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Research Article

Effect of Magnesium Oxide Doping on Formation and Hydration of Aluminate

Qiang SONG1Jiao NIE1Yanxin CHEN1( )Yaru HU1Yang DENG2Hui LI1( )
College of Materials and Science and Engineering, Xi′an University of Architecture and Technology, Xi′an 710055, China
Shaanxi Fuping Eco-cement CO., LTD, Weinan 711709, Shaanxi, China
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Abstract

To investigate the occurrence of periclase in clinker aluminate and reveal the hydration mechanism, aluminates were synthesized via MgO doping at various contents. Their structure and hydrates were characterized by scanning electron microscopy, X-ray diffraction and Fourier transform infrared spectroscopy. The results indicate that higher sintering temperature and MgO content improve the formation and stability of C4AF and C12F7. A phase separation occurs in molten aluminum phase. The black phase includes the main minerals like C3A and periclase, while glass and yellow phases both have a low MgO content. The hydration heat of aluminate phase in the first day decreases with the increase of MgO content, indicating that MgO doping decreases the hydration rate of aluminate phase. In addition, the layered double hydroxides with a Mg:Al ratio of 2 or 3 appear in the hydration products of aluminate incorporated with MgO.

CLC number: TQ172 Document code: A Article ID: 0454-5648(2022)11-2855-13

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Journal of the Chinese Ceramic Society
Pages 2855-2867

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Cite this article:
SONG Q, NIE J, CHEN Y, et al. Effect of Magnesium Oxide Doping on Formation and Hydration of Aluminate. Journal of the Chinese Ceramic Society, 2022, 50(11): 2855-2867. https://doi.org/10.14062/j.issn.0454-5648.20220124

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Received: 21 February 2022
Revised: 06 April 2022
Published: 08 October 2022
© 2022 Journal of the Chinese Ceramic Society