Geochemistry of soil radionuclides
"Recurring concerns about the environmental fate and potential health impacts of radionuclides continue to focus interest on understanding the mechanisms controlling their transport in soils and their biological availability. This work builds on both basic science and empirical engineering studies to provide a mechanistic approach to facilitate risk assessment and cost-effective remediation procedures. The authors highlight theories and technologies developed in understanding the fate of radionuclides in soils, groundwater and in potential nuclear waste repositories."
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Introduction to Properties Sources and Characteristics
Geochemical Interactions of Actinides in the Environment
Geochemical Speciation of Radionuclides in Soil and Solution
6 other sections not shown
acid Acta actinide adsorption adsorption data anions apatite approach aqueous aquifer atoms behavior Brady calculations carbonate Chem chemical chemistry Civilian Radioactive Waste clay minerals coefficients colloid-facilitated colloids concentration contaminant Cosmochim Cr(VI Cygan Davis decay Department of Energy dionuclides disposal effects electron Environ environmental equilibrated experimental data Fe(II ferrihydrite forcefield GC modeling geochemical geochemistry goethite groundwater hematite Honeyman Hydrotalcite hydroxide immobile interactions isotopes kaolinite Kd values kinetics Koongarra metal mineral surfaces Molecular dynamics montmorillonite National Laboratory natural Np(V nuclear waste Operating Contractor oxidation Pabalan parameters particles pH range phase plume length potential predicted processes Pu(IV Pu(V Radioactive Waste radionuclide transport radionuclides reactions redox repository samples schist simulation Soil Radionuclides solid solubility solution sorbed sorp sorption speciation stability studies subsurface surface area Surface complexation modeling Table Technol tion tritium Turner U.S. Department U.S. Nuclear U(VI UMTRA uranium uranyl Yucca Mountain Zachara