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Anatase and rutile are the predominant phases in titanium dioxide. In many cases, rutile stable phase is the desired product material, but at low temperatures methods of synthesis (aqueous route) produce metastable anatase as a major product that reverts to rutile only when heated up to 1000°C. Calcination for obtaining rutile phase is the greatest energy demanding step for titanium dioxide production by the sulphate process, and is responsible for almost 60% of total energy consumption. In this work, an innovative technique involving a sonication pre-treatment in acid medium was developed to change particle reactivity and accelerate the anatase-to-rutile transformation. Scanning electron micrographs and surface area measurements confirmed the alteration in texture and porosity of the powders. Results indicate that it is possible to obtain 100% of rutile phase at temperatures as low as 430°C.
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Tom
Strony
1067--1076
Opis fizyczny
Bibliogr. 16 poz.
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autor
autor
autor
- Instituto de Engenharia Nuclear IEN/CNEN Caixa Postal 68505, Cidade UniversitáriaRio de Janeiro RJ - CEP: 21941-972, Brasil
Bibliografia
- [1] HU Y., TSAI H.L., HUANG C.L., Mater. Sci. Eng., A344 (2003), 209.
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- [9] ZHANG Y.H., RELLER A., Mater. Sci. Eng. C, 19 (2002), 323.
- [10] GOLDSCHMIDT V. M., U.S. Patent 1,348,129, 1920.
- [11] HUGHES W., U.S. Patent 2253551, 1967.
- [12] YOGANARASIMHAN S.R., RAO C.N.R., Mechanism of Crystal Structure Transformation, Trans. Faraday Soc., London, 1962.
- [13] BLECHTA V., LAVICKA M., BLECHTA Z., J. Oil. Col. Chem. Assoc., 50 (1967), 495.
- [14] HA P.S., YOUN H.J., JUNG H.S., HONG K.S., PARK Y.H., KO K.H., J. Coll. Int. Sci., 223 (2000), 16.
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- [16] GRIBB A.A., BANFIELD J.F., Am. Miner., 82 (1997), 717.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0012-0014