Chemical durability evaluation of silver phosphate–based glasses designed for the conditioning of radioactive iodine
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference26 articles.
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2. Iodine solubility in a low-activity waste borosilicate glass at 1000°C;Riley;Journal of Nuclear Materials,2014
3. Materials and processes for the effective capture and immobilization of radioiodine: A review;Riley;Journal of Nuclear Materials,2016
4. Vitrification technique of radioiodine waste using AgI-Ag2O-P2O5 glass system, Radioactive Waste Management and Environmental Remediation;Noshita,1999
5. Low-Temperature Sintering Bi-Si-Zn-Oxide Glasses for Use in Either Glass Composite Materials or Core/Shell 129I Waste Forms;Garino;Journal of the American Ceramic Society,2011
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1. Iodine dissolution mechanisms in high-pressure aluminoborosilicate glasses and their relationship to oxygen speciation;Journal of Materials Chemistry A;2023
2. Review of recent developments in iodine wasteform production;Frontiers in Chemistry;2022-12-23
3. Predicting iodine solubility at high pressure in borosilicate nuclear waste glasses using optical basicity: an experimental study;Journal of Materials Science;2022-09
4. Solid sorbents for gaseous iodine capture and their conversion into stable waste forms;Journal of Nuclear Materials;2022-05
5. Silver-phosphate glass matrix for iodine conditioning: From sorbent design to vitrification;Journal of Nuclear Materials;2022-01
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