Title of article :
Effect of elevated temperature on the properties of geopolymer synthesized from calcined ore-dressing tailing of bauxite and ground-granulated blast furnace slag
Author/Authors :
Ye، نويسنده , , Jiayuan and Zhang، نويسنده , , Wensheng and Shi، نويسنده , , Di، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Pages :
8
From page :
41
To page :
48
Abstract :
A geopolymer was prepared using calcined ore-dressing tailing of bauxite and ground-granulated blast furnace slag. To explore the effect on its properties of heating the geopolymer to 1200 °C, the physical evolutions, including the appearance, length, compressive strength and porosity, and the chemical processes involving the decomposition and crystallization of specimens after heating were investigated. After exposure to elevated temperatures up to 1000 °C, the studied geopolymer mortars exhibited the following changes. The linear length initially showed shrinkage, responding to free water loss and gel dehydration, and then, it exhibited expansion, resulting from a volume increase due to the displacive and reconstructive phase transition of quartz in the mortars. The compressive strength of the mortars decreased due to the increasing cracks and porosity arising from the dehydration, dehydroxylation and thermal mismatch between the contracting gels and expanding quartz. Additional conversion of the X-ray amorphous gels, which exhibit excellent thermal stability below 800 °C, into such crystalline phases as calcium aluminum oxide and anorthite (CaAl2(SiO4)2) was found at 1000 °C, resulting in a severe deterioration of strength and a reduction of approximately 40.0 MPa. After exposure to 1200 °C, a strength gain was observed as a result of the densification and self-healing caused by the viscous sintering and the formation of ceramic phases, such as anorthite (sodian, ordered, (Ca, Na)(Al, Si)2Si2O8).
Keywords :
Geopolymer , Ore-dressing tailing , Slag , elevated temperature , Linear length , Strength , porosity , crystallization , Bauxite
Journal title :
Construction and Building Materials
Serial Year :
2014
Journal title :
Construction and Building Materials
Record number :
1637943
Link To Document :
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