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Yttrium Oxide Freeze-Casts: Target Materials for Radioactive Ion Beams

Highly porous yttrium oxide is fabricated as ion beam target material in order to produce radioactive ion beams via the Isotope Separation On Line (ISOL) method. Freeze casting allows the formation of an aligned pore structure in these target materials to improve the isotope release. Aqueous suspens...

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Autores principales: Kröll, Eva, Vadalà, Miriana, Schell, Juliana, Stegemann, Simon, Ballof, Jochen, Rothe, Sebastian, Lupascu, Doru C
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.3390/ma14112864
http://cds.cern.ch/record/2808719
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author Kröll, Eva
Vadalà, Miriana
Schell, Juliana
Stegemann, Simon
Ballof, Jochen
Rothe, Sebastian
Lupascu, Doru C
author_facet Kröll, Eva
Vadalà, Miriana
Schell, Juliana
Stegemann, Simon
Ballof, Jochen
Rothe, Sebastian
Lupascu, Doru C
author_sort Kröll, Eva
collection CERN
description Highly porous yttrium oxide is fabricated as ion beam target material in order to produce radioactive ion beams via the Isotope Separation On Line (ISOL) method. Freeze casting allows the formation of an aligned pore structure in these target materials to improve the isotope release. Aqueous suspensions containing a solid loading of 10, 15, and 20 vol% were solidified with a unidirectional freeze-casting setup. The pore size and pore structure of the yttrium oxide freeze-casts are highly affected by the amount of solid loading. The porosity ranges from 72 to 84% and the crosslinking between the aligned channels increases with increasing solid loading. Thermal aging of the final target materials shows that an operation temperature of 1400 ◦C for 96 h has no significant effect on the microstructure. Thermo-mechanical calculation results, based on a FLUKA simulation, are compared to measured compressive strength and forecast the mechanical integrity of the target materials during operation. Even though they were developed for the particular purpose of the production of short-lived radioactive isotopes, the yttria freeze-cast scaffolds can serve multiple other purposes, such as catalyst support frameworks or high-temperature fume filters.
id cern-2808719
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling cern-28087192022-11-01T21:13:29Zdoi:10.3390/ma14112864http://cds.cern.ch/record/2808719engKröll, EvaVadalà, MirianaSchell, JulianaStegemann, SimonBallof, JochenRothe, SebastianLupascu, Doru CYttrium Oxide Freeze-Casts: Target Materials for Radioactive Ion BeamsCondensed MatterHighly porous yttrium oxide is fabricated as ion beam target material in order to produce radioactive ion beams via the Isotope Separation On Line (ISOL) method. Freeze casting allows the formation of an aligned pore structure in these target materials to improve the isotope release. Aqueous suspensions containing a solid loading of 10, 15, and 20 vol% were solidified with a unidirectional freeze-casting setup. The pore size and pore structure of the yttrium oxide freeze-casts are highly affected by the amount of solid loading. The porosity ranges from 72 to 84% and the crosslinking between the aligned channels increases with increasing solid loading. Thermal aging of the final target materials shows that an operation temperature of 1400 ◦C for 96 h has no significant effect on the microstructure. Thermo-mechanical calculation results, based on a FLUKA simulation, are compared to measured compressive strength and forecast the mechanical integrity of the target materials during operation. Even though they were developed for the particular purpose of the production of short-lived radioactive isotopes, the yttria freeze-cast scaffolds can serve multiple other purposes, such as catalyst support frameworks or high-temperature fume filters.oai:cds.cern.ch:28087192021
spellingShingle Condensed Matter
Kröll, Eva
Vadalà, Miriana
Schell, Juliana
Stegemann, Simon
Ballof, Jochen
Rothe, Sebastian
Lupascu, Doru C
Yttrium Oxide Freeze-Casts: Target Materials for Radioactive Ion Beams
title Yttrium Oxide Freeze-Casts: Target Materials for Radioactive Ion Beams
title_full Yttrium Oxide Freeze-Casts: Target Materials for Radioactive Ion Beams
title_fullStr Yttrium Oxide Freeze-Casts: Target Materials for Radioactive Ion Beams
title_full_unstemmed Yttrium Oxide Freeze-Casts: Target Materials for Radioactive Ion Beams
title_short Yttrium Oxide Freeze-Casts: Target Materials for Radioactive Ion Beams
title_sort yttrium oxide freeze-casts: target materials for radioactive ion beams
topic Condensed Matter
url https://dx.doi.org/10.3390/ma14112864
http://cds.cern.ch/record/2808719
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AT ballofjochen yttriumoxidefreezecaststargetmaterialsforradioactiveionbeams
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