The project is investigating the adsorption/desorption process of 90Sr in coarse-textured pristine and contaminated Hanford sediment with the goal to define a generalized reaction-based model for use in reactive transport calculations. While it is known that sorbed 90Sr exists in an ion exchangeable state, the mass action relationships that control the solid-liquid distribution and the mineral phases responsible for adsorption have not been defined. Many coarse-textured Hanford sediment display significant sorptivity for 90Sr, but contain few if any fines that may harbor phyllosilicates with permanent negative charge and associated cation exchange capacity. Moreover, it is not known whether the adsorption-desorption process exhibits time de...
'Strontium is significantly more mobile than other hazardous radioactive metals. Its partitioning be...
During the FY96-FY99 funding cycle we examined the uptake of aqueous strontium onto goethite, kaolin...
The high-yield fission product 137Cs is a major contaminant of the vadose zone at Hanford and other ...
90Sr desorption process will be quantified in coarse-textured Hanford sediments contaminated by diff...
Nuclear waste that bore 90Sr2+ was accidentally leaked into the vadose zone at the Hanford site, and...
Nuclear waste that bore 90Sr2+ was accidentally leaked into the vadose zone at the Hanford site, and...
The Hanford subsurface has become contaminated with highly alkaline, radioactive waste generated as ...
Hanford sediments impacted by hyperalkaline high level radioactive waste have undergone incongruent ...
Our work is aimed at developing a predictive-mechanistic understanding of the coupling between miner...
Experimental research will determine how the sorption chemistry of Cs on Hanford vadose zone sedimen...
The desorption of 137Cs+ was investigated on sediments from the United States Hanford site. Pristine...
The goal of our project is a predictive-mechanistic understanding of the coupling between mineral we...
The desorption of 137Cs+ was investigated on sediments from the United States Hanford site. Pristine...
In the previous reporting period, we have clarified the qualitative mineral transformation pathways ...
Since the late 1950s, leaks from 67 single-shell tanks at the Hanford Site have released about 1 mil...
'Strontium is significantly more mobile than other hazardous radioactive metals. Its partitioning be...
During the FY96-FY99 funding cycle we examined the uptake of aqueous strontium onto goethite, kaolin...
The high-yield fission product 137Cs is a major contaminant of the vadose zone at Hanford and other ...
90Sr desorption process will be quantified in coarse-textured Hanford sediments contaminated by diff...
Nuclear waste that bore 90Sr2+ was accidentally leaked into the vadose zone at the Hanford site, and...
Nuclear waste that bore 90Sr2+ was accidentally leaked into the vadose zone at the Hanford site, and...
The Hanford subsurface has become contaminated with highly alkaline, radioactive waste generated as ...
Hanford sediments impacted by hyperalkaline high level radioactive waste have undergone incongruent ...
Our work is aimed at developing a predictive-mechanistic understanding of the coupling between miner...
Experimental research will determine how the sorption chemistry of Cs on Hanford vadose zone sedimen...
The desorption of 137Cs+ was investigated on sediments from the United States Hanford site. Pristine...
The goal of our project is a predictive-mechanistic understanding of the coupling between mineral we...
The desorption of 137Cs+ was investigated on sediments from the United States Hanford site. Pristine...
In the previous reporting period, we have clarified the qualitative mineral transformation pathways ...
Since the late 1950s, leaks from 67 single-shell tanks at the Hanford Site have released about 1 mil...
'Strontium is significantly more mobile than other hazardous radioactive metals. Its partitioning be...
During the FY96-FY99 funding cycle we examined the uptake of aqueous strontium onto goethite, kaolin...
The high-yield fission product 137Cs is a major contaminant of the vadose zone at Hanford and other ...