
doi: 10.2172/1033091 , 10.2172/940230
The objective of this investigation was to initiate numerous sets of concrete-soil half-cell tests to quantify 1) diffusion of I and Tc from concrete into uncontaminated soil after 1 and 2 years, 2) I and Re (set 1) and Tc (set 2) diffusion from fractured concrete into uncontaminated soil, and 3) evaluate the moisture distribution profile within the sediment half-cell. These half-cells will be section in FY2009 and FY2010. Additionally, 1) concrete-soil half-cells initiated during FY2007 using fractured prepared with and without metallic iron, half of which were carbonated using carbonated, were sectioned to evaluate the diffusion of I and Re in the concrete part of the half-cell under unsaturated conditions (4%, 7%, and 15% by wt moisture content), 2) concrete-soil half cells containing Tc were sectioned to measure the diffusion profile in the soil half-cell unsaturated conditions (4%, 7%, and 15% by wt moisture content), and 3) solubility measurements of uranium solid phases were completed under concrete porewater conditions. The results of these tests are presented.
Aging, Iron, Waste Forms, 12 Management Of Radioactive Wastes, Precipitation, Distribution, Diffusion, Sediments, Ground Water, Radionuclide Migration, Concretes, Wastes, Moisture, Radioisotopes, And Non-Radioactive Wastes From Nuclear Facilities, Technetium, Rhenium, Retention, Solubility, Cements, Sorption, Soils, Uranium, Tanks, Iodine
Aging, Iron, Waste Forms, 12 Management Of Radioactive Wastes, Precipitation, Distribution, Diffusion, Sediments, Ground Water, Radionuclide Migration, Concretes, Wastes, Moisture, Radioisotopes, And Non-Radioactive Wastes From Nuclear Facilities, Technetium, Rhenium, Retention, Solubility, Cements, Sorption, Soils, Uranium, Tanks, Iodine
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