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Materials and processes for the effective capture and immobilization of radioiodine: A review

Journal of Nuclear Materials · 2015 · Vol. 470 · pp. 307–326
Brian J. RileyJohn D. ViennaDenis M. StrachanJohn S. McCloyJames Jerden

Abstract

In this study, the immobilization of radioiodine produced from reprocessing used nuclear fuel is a growing priority for research and development of nuclear waste forms. This review provides a comprehensive summary of the current issues surrounding processing and containment of 129I, the isotope of greatest concern due to its long half-life of 1.6 × 107 y and potential incorporation into the human body. Strategies for disposal of radioiodine, captured by both wet scrubbing and solid sorbents, are discussed, as well as potential iodine waste streams for insertion into an immobilization process. Next, consideration of direct disposal of salts, incorporation into glasses, ceramics, cements, and other phases is discussed. The bulk of the review is devoted to an assessment of various sorbents for iodine and of waste forms described in the literature, particularly inorganic minerals, ceramics, and glasses. This review also contains recommendations for future research needed to address radioiodine immobilization materials and processes.

Nuclear materials and radiation effectsRadioactive element chemistry and processingNuclear Materials and PropertiesRadioactive wasteWaste managementIodineRadiochemistryEnvironmental scienceRadioactive iodineData scrubbingChemistryMaterials scienceMetallurgy

Funding

  • Office of Nuclear Energy
  • Nuclear Energy University Program
Citations
645
FWCI
10.22
field-weighted impact
References
216
Percentile
99%
vs. same field & year
Citations per year
References
Lange's handbook of chemistry
Choice Reviews Online · 1992 · 7,155 citations
Exceptional chemical and thermal stability of zeolitic imidazolate frameworks
Proceedings of the National Academy of Sciences · 2006 · 7,256 citations
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