble form, either as arsenite or arsenate into lepidocrocite (γ-FeOOH), which was formed through nitrite-driven Fe(II) oxidation by Paracoccus denitrificans under nitrate-reducing conditions. Fe and As K-edge XANES and radial distribution functions of Fourier-transformed EXAFS spectra showed that portions of As were found to be incorporated in the biogenic lepidocrocite, in addition to higher portions of adsorbed As. We suggest that denitrifying bacteria such as Paracoccus denitrificans, studied here, could facilitate decrease of aqueous arsenic As(III) and/or As(V) through indirect Fe(II) oxidation to solid phase iron minerals, here as lepidocrocite, by the denit...
Arsenic pollution in waters is due to natural and anthropogenic sources. Human exposure to arsenic i...
The fate of As(V) during microbial reduction by <i>Geobacter sulfurreducens</i> of Fe(III) in synt...
Microbial reduction of arsenic (As)-bearing Fe(III)-(oxyhydr)oxides is one of the major processes ...
We demonstrate adsorption and partial incorporation of arsenic, in its soluble form, either as arsen...
Bioreduction of As(V) and As-bearing iron oxides is considered to be one of the key processes leadi...
An anaerobic nitrate-reducing Fe(II)-oxidizing bacterium, Pseudogulbenkiania sp. strain 2002, was us...
An anaerobic nitrate-reducing Fe(II)-oxidizing bacterium, <i>Pseudogulbenkiania</i> sp. strain 2002...
Batch-type leaching experiments were performed on polluted soil contaminated by pyrite cinders to ev...
AbstractArsenic (As) contamination of groundwater and surface water is a worldwide problem. Exposure...
© 2017 Elsevier Ltd The mobilization of arsenic (As) in aquatic environment (groundwater) can cause ...
Biologically formed nano-FeS is a potential and low-cost adsorbent and soil remediation agent. Remed...
the objectives of this study were as follows: (i) to discern the effect of arsenic speciation on the...
Dissimilatory As(V) (arsenate)-reducing bacteria may play an important role in arsenic release from...
Fe(III) (oxyhydr)oxide minerals exhibit a high sorption affinity for arsenic (As) and the reductiv...
International audienceUnderstanding the processes involved in the control of arsenic (As) dynamics w...
Arsenic pollution in waters is due to natural and anthropogenic sources. Human exposure to arsenic i...
The fate of As(V) during microbial reduction by <i>Geobacter sulfurreducens</i> of Fe(III) in synt...
Microbial reduction of arsenic (As)-bearing Fe(III)-(oxyhydr)oxides is one of the major processes ...
We demonstrate adsorption and partial incorporation of arsenic, in its soluble form, either as arsen...
Bioreduction of As(V) and As-bearing iron oxides is considered to be one of the key processes leadi...
An anaerobic nitrate-reducing Fe(II)-oxidizing bacterium, Pseudogulbenkiania sp. strain 2002, was us...
An anaerobic nitrate-reducing Fe(II)-oxidizing bacterium, <i>Pseudogulbenkiania</i> sp. strain 2002...
Batch-type leaching experiments were performed on polluted soil contaminated by pyrite cinders to ev...
AbstractArsenic (As) contamination of groundwater and surface water is a worldwide problem. Exposure...
© 2017 Elsevier Ltd The mobilization of arsenic (As) in aquatic environment (groundwater) can cause ...
Biologically formed nano-FeS is a potential and low-cost adsorbent and soil remediation agent. Remed...
the objectives of this study were as follows: (i) to discern the effect of arsenic speciation on the...
Dissimilatory As(V) (arsenate)-reducing bacteria may play an important role in arsenic release from...
Fe(III) (oxyhydr)oxide minerals exhibit a high sorption affinity for arsenic (As) and the reductiv...
International audienceUnderstanding the processes involved in the control of arsenic (As) dynamics w...
Arsenic pollution in waters is due to natural and anthropogenic sources. Human exposure to arsenic i...
The fate of As(V) during microbial reduction by <i>Geobacter sulfurreducens</i> of Fe(III) in synt...
Microbial reduction of arsenic (As)-bearing Fe(III)-(oxyhydr)oxides is one of the major processes ...