Colloid-facilitated transport of 238Pu, 233U and 137Cs through fractured chalk: Laboratory experiments, modelling, and implications for nuclear waste disposal

Author:

Tran Emily,Zavrin Mavrik,Kersting Annie B.,Klein-BenDavid Ofra,Teutsch Nadya,Weisbrod Noam

Funder

Israel Science Foundation

International Atomic Energy Agency

U.S. Department of Energy

PAZY Foundation

Lawrence Livermore National Laboratory

Publisher

Elsevier BV

Subject

Pollution,Waste Management and Disposal,Environmental Chemistry,Environmental Engineering

Reference93 articles.

1. Dispersion stability and electrokinetic properties of intrinsic plutonium colloids: implications for subsurface transport;Abdel-Fattah;Environ. Sci. Technol.,2013

2. Salinity increases mobility of heavy metals in soils;Acosta;Chemosphere,2011

3. Role of inorganic colloids generated in a high-level deep geological repository in the migration of radionuclides: open questions;Alonso;J. Iber. Geol.,2006

4. Effect of sulfate, carbonate, and phosphate on the uranium(VI) sorption behavior onto bentonite;Bachmaf;Radiochim. Acta,2008

5. Colloid-facilitated radionuclide transport in fractured porous rock;Baek;Waste Manag.,1996

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