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Cesium extraction from a novel chemical decontamination process solvent using magnetic microparticles.

Journal Article · · Sep. Sci. Technol.
The chemical, 1-hydroxyethane-1,1-diphosphonic acid (HEDPA), has been the subject of recent publications and patents regarding decontamination and decommissioning applications, and its superiority as a decontamination agent has been highlighted in various field demonstrations. To recycle the aqueous HEDPA solvent and/or facilitate waste formation, it would be advantageous to remove dissolved radionuclides that originated from the contaminated surfaces. Cesium isotopes ({sup 137, 135}Cs) comprise the vast majority of radioactivity found in potential applications at nuclear power facilities. The present study evaluated magnetic microparticles containing embedded silicotitanate powders for uptake of {sup 137}Cs from HEDPA solution. Results indicate that the kinetics are rapid, reaching {approx}95% of equilibrium within 10 min. The distribution coefficient (K{sub d}) was between 3000 and 10,000 mL/g (90-98% {sup 137}Cs removed) depending on particle mass-to-solution volume ratios. The excellent sorption of {sup 137}Cs indicates that particle batches may be reused many times without a reduction in extraction efficiency. However, particle degradation and magnetic susceptibility reduction may be a problem due to the dissolution of the magnetite component by the diphosphonic acid. This may be overcome by substituting the magnetite component with other ferromagnetic materials such as Ni or Co alloys.
Research Organization:
Argonne National Laboratory (ANL)
Sponsoring Organization:
EM
DOE Contract Number:
AC02-06CH11357
OSTI ID:
949628
Report Number(s):
ANL/CMT/JA-42705
Journal Information:
Sep. Sci. Technol., Journal Name: Sep. Sci. Technol. Journal Issue: 16 ; Dec. 31, 2002 Vol. 37; ISSN 0149-6395; ISSN SSTEDS
Country of Publication:
United States
Language:
ENGLISH

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