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Sintering kinetics of nanometric calcium oxide in vacuum atmosphere

A recent application for nanometric CaO powder is its use as a spallation target material for the production of isotope beams at CERN. The stability of the nanostructure at high operation temperatures is a crucial feature to provide stable and improved isotope release rates. Prior to operation, sint...

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Detalles Bibliográficos
Autores principales: Ramos, J P, Fernandes, C M, Stora, T, Senos, A M R
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.ceramint.2015.03.007
http://cds.cern.ch/record/2269077
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author Ramos, J P
Fernandes, C M
Stora, T
Senos, A M R
author_facet Ramos, J P
Fernandes, C M
Stora, T
Senos, A M R
author_sort Ramos, J P
collection CERN
description A recent application for nanometric CaO powder is its use as a spallation target material for the production of isotope beams at CERN. The stability of the nanostructure at high operation temperatures is a crucial feature to provide stable and improved isotope release rates. Prior to operation, sintering studies under thermal conditions similar to those of the target operation are required to establish the microstructural evolution due to coarsening and densification processes. This knowledge enables the identification of the limiting temperatures for the target operation, ensuring a stable nanostructure for higher and constant isotope release rates. In this study, nanometric CaO powder with 58 $m^2 g^{−1}$ of specific surface area was obtained from vacuum decomposition of calcium carbonate at 800 °C. The microstructure evolution of porous powder compacts was investigated under vacuum atmosphere, from 1000 to 1250 °C, for holding times from 3 to 600 min. For temperatures higher than 1000 °C, a significant surface area reduction was observed, accompanied by porosity decrease. The morphological analysis of the pore evolution revealed a differential sintering of the porous compacts, mainly occurring inside the aggregates. The kinetic analysis of the surface area reduction pointed to aggregate shrinkage controlled by volume diffusion with surface diffusion as an underlying mechanism for lower temperatures.
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language eng
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spelling oai-inspirehep.net-16048492019-09-30T06:29:59Zdoi:10.1016/j.ceramint.2015.03.007http://cds.cern.ch/record/2269077engRamos, J PFernandes, C MStora, TSenos, A M RSintering kinetics of nanometric calcium oxide in vacuum atmospherePhysics in GeneralA recent application for nanometric CaO powder is its use as a spallation target material for the production of isotope beams at CERN. The stability of the nanostructure at high operation temperatures is a crucial feature to provide stable and improved isotope release rates. Prior to operation, sintering studies under thermal conditions similar to those of the target operation are required to establish the microstructural evolution due to coarsening and densification processes. This knowledge enables the identification of the limiting temperatures for the target operation, ensuring a stable nanostructure for higher and constant isotope release rates. In this study, nanometric CaO powder with 58 $m^2 g^{−1}$ of specific surface area was obtained from vacuum decomposition of calcium carbonate at 800 °C. The microstructure evolution of porous powder compacts was investigated under vacuum atmosphere, from 1000 to 1250 °C, for holding times from 3 to 600 min. For temperatures higher than 1000 °C, a significant surface area reduction was observed, accompanied by porosity decrease. The morphological analysis of the pore evolution revealed a differential sintering of the porous compacts, mainly occurring inside the aggregates. The kinetic analysis of the surface area reduction pointed to aggregate shrinkage controlled by volume diffusion with surface diffusion as an underlying mechanism for lower temperatures.oai:inspirehep.net:16048492015
spellingShingle Physics in General
Ramos, J P
Fernandes, C M
Stora, T
Senos, A M R
Sintering kinetics of nanometric calcium oxide in vacuum atmosphere
title Sintering kinetics of nanometric calcium oxide in vacuum atmosphere
title_full Sintering kinetics of nanometric calcium oxide in vacuum atmosphere
title_fullStr Sintering kinetics of nanometric calcium oxide in vacuum atmosphere
title_full_unstemmed Sintering kinetics of nanometric calcium oxide in vacuum atmosphere
title_short Sintering kinetics of nanometric calcium oxide in vacuum atmosphere
title_sort sintering kinetics of nanometric calcium oxide in vacuum atmosphere
topic Physics in General
url https://dx.doi.org/10.1016/j.ceramint.2015.03.007
http://cds.cern.ch/record/2269077
work_keys_str_mv AT ramosjp sinteringkineticsofnanometriccalciumoxideinvacuumatmosphere
AT fernandescm sinteringkineticsofnanometriccalciumoxideinvacuumatmosphere
AT storat sinteringkineticsofnanometriccalciumoxideinvacuumatmosphere
AT senosamr sinteringkineticsofnanometriccalciumoxideinvacuumatmosphere