Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8210529 | Applied Radiation and Isotopes | 2013 | 6 Pages |
Abstract
For the safety assessment of geological disposal of high-level radioactive waste (HLW), the migration of Eu(III) through compacted bentonite-sand mixtures was measured under expected repository conditions. Under the evaluated conditions, advection and dispersion is the dominant migration mechanism. The role of sorption on the retardation of migration was also evaluated. The hydraulic conductivities of compacted bentonite-sand mixtures were K=2.07Ã10â10-5.23Ã10â10Â cm/s, The sorption and diffusion of Eu(III) were examined using a flexible wall permeameter for a solute concentration of 2.0Ã10â5Â mol/l. The effective diffusion coefficients and apparent diffusion coefficients of Eu(III) in compacted bentonite-sand mixtures were in the range of 1.62Ã10-12-4.87Ã10-12Â m2/s, 1.44Ã10-14-9.41Ã10-14Â m2/s, respectively, which has a very important significance to forecast the relationship between migration length of Eu(III) in buffer/backfill material and time and provide a reference for the design of buffer/backfill material for HLW disposal in China.
Keywords
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Radiation
Authors
Lang Zhou, Huyuan Zhang, Ming Yan, Hang Chen, Ming Zhang,