Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7963587 | Journal of Nuclear Materials | 2018 | 25 Pages |
Abstract
A simple method to directly convert Cs-exchanged IONSIV® IE-911 into a ceramic wasteform by hot isostatic pressing (1100 °C/190 MPa/2 hr) is presented. Two major Cs-containing phases, Cs2TiNb6O18 and Cs2ZrSi6O15, and a series of mixed oxides form. The microstructure and phase assemblage of the samples as a function of Cs content were examined using XRD, XRF, SEM and TEM/EDX. The chemical aqueous durability of the materials was investigated using the MCC-1 and PCT-B standard test methods. For HIPed Cs-IONSIV® samples, the MCC-1 normalised release rates of Cs were <1.57 Ã 10â1 g mâ2 dâ1 at 0-28 days, and <3.78 Ã 10â2 g mâ2 dâ1 for PCT-B at 7 days. The low rates are indicative of a safe long-term immobilisation matrix for Cs formed directly from spent IONSIV®. It was also demonstrated that the phase formation can be altered by adding Ti metal due to a controlled redox environment.
Related Topics
Physical Sciences and Engineering
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Nuclear Energy and Engineering
Authors
Tzu-Yu Chen, Ewan R. Maddrell, Neil C. Hyatt, Amy S. Gandy, Martin C. Stennett, Joseph A. Hriljac,