Modelling the effect of diffusion into the rock matrix on radionuclide migration
Creators
- 1. UKAEA Atomic Energy Research Establishment, Harwell. Theoretical Physics Div.
- 2. UKAEA Atomic Energy Research Establishment, Harwell. Chemical Technology Div.
Description
Diffusion into the rock matrix is potentially an important retardation mechanism for nuclides leached from an underground radioactive waste repository in a fractured hard rock. Models of this diffusion process are discussed and incorporated into three-dimensional radionuclide migration models. Simple solutions to these models are derived for two regions: the region near to the repository where the nuclide is diffusing into effectively infinite rock, and that much further downstream where the concentrations in the rock and fractures are almost in equilibrium. These solutions are used to evaluate the possible impact on migration. It is shown that retardation factors in excess of 100 and reductions in the peak concentration at a given point on the flow path by three or four orders of magnitude are possibe for non-sorbed ions, which would otherwise be carried by the flow and not retarded at all. (author)
Additional details
Publishing Information
- Journal Title
- Prog. Nucl. Energy
- Journal Volume
- 12
- Journal Issue
- 1
- Series
- Prog. Nucl. Energy.
- Journal Page Range
- 85-117
- ISSN
- 0149-1970
INIS
- Country of Publication
- United Kingdom
- Country of Input or Organization
- United Kingdom
- INIS RN
- 15010660
- Subject category
- S12: MANAGEMENT OF RADIOACTIVE WASTES, AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES;
- Descriptors DEI
- DIFFUSION; FRACTURES; GROUND WATER; HIGH-LEVEL RADIOACTIVE WASTES; MATHEMATICAL MODELS; RADIOACTIVE WASTE DISPOSAL; RADIONUCLIDE MIGRATION; REVIEWS; ROCKS; UNDERGROUND DISPOSAL; WASTE-ROCK INTERACTIONS
- Descriptors DEC
- DOCUMENT TYPES; ENVIRONMENTAL TRANSPORT; FAILURES; HYDROGEN COMPOUNDS; MANAGEMENT; MASS TRANSFER; MATERIALS; OXYGEN COMPOUNDS; RADIOACTIVE MATERIALS; RADIOACTIVE WASTES; WASTE DISPOSAL; WASTE MANAGEMENT; WASTES; WATER