Title of article
The evolution of strength and crystalline phases for alkali-activated ground blast furnace slag and fly ash-based geopolymers
Author/Authors
Jae Eun Oh، نويسنده , , Paulo J.M. Monteiro، نويسنده , , Ssang Sun Jun، نويسنده , , Sejin Choi، نويسنده , , Simon M. Clark، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
8
From page
189
To page
196
Abstract
The increase in strength and evolution of crystalline phases in inorganic polymer cement, made by the alkali activation of slag, Class C and Class F fly ashes, was followed using compressive strength test and synchrotron X-ray diffraction. In order to increase the crystallinity of the product the reactions were carried out at 80 °C. We found that hydrotalcite formed in both the alkali-activated slag cements and the fly ash-based geopolymers. Hydroxycancrinite, one member of the ABC-6 family of zeolites, was found only in the fly ash geopolymers. Assuming that the predominantly amorphous geopolymer formed under ambient conditions relates to the crystalline phases found when the mixture is cured at high temperature, we propose that the structure of this zeolitic precursor formed in Na-based high alkaline environment can be regarded as a disordered form of the basic building unit of the ABC-6 group of zeolites which includes poly-types such as hydroxycancrinite, hydroxysodalite and chabazite-Na.
Keywords
Alkali-activated cement (D) , X-ray diffraction (B) , Fly ash (D) , Granulated blast furnace slag (D) , Geopolymer (D)
Journal title
CEMENT AND CONCRETE RESEARCH
Serial Year
2010
Journal title
CEMENT AND CONCRETE RESEARCH
Record number
1216716
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