Reductive biostimulation is currently being explored as a possible remediation strategy for U-contaminated groundwater, and is being investigated at a field site in Rifle, CO, USA. The long-term stability of the resulting U(IV) phases is a key component of the overall performance of the remediation approach and depends upon a variety of factors, including rate and mechanism of reduction, mineral associations in the subsurface, and propensity for oxidation. To address these factors, several approaches were used to evaluate the redox sensitivity of U: (1) measurement of the rate of oxidative dissolution of biogenic uraninite (UO2(s)) deployed in groundwater at Rifle, (2) characterization of a zone of natural bioreduction exhibiting relevant r...
Previous field studies on in situ bioremediation of uranium-contaminated groundwater in an aquifer i...
Previous field studies on in situ bioremediation of uranium-contaminated groundwater in an aquifer i...
Our understanding of subsurface microbiology is hindered by the inaccessibility of this environment,...
Reductive biostimulation is currently being explored as a possible remediation strategy for U-contam...
Reductive biostimulation is currently being explored as a possible remediation strategy for U-contam...
Reductive biostimulation is currently being explored as a possible remediation strategy for uranium ...
Reductive bioremediation is currently being explored as a possible strategy for uranium-contaminated...
Reductive bioremediation is currently being explored as a possible strategy for uranium-contaminated...
International audienceUranium bioremediation strategies focus on the addition of a reduce...
International audienceUranium bioremediation strategies focus on the addition of a reduce...
International audienceUranium bioremediation strategies focus on the addition of a reduce...
International audienceUranium bioremediation strategies focus on the addition of a reduce...
Uraninite (UO2) is the most desirable end product of in situ bioreduction because of its low solubil...
Uranium mining and processing for nuclear weapons and fuel have left thousands of sites with toxic l...
A series of laboratory experiments and computer simulations was conducted to assess the extent of ur...
Previous field studies on in situ bioremediation of uranium-contaminated groundwater in an aquifer i...
Previous field studies on in situ bioremediation of uranium-contaminated groundwater in an aquifer i...
Our understanding of subsurface microbiology is hindered by the inaccessibility of this environment,...
Reductive biostimulation is currently being explored as a possible remediation strategy for U-contam...
Reductive biostimulation is currently being explored as a possible remediation strategy for U-contam...
Reductive biostimulation is currently being explored as a possible remediation strategy for uranium ...
Reductive bioremediation is currently being explored as a possible strategy for uranium-contaminated...
Reductive bioremediation is currently being explored as a possible strategy for uranium-contaminated...
International audienceUranium bioremediation strategies focus on the addition of a reduce...
International audienceUranium bioremediation strategies focus on the addition of a reduce...
International audienceUranium bioremediation strategies focus on the addition of a reduce...
International audienceUranium bioremediation strategies focus on the addition of a reduce...
Uraninite (UO2) is the most desirable end product of in situ bioreduction because of its low solubil...
Uranium mining and processing for nuclear weapons and fuel have left thousands of sites with toxic l...
A series of laboratory experiments and computer simulations was conducted to assess the extent of ur...
Previous field studies on in situ bioremediation of uranium-contaminated groundwater in an aquifer i...
Previous field studies on in situ bioremediation of uranium-contaminated groundwater in an aquifer i...
Our understanding of subsurface microbiology is hindered by the inaccessibility of this environment,...