Radionuclide and metal contaminants are present in the vadose zone and groundwater throughout the U.S. Department of Energy (DOE) weapons complex. Demonstrating in situ immobilization of these contaminants in vadose zones or groundwater plumes is a cost-effective remediation strategy. However, the implementation of in situ remediation requires definition of the mechanism that controls sequestration of the contaminants. One such mechanism for metals and radionuclides is co-precipitation of these elements in authigenic calcite and calcite overgrowths. Calcite, a common mineral in many aquifers and vadose zones in the arid western U.S., can incorporate divalent metals such as strontium, cadmium, lead, and cobalt into its crystal structure by t...
Engineered remediation strategies for inducing mineral precipitation in the subsurface typically inv...
Understanding metal scavenging by calcite in deep aquifers in granite is of importance for decipheri...
The goal of this work is to evaluate the applicability of a biogeochemical sequestration approach fo...
Radionuclide and metal contaminants are present in the vadose zone and groundwater throughout the U....
Calcite Precipitation and Trace Metal Partitioning in Groundwater and the Vadose Zone: Remediation o...
In situ remediation is an emerging technology that will play an important role in DOE's environmenta...
Radionuclide and metal contaminants such as 90Sr are present beneath U.S. Department of Energy (DOE)...
Radionuclide and metal contaminants such as strontium-90 are present beneath U.S. Department of Ener...
Radionuclide and metal contaminants such as 90Sr are present beneath U.S. Department of Energy (DOE)...
Radionuclide and metal contaminants such as strontium-90 are present beneath U.S. Department of Ener...
Radionuclide and metal contaminants are present in the vadose zone and groundwater throughout the U....
A suite of experiments were performed to investigate the partitioning of Sr2+ (to mimic the radionuc...
Subsurface radionuclide and metal contaminants throughout the U.S. Department of Energy (DOE) comple...
Subsurface radionuclide and metal contaminants throughout the U.S. Department of Energy (DOE) comple...
The research focus of this previous EMSP grant was assessment of the role that carbonate minerals pl...
Engineered remediation strategies for inducing mineral precipitation in the subsurface typically inv...
Understanding metal scavenging by calcite in deep aquifers in granite is of importance for decipheri...
The goal of this work is to evaluate the applicability of a biogeochemical sequestration approach fo...
Radionuclide and metal contaminants are present in the vadose zone and groundwater throughout the U....
Calcite Precipitation and Trace Metal Partitioning in Groundwater and the Vadose Zone: Remediation o...
In situ remediation is an emerging technology that will play an important role in DOE's environmenta...
Radionuclide and metal contaminants such as 90Sr are present beneath U.S. Department of Energy (DOE)...
Radionuclide and metal contaminants such as strontium-90 are present beneath U.S. Department of Ener...
Radionuclide and metal contaminants such as 90Sr are present beneath U.S. Department of Energy (DOE)...
Radionuclide and metal contaminants such as strontium-90 are present beneath U.S. Department of Ener...
Radionuclide and metal contaminants are present in the vadose zone and groundwater throughout the U....
A suite of experiments were performed to investigate the partitioning of Sr2+ (to mimic the radionuc...
Subsurface radionuclide and metal contaminants throughout the U.S. Department of Energy (DOE) comple...
Subsurface radionuclide and metal contaminants throughout the U.S. Department of Energy (DOE) comple...
The research focus of this previous EMSP grant was assessment of the role that carbonate minerals pl...
Engineered remediation strategies for inducing mineral precipitation in the subsurface typically inv...
Understanding metal scavenging by calcite in deep aquifers in granite is of importance for decipheri...
The goal of this work is to evaluate the applicability of a biogeochemical sequestration approach fo...