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Alteration kinetics of the glass-ceramic zirconolite and role of the alteration film – Comparison with the SON68 glass
The glass-ceramic zirconolite is being considered for specific conditioning of plutonium or the minor actinides. The actinides are distributed throughout the zirconolite crystals and the residual glass phase. Since zirconolite alteration is extremely limited, actinide release from the glass-ceramic...
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Published in: | Journal of nuclear materials 2007-06, Vol.366 (1), p.277-287 |
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container_title | Journal of nuclear materials |
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creator | Martin, C. Ribet, I. Frugier, P. Gin, S. |
description | The glass-ceramic zirconolite is being considered for specific conditioning of plutonium or the minor actinides. The actinides are distributed throughout the zirconolite crystals and the residual glass phase. Since zirconolite alteration is extremely limited, actinide release from the glass-ceramic material is mainly attributable to alteration of the residual glass. Specimens corresponding to the residual glass phase alone were therefore altered under different conditions to compare their kinetics with the one of the SON68 glass (inactive R7T7 type glass). Glass-ceramic zirconolite presents a more important rate decrease occuring more rapidly and that induces a quantity of glass altered at least 10 times as small as for SON68 glass. This slowdown of the alteration rate is attributed to the formation of an alteration film that has been the subject of a specific study. We have in particular identified a dense phase enriched in titanium and neodymium that probably influences deeply the kinetics. |
doi_str_mv | 10.1016/j.jnucmat.2007.02.002 |
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The actinides are distributed throughout the zirconolite crystals and the residual glass phase. Since zirconolite alteration is extremely limited, actinide release from the glass-ceramic material is mainly attributable to alteration of the residual glass. Specimens corresponding to the residual glass phase alone were therefore altered under different conditions to compare their kinetics with the one of the SON68 glass (inactive R7T7 type glass). Glass-ceramic zirconolite presents a more important rate decrease occuring more rapidly and that induces a quantity of glass altered at least 10 times as small as for SON68 glass. This slowdown of the alteration rate is attributed to the formation of an alteration film that has been the subject of a specific study. 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The actinides are distributed throughout the zirconolite crystals and the residual glass phase. Since zirconolite alteration is extremely limited, actinide release from the glass-ceramic material is mainly attributable to alteration of the residual glass. Specimens corresponding to the residual glass phase alone were therefore altered under different conditions to compare their kinetics with the one of the SON68 glass (inactive R7T7 type glass). Glass-ceramic zirconolite presents a more important rate decrease occuring more rapidly and that induces a quantity of glass altered at least 10 times as small as for SON68 glass. This slowdown of the alteration rate is attributed to the formation of an alteration film that has been the subject of a specific study. We have in particular identified a dense phase enriched in titanium and neodymium that probably influences deeply the kinetics.</description><subject>Applied sciences</subject><subject>Energy</subject><subject>Exact sciences and technology</subject><subject>Fuels</subject><subject>Nuclear fuels</subject><subject>Preparation and processing of nuclear fuels</subject><issn>0022-3115</issn><issn>1873-4820</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2007</creationdate><recordtype>article</recordtype><recordid>eNqFkU2O1DAQhS0EEs3AEZC8gV1C2YkTe4VGLf6kEbMA1pZTqTBunLix3fytuAM35CRkphvNclYlVX31nvQeY08F1AJE92JX75YDzq7UEqCvQdYA8h7bCN03Vasl3GebdSOrRgj1kD3KeQcAyoDasB_noVByxceFf_ELFY-Zx4mXK-Kfg8u5wvU8e-S_fMK4xOALcbeMPMVA_0l3KzL5MPO_v__wbZz3Lvm87r77cnXDfbh83-mj7mP2YHIh05PTPGOfXr_6uH1bXVy-ebc9v6iwBVEq7XrqBQ0jEOKgWzVMatRtg0NroO-7oTcCHBhp0JnOGNVNMKk1lcEJ1w66OWPPj7r7FL8eKBc7-4wUglsoHrKVRjemAXk3CFL1phErqI4gpphzosnuk59d-mkF2OtC7M6eCrHXhViQFm4Mnp0MXEYXpuQW9Pn2WWuhtGlW7uWRozWWb56SzehpQRp9Iix2jP4Op3-1M6WI</recordid><startdate>20070630</startdate><enddate>20070630</enddate><creator>Martin, C.