The feasibility of using kaolins activated at T = 550 degrees C to synthesize geopolymers has been assessed, opening the way for utilizing low-grade kaolins containing sulfates. The effects of temperature (in the range 40-90 degrees C) and time (in the range 1-19 h) of curing, as well as of a secondary drying treatment on compressive strength and linear shrinkage of geopolymers have been studied by experimental design technique using a high-quality kaolin as starting material. Geopolymers characterized by high strength (>60 MPa) and low shrinkage (<1%) have been obtained when long curing times are applied at T<65 degrees C, while the oven-drying treatment is demonstrated not to improve geopolymer performances. Geopolymers synthesized starting from an alunite-bearing kaolin activated at 550 degrees C and cured at the conditions suggested by the statistical model showed good compressive strength and shrinkage. All geopolymers have been characterized by thermal analysis, X-ray powder diffraction and infrared spectroscopy.

Geopolymers from low-T activated kaolin: Implications for the use of alunite-bearing raw materials

GASPARINI, ELISA;TARANTINO, SERENA CHIARA;CONTI, MICHELE;BIESUZ, RAFFAELA;GHIGNA, PAOLO;AURICCHIO, FERDINANDO;RICCARDI, MARIA PIA;ZEMA, MICHELE
2015-01-01

Abstract

The feasibility of using kaolins activated at T = 550 degrees C to synthesize geopolymers has been assessed, opening the way for utilizing low-grade kaolins containing sulfates. The effects of temperature (in the range 40-90 degrees C) and time (in the range 1-19 h) of curing, as well as of a secondary drying treatment on compressive strength and linear shrinkage of geopolymers have been studied by experimental design technique using a high-quality kaolin as starting material. Geopolymers characterized by high strength (>60 MPa) and low shrinkage (<1%) have been obtained when long curing times are applied at T<65 degrees C, while the oven-drying treatment is demonstrated not to improve geopolymer performances. Geopolymers synthesized starting from an alunite-bearing kaolin activated at 550 degrees C and cured at the conditions suggested by the statistical model showed good compressive strength and shrinkage. All geopolymers have been characterized by thermal analysis, X-ray powder diffraction and infrared spectroscopy.
2015
The Earth Sciences category includes resources that deal with all aspects of geosciences, including geology, geochemistry, geophysics, mineralogy, meteorology and atmospheric sciences, hydrology, oceanography, petroleum geology, volcanology, seismology, climatology, paleontology, geography, remote sensing, and geodesy.
Esperti anonimi
Inglese
Internazionale
STAMPA
114
530
539
10
Geopolymers; Metakaolin; Compressive strength; Shrinkage; Curing
no
8
info:eu-repo/semantics/article
262
Gasparini, Elisa; Tarantino, SERENA CHIARA; Conti, Michele; Biesuz, Raffaela; Ghigna, Paolo; Auricchio, Ferdinando; Riccardi, MARIA PIA; Zema, Michele...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1105808
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