4.6 Article

Preparation and Properties of Alkali Activated Metakaolin-Based Geopolymer

Journal

MATERIALS
Volume 9, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/ma9090767

Keywords

alkali activated; geopolymer; metakaolin; curing condition; thermal insulation

Funding

  1. Non-Profit Industry Research Special Funds Program of the Ministry of Water Resources of China [201301023]
  2. Chinese Hydraulic Engineering Society
  3. Changjiang River Scientific Research Institute [CKSF2016001/CL]
  4. National Natural Science Foundation of China [51309018]
  5. Innovation Team of Changjiang River Scientific Research Institute

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The effective activation and utilization of metakaolin as an alkali activated geopolymer precursor and its use in concrete surface protection is of great interest. In this paper, the formula of alkali activated metakaolin-based geopolymers was studied using an orthogonal experimental design. It was found that the optimal geopolymer was prepared with metakaolin, sodium hydroxide, sodium silicate and water, with the molar ratio of SiO2:Al2O3:Na2O:NaOH:H2O being 3.4:1.1:0.5:1.0:11.8. X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FT-IR) were adopted to investigate the influence of curing conditions on the mechanical properties and microstructures of the geopolymers. The best curing condition was 60 degrees C for 168 h, and this alkali activated metakaolin-based geopolymer showed the highest compression strength at 52.26 MPa. In addition, hollow micro-sphere glass beads were mixed with metakaolin particles to improve the thermal insulation properties of the alkali activated metakaolin-based geopolymer. These results suggest that a suitable volume ratio of metakaolin to hollow micro-sphere glass beads in alkali activated metakaolin-based geopolymers was 6: 1, which achieved a thermal conductivity of 0.37 W/mK and compressive strength of 50 MPa. By adjusting to a milder curing condition, as-prepared alkali activated metakaolin-based geopolymers could find widespread applications in concrete thermal protection.

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