Large quantities of radioactive and chemical wastes resulting from Pu production for nuclear weapons are located in the vadose zone at the USDOE’s Hanford Site, north of Richland, WA. The vadose zone here is characterized by often highly stratified glacial-fluvial sediments that give rise to complex subsurface-flow paths that contribute to uncertainty of contaminant fate and transport. Research efforts have focused on answering questions of contaminant transport from the viewpoint of geologic, biologic, geochemical, and hydrologic controls. This special section highlights key research topics concerning vadose zone problems at the Hanford Site. Research indicates that some of the contaminant species (137Cs, 60Co, 90Sr) are retained by Hanfor...
The USDOE has initiated an impact assessment of existing vadose zone contamination at the Hanford Si...
This data package discusses the geochemistry of vadose zone sediments beneath the single-shell tank ...
The overall goal of the Tank Farm Vadose Zone Project, led by CH2M HILL Hanford Group, Inc., is to d...
Large quantities of radioactive and chemical wastes resulting from Pu production for nuclear weapons...
Nuclear wastes from Hanford’s processing for separation of plutonium are stored in massive, buried, ...
Nuclear wastes from Hanford’s processing for separation of plutonium are stored in massive, buried, ...
ABSTRACT In situ vadose zone remediation approaches are being evaluated as potential options to miti...
CH2M HILL Hanford Group, Inc. (the Hanford Tank Farm Operations contractor) and the Department of En...
At the U.S. Department of Energy’s Hanford Site in Richland, WA nuclear processing wastes, such as S...
Studies were initiated at the Hanford Site to evaluate the process controlling the transport of flui...
Processes of fluid flow and chemical transport through thevadose zone can be characterized through t...
Although the accelerated transport of {sup 99}Tc, {sup 137}Cs, and {sup 235}U within the vadose zone...
Long-term historic spills of uranium at the 300 Area fuel fabrication site (58,000 kg of disposed ur...
This work reported here is part of the U. S. Department of Energy’s Science and Technology Initiativ...
This data package discusses the geochemistry of vadose zone sediments beneath the single-shell tank ...
The USDOE has initiated an impact assessment of existing vadose zone contamination at the Hanford Si...
This data package discusses the geochemistry of vadose zone sediments beneath the single-shell tank ...
The overall goal of the Tank Farm Vadose Zone Project, led by CH2M HILL Hanford Group, Inc., is to d...
Large quantities of radioactive and chemical wastes resulting from Pu production for nuclear weapons...
Nuclear wastes from Hanford’s processing for separation of plutonium are stored in massive, buried, ...
Nuclear wastes from Hanford’s processing for separation of plutonium are stored in massive, buried, ...
ABSTRACT In situ vadose zone remediation approaches are being evaluated as potential options to miti...
CH2M HILL Hanford Group, Inc. (the Hanford Tank Farm Operations contractor) and the Department of En...
At the U.S. Department of Energy’s Hanford Site in Richland, WA nuclear processing wastes, such as S...
Studies were initiated at the Hanford Site to evaluate the process controlling the transport of flui...
Processes of fluid flow and chemical transport through thevadose zone can be characterized through t...
Although the accelerated transport of {sup 99}Tc, {sup 137}Cs, and {sup 235}U within the vadose zone...
Long-term historic spills of uranium at the 300 Area fuel fabrication site (58,000 kg of disposed ur...
This work reported here is part of the U. S. Department of Energy’s Science and Technology Initiativ...
This data package discusses the geochemistry of vadose zone sediments beneath the single-shell tank ...
The USDOE has initiated an impact assessment of existing vadose zone contamination at the Hanford Si...
This data package discusses the geochemistry of vadose zone sediments beneath the single-shell tank ...
The overall goal of the Tank Farm Vadose Zone Project, led by CH2M HILL Hanford Group, Inc., is to d...