The Movement of a Redox Front Downstream from a Repository For Nuclear Waste

Author:

Neretnieks Ivars1

Affiliation:

1. Royal Institute of Technology (KTH) Department of Chemical Engineering, S-100 44 Stockholm, Sweden

Publisher

Informa UK Limited

Subject

Condensed Matter Physics,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference6 articles.

1. B. ALLARD, H. KIPATSI, and B. TORSTENFELT, “Adsorption of Long-Lived Radionuclides in Clay and Rock, Part 2,” KBS Technical Report No. 98, Stockholm (1978).

2. C. SKAGIUS, G. SVEDBERG, and E NERETNIEKS, “A Study of Strontium and Cesium Sorption on Granite,” Report No. 4.26, National Council for Radioactive Waste, PRAV, Stockholm, Sweden (1981).

3. Permeability of granite under high pressure

4. H. C. HEARD, D. TRIMMER, A. DUBA, and B. BONNER, “Permeability of Generic Repository Rocks at Simulated In Situ Conditions,” UCRL-82609, Lawrence Livermore National Laboratory (1979).

5. Fixed-Bed Adsorption Kinetics with Pore Diffusion Control

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2. Release of uranium from rock matrix—a record of glacial meltwater intrusions?;Journal of Contaminant Hydrology;2003-03

3. Contaminant retardation in fractured shales: matrix diffusion and redox front entrapment;Journal of Contaminant Hydrology;1996-02

4. Movement of a Redox Front around a Repository for High-Level Nuclear Waste;Nuclear Technology;1995-05

5. Movement of the redox front at the Osamu Utsumi uranium mine, Poços de Caldas, Brazil;The Poços De Caldas Project: Natural Analogues of Processes in a Radioactive Waste Repository;1993

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