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Kinetic modelling of the thermal decomposition of ettringite into metaettringite

Authors :
Bernard Guilhot
René Guyonnet
F. Valdivieso
Philippe Grosseau
Jérémie Pourchez
Centre Sciences des Processus Industriels et Naturels (SPIN-ENSMSE)
École des Mines de Saint-Étienne (Mines Saint-Étienne MSE)
Institut Mines-Télécom [Paris] (IMT)-Institut Mines-Télécom [Paris] (IMT)
Département Poudres et Matériaux Multi-Composants (P2MC-ENSMSE)
Institut Mines-Télécom [Paris] (IMT)-Institut Mines-Télécom [Paris] (IMT)-SPIN
Laboratoire des Procédés en Milieux Granulaires (LPMG-EMSE)
Institut Mines-Télécom [Paris] (IMT)-Institut Mines-Télécom [Paris] (IMT)-Centre National de la Recherche Scientifique (CNRS)
Département Procédés et évolution des systèmes avec solides (ProcESS-ENSMSE)
Source :
Cement and Concrete Research, Cement and Concrete Research, Elsevier, 2006, 36 (11), pp.2054-2060. ⟨10.1016/j.cemconres.2006.06.007⟩
Publication Year :
2006
Publisher :
Elsevier BV, 2006.

Abstract

International audience; Despite recent insights into thermal stability of ettringite and structural changes during decomposition, a lack of knowledge on nucleation and growth mechanisms of metaettringite remained. Therefore, a better understanding of the kinetic modelling of this heterogeneous reaction was proposed. Thanks to an experimental approach allowing to check the validity of kinetic assumptions (rate-determining step, expression of the rate as d alpha/dt=k f(alpha)...), a good agreement was found between the calculated and experimental alpha vs. t and d alpha/dt vs. t kinetic curves. The reaction area of the region in which the rate-limiting step occurs was also elucidated. Finally, we demonstrated that the rate-limiting step of the growth process follows an Arrhenius law in non-isothermal conditions.

Details

ISSN :
00088846
Volume :
36
Database :
OpenAIRE
Journal :
Cement and Concrete Research
Accession number :
edsair.doi.dedup.....863631b26b4847f66f96f820b5c73d18