</creator><creator>Ribet, I.</creator><creator>Frugier, P.</creator><creator>Gin, S.</creator><general>Elsevier B.V</general><general>Elsevier</general><scope>IQODW</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7ST</scope><scope>C1K</scope><scope>SOI</scope><scope>7SR</scope><scope>7TB</scope><scope>7U5</scope><scope>8BQ</scope><scope>8FD</scope><scope>FR3</scope><scope>JG9</scope><scope>L7M</scope></search><sort><creationdate>20070630</creationdate><title>Alteration kinetics of the glass-ceramic zirconolite and role of the alteration film – Comparison with the SON68 glass</title><author>Martin, C. ; Ribet, I. ; Frugier, P. ; Gin, S.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c401t-8a7e71ebd0eccb845bf5d843cb490776b7910a0929ca969956f0f5016ba1a4b83</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2007</creationdate><topic>Applied sciences</topic><topic>Energy</topic><topic>Exact sciences and technology</topic><topic>Fuels</topic><topic>Nuclear fuels</topic><topic>Preparation and processing of nuclear fuels</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Martin, C.</creatorcontrib><creatorcontrib>Ribet, I.</creatorcontrib><creatorcontrib>Frugier, P.</creatorcontrib><creatorcontrib>Gin, S.</creatorcontrib><collection>Pascal-Francis</collection><collection>CrossRef</collection><collection>Environment Abstracts</collection><collection>Environmental Sciences and Pollution Management</collection><collection>Environment Abstracts</collection><collection>Engineered Materials Abstracts</collection><collection>Mechanical & Transportation Engineering Abstracts</collection><collection>Solid State and Superconductivity Abstracts</collection><collection>METADEX</collection><collection>Technology Research Database</collection><collection>Engineering Research Database</collection><collection>Materials Research Database</collection><collection>Advanced Technologies Database with Aerospace</collection><jtitle>Journal of nuclear materials</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Martin, C.</au><au>Ribet, I.</au><au>Frugier, P.</au><au>Gin, S.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Alteration kinetics of the glass-ceramic zirconolite and role of the alteration film – Comparison with the SON68 glass</atitle><jtitle>Journal of nuclear materials</jtitle><date>2007-06-30</date><risdate>2007</risdate><volume>366</volume><issue>1</issue><spage>277</spage><epage>287</epage><pages>277-287</pages><issn>0022-3115</issn><eissn>1873-4820</eissn><coden>JNUMAM</coden><abstract>The glass-ceramic zirconolite is being considered for specific conditioning of plutonium or the minor actinides. The actinides are distributed throughout the zirconolite crystals and the residual glass phase. Since zirconolite alteration is extremely limited, actinide release from the glass-ceramic material is mainly attributable to alteration of the residual glass. Specimens corresponding to the residual glass phase alone were therefore altered under different conditions to compare their kinetics with the one of the SON68 glass (inactive R7T7 type glass). Glass-ceramic zirconolite presents a more important rate decrease occuring more rapidly and that induces a quantity of glass altered at least 10 times as small as for SON68 glass. This slowdown of the alteration rate is attributed to the formation of an alteration film that has been the subject of a specific study. We have in particular identified a dense phase enriched in titanium and neodymium that probably influences deeply the kinetics.</abstract><cop>Amsterdam</cop><pub>Elsevier B.V</pub><doi>10.1016/j.jnucmat.2007.02.002</doi><tpages>11</tpages></addata></record> |
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source | ScienceDirect Freedom Collection 2022-2024 |
subjects | Applied sciences Energy Exact sciences and technology Fuels Nuclear fuels Preparation and processing of nuclear fuels |
title | Alteration kinetics of the glass-ceramic zirconolite and role of the alteration film – Comparison with the SON68 glass |
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