Nanoparticles and their influence on radionuclide mobility in deep geological formations

Author:

Schäfer Thorsten,Huber Florian,Seher Holger,Missana Tiziana,Alonso Ursula,Kumke Michael,Eidner Sascha,Claret Francis,Enzmann Frieder

Publisher

Elsevier BV

Subject

Geochemistry and Petrology,Pollution,Environmental Chemistry

Reference178 articles.

1. Albarran, N., Missana, T., Alonso, U., Garcia-Gutierrez, M., Lopez-Torrubia, T., 2009. Dynamic study of bentonite colloid retention in a smooth granite fracture under unfavorable electrostatic conditions. In: Buckau, G., Kienzler, B., Duro, L., Montoya, V., Delos, A. (Eds.), 4th Ann. Workshop Proc. of Integrated Project “Fundamental Processes of Radionuclide Migration” – 6th EC FP IP FUNMIG, FZKA Report 7461, pp. 421–428.

2. Bentonite colloid diffusion through the host rock of a deep geological repository;Alonso;Phys. Chem. Earth,2007

3. Colloid diffusion in crystalline rock: an experimental methodology to measure diffusion coefficients and evaluate colloid size dependence;Alonso;Earth Planet Sci. Lett.,2007

4. Alonso, U., Missana, T., Garcia-Gutierrez, M., 2008. Experimental approach to study the bentonite colloid generation source term in different geochemical conditions. In: Buckau, G., Kienzler, B., Duro, L., Montoya, V., Delos, A. (Eds.), 3rd Ann. Workshop Proc. of IP FUNMIG, NDA Report. Nuclear Decommissioning Authority (NDA), Edinburgh, Scotland, pp. 329–336.

5. Quantification of Au nanoparticles retention on a heterogeneous rock surface;Alonso;Colloids Surf. A,2009

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