Reductive immobilization of hexavalent uranium [U(VI)] by stimulation of dissimilatory metal and/or sulfate reducing bacteria (DMRB or DSRB) has been extensively researched as a remediation strategy for subsurface U(VI) contamination. These bacteria derive energy by reducing oxidized metals as terminal electron acceptors, often utilizing organic substrates as electron donors. Thus, when evaluating the potential for in-situ uranium remediation in heterogeneous subsurface media, it is important to understand how the presence of alternative electron acceptors such as Fe(III) and sulfate affect U(VI) remediation and the long term behavior and reactivity of reduced uranium. Iron, an abundant subsurface element, represents a substantial sink for ...
Uranium is a pollutant of concern to both human and ecosystem health. Uranium's redox state often di...
Bioremediation of U contaminated groundwater is based on the microbial in situ reduction of soluble...
Bioremediation of U contaminated groundwater is based on the microbial in situ reduction of soluble...
Biostimulation of dissimilatory metal and/or sulfate reducing bacteria (DMRB and DSRB) has been ext...
During subsurface bioremediation of uranium-contaminated sites, indigenous metal and sulfate-reducin...
During subsurface bioremediation of uranium-contaminated sites, indigenous metal and sulfate-reducin...
Reductive immobilization of uranium by stimulation of dissimilatory metal-reducing bacteria (DMRB) ...
Reductive immobilization of uranium by stimulation of dissimilatory metal-reducing bacteria (DMRB) ...
Reductive immobilization of uranium by the stimulation of dissimilatory metal-reducing bacteria (DMR...
Reductive immobilization of uranium by the stimulation of dissimilatory metal-reducing bacteria (DMR...
Reductive immobilization of uranium by the stimulation of dissimilatory metal-reducing bacteria (DMR...
Reductive immobilization of uranium by the stimulation of dissimilatory metal-reducing bacteria (DMR...
Reduction of U(VI) to U(IV) drastically reduces its solubility and has been proposed as a method for...
Although the fundamental microbiological and geochemical processes underlying the potential use of d...
Recent results from laboratory and field studies support that dissimilatory metal reducing (DMR) bac...
Uranium is a pollutant of concern to both human and ecosystem health. Uranium's redox state often di...
Bioremediation of U contaminated groundwater is based on the microbial in situ reduction of soluble...
Bioremediation of U contaminated groundwater is based on the microbial in situ reduction of soluble...
Biostimulation of dissimilatory metal and/or sulfate reducing bacteria (DMRB and DSRB) has been ext...
During subsurface bioremediation of uranium-contaminated sites, indigenous metal and sulfate-reducin...
During subsurface bioremediation of uranium-contaminated sites, indigenous metal and sulfate-reducin...
Reductive immobilization of uranium by stimulation of dissimilatory metal-reducing bacteria (DMRB) ...
Reductive immobilization of uranium by stimulation of dissimilatory metal-reducing bacteria (DMRB) ...
Reductive immobilization of uranium by the stimulation of dissimilatory metal-reducing bacteria (DMR...
Reductive immobilization of uranium by the stimulation of dissimilatory metal-reducing bacteria (DMR...
Reductive immobilization of uranium by the stimulation of dissimilatory metal-reducing bacteria (DMR...
Reductive immobilization of uranium by the stimulation of dissimilatory metal-reducing bacteria (DMR...
Reduction of U(VI) to U(IV) drastically reduces its solubility and has been proposed as a method for...
Although the fundamental microbiological and geochemical processes underlying the potential use of d...
Recent results from laboratory and field studies support that dissimilatory metal reducing (DMR) bac...
Uranium is a pollutant of concern to both human and ecosystem health. Uranium's redox state often di...
Bioremediation of U contaminated groundwater is based on the microbial in situ reduction of soluble...
Bioremediation of U contaminated groundwater is based on the microbial in situ reduction of soluble...