Theoretical Analysis of Colloid-facilitated Transport of Radionuclides by Groundwater
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-642-11432-8_8.pdf
Reference77 articles.
1. Airey PL (1986) Radionuclide migration around uranium ore bodies in the Alligator Rivers region of the northern territory of Australia – analogue of radioactive waste repositories – a review. Chem Geol, 55:255–268
2. Amme M, Aldave de las Heras L, Betti M, Lang H, Stöckl M (2004) Effects of colloidal and dissolved silica on the dissolution of UO2 nuclear fuel in groundwater leaching tests. J Radioanalyt Nucl Chem, 261:327–336
3. Aoki H, Kurosaki Y, Anzai H (1979) Study on the tubular pinch effect in a pipe flow. Bull. Jpn Soc Mech Eng, 22:206–212
4. Artinger R, Kienzler B, Schüssler W, Kim JI (1998) Effects of humic substances on the 241Am migration in a sandy aquifer: column experiments with Gorleben ground-water/sediment systems. J Contamin Hydrol, 35:261–275
5. Bates JK, Bradley JP, Teetsov A, Bradley CR, Buchholtz ten Brink M (1992) Colloid formation during waste form reaction: Implication for nuclear waste disposal. Science, 256:649–651
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