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Title: Strontium Speciation During Reactin of Kaolinite with Simulated Tank-Waste Leachate: Bulk and Microfocused EXAFS Analysis

Journal Article · · Environ. Sci. Tech.
DOI:https://doi.org/10.1021/es051869q· OSTI ID:914188

Radioactive strontium ({sup 90}Sr) is an important constituent of the complex wastes from past nuclear weapons production and has been stored in underground tanks at U.S. DOE sites (e.g., Hanford, WA). Using bulk and microfocused EXAFS spectroscopy, we examined temporal changes in solid-phase Sr speciation in kaolinite samples reacted for 1-369 d with high-pH, high ionic strength synthetic tank-waste leachate containing Sr{sup 2+} and Cs{sup +} at 10{sup -3} mol kg{sup -1}. Analyses of bulk EXAFS spectra showed that Sr initially forms a precipitate by 7 d with a local structure similar to SrCO{sub 3}(s). At 33 d, microfocused EXAFS of individual particles in one sample revealed a mixture of hydrated and dehydrated Sr associated with neoformed sodalite-type phases. At aging times of 93 d and longer, bulk EXAFS spectra and supporting characterizations indicated nonexchangeable Sr with a local structure consistent with incorporation into increasingly crystalline aluminosilicate particles, particularly sodalite. These experimental studies suggest that irreversible trapping of radionuclides occurs if they are present during the formation and aging of feldspathoid alteration products of local Si-bearing sediment minerals. This may serve as an effective contaminant sequestration mechanism at sites such as Hanford.

Research Organization:
Brookhaven National Lab. (BNL), Upton, NY (United States). National Synchrotron Light Source
Sponsoring Organization:
Doe - Office Of Science
DOE Contract Number:
DE-AC02-98CH10886
OSTI ID:
914188
Report Number(s):
BNL-78756-2007-JA; ESTHAG; TRN: US200804%%584
Journal Information:
Environ. Sci. Tech., Vol. 40; ISSN 0013-936X
Country of Publication:
United States
Language:
English