Vitreous Materials for Nuclear Waste Immobilisation and IAEA Support Activities.
File(s)Robbins - Ojovan RV1.doc (68.5 KB)
Accepted version
Author(s)
Ojovan, M
Robbins, RA
Type
Journal Article
Abstract
Vitreous materials are the overwhelming world-wide choice for the immobilisation of HLW resulting from nuclear fuel reprocessing due to glass tolerance for the chemical elements found in the waste as well as its inherent stability and durability. Vitrification is a mature technology and has been used for high-level nuclear waste immobilization for more than 50 years. Borosilicate glass is the formulation of choice in most applications although other formulations are also used e.g. phosphate glasses are used to immobilize high level wastes in Russia. The excellent durability of vitrified radioactive waste ensures a high degree of environment protection. Waste vitrification gives high waste volume reduction along with simple and cheap disposal facilities. Although vitrification requires a high initial investment and then operational costs, the overall cost of vitrified radioactive waste is usually lower than alternative options when account is taken of transportation and disposal expenses. Glass has proven to be also a suitable matrix for intermediate and low-level radioactive wastes and is currently used to treat legacy waste in USA, and NPP operational waste in Russia and South Korea. This report is also outlining IAEA activities aiming to support utilisation of vitreous materials for nuclear waste immobilisation.
Date Issued
2017-02-20
Date Acceptance
2017-02-01
Citation
MRS Advances, 2017, 1 (63-64), pp.4201-4206
ISSN
2059-8521
Publisher
Cambridge University Press
Start Page
4201
End Page
4206
Journal / Book Title
MRS Advances
Volume
1
Issue
63-64
Copyright Statement
© 2017 Cambridge University Press and Materials Research Society. This paper has been accepted for publication and will appear in a revised form, subsequent to peer-review and/or editorial input by Materials Research Society and/or Cambridge
University Press, in MRS Advances published by Materials Research Society and Cambridge University
Press. Robbins, R., & Ojovan, M. (2016). Vitreous Materials for Nuclear Waste Immobilisation and IAEA Support Activities. MRS Advances, 1(63-64), 4201-4206. doi:10.1557/adv.2017.209
University Press, in MRS Advances published by Materials Research Society and Cambridge University
Press. Robbins, R., & Ojovan, M. (2016). Vitreous Materials for Nuclear Waste Immobilisation and IAEA Support Activities. MRS Advances, 1(63-64), 4201-4206. doi:10.1557/adv.2017.209
Publication Status
Published
Date Publish Online
2017-02-20