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Dependence of Boehmite Thermal Evolution on Its Atom Bond Lengths and Crystallite Size

✍ Scribed by X. Bokhimi; J.A. Toledo-Antonio; M.L. Guzmán-Castillo; B. Mar-Mar; F. Hernández-Beltrán; J. Navarrete


Publisher
Elsevier Science
Year
2001
Tongue
English
Weight
393 KB
Volume
161
Category
Article
ISSN
0022-4596

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✦ Synopsis


The thermal properties of boehmite with a crystallite size between 1 and 27 nm were analyzed by thermogravimetry and di4erential thermal analysis, and correlated with its crystallography, crystallite morphology, and the atom bond lengths determined by re5ning its crystalline structure with the Rietveld method. Boehmite:s thermal evolution depended on atom bond lengths: the dehydratation temperature was determined by the interaction between an aluminum atom and the oxygen atom of hydroxyl. After dehydratation, the number of hydroxyls in crystals was larger than expected from stoichiometry, because oxygen atoms on crystal surfaces perpendicular to the (020) plane reacted with hydrogen and hydroxyls in environment. The transition temperature from boehmite into -alumina was determined by the hydrogen bond in boehmite. The transformation temperature from transitional aluminas into -Al 2 O 3 also varied with boehmite:s crystallite size; however, it was not determined by the amount of hydroxyls in transitional aluminas, but probably by the aluminum+oxygen bonds in boehmite.

Academic Press


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