4.7 Article

Aluminum hydroxide gel characterization within a calcium acuminate cement paste by combined Pair Distribution Function and Rietveld analyses

Journal

CEMENT AND CONCRETE RESEARCH
Volume 96, Issue -, Pages 1-12

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.cemconres.2017.02.025

Keywords

X-ray diffraction (B); Calcium aluminate cement (D); Hydrogarnet (D); Amorphous material (A); Aluminum hydroxide gel (D)

Funding

  1. Spanish MINECO [BIA2014-57658-C2-1-R, BIA2014-57658-C2-2-R]
  2. FEDER
  3. CNPQ [206983/2014-0/SWE]

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There are many commercially important multiphase materials which contain amorphous phases, such as cement pastes, porcelains, glass-ceramics or pharmaceutical compounds. However, the analysis of amorphous phase(s) within cement matrices that contain high amounts of crystalline phase(s) is a challenge. Here, we report measurements of total scattering data quantitatively analyzed by Pair Distribution Function (PDF) minimization and Rietveld methodology to determine phase compositions including both amorphous and nanocrystalline phase contents in cement-related samples. Furthermore, laboratory techniques were used to complement the sample characterization. In addition to five reference materials, the main phase of calcium aluminate cements, CaA(12)O(4) hydrated at 50 degrees C to yield crystalline hydrogarnet, Ca3Al2(OH)(12), (43 wt%) and nanocrystalline aluminum hydroxide gel, Al(OH)(3)center dot 0.1H(2)O (50 wt%) was also investigated. The PDF analyses revealed that the hydroxide gel has a gibbsite local structure with an average particle size close to 5 nm. PDF and Rietveld quantitative phase analysis results fully agree. (C) 2017 Elsevier Ltd. All rights reserved.

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