Preparation of Metakaolin Based Geopolymer and Its Three-dimensional Pore Structural Characterization

被引:0
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作者
张云升 [1 ]
ZHANG Wenhua [1 ]
SUN Wei [1 ]
LI Zongjin [2 ]
LIU Zhiyong [1 ]
机构
[1] Jiangsu Key Laboratory for Construction Materials, Southeast University
[2] Department of Civil and Engineering, Hong Kong University of Science and
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暂无
中图分类号
TQ317 [高分子化合物产品];
学科分类号
摘要
Three types of pure geopolymer pastes(poly-sialate PS, poly- sialate-siloxo PSS, and polysialate-siloxo PSDS) were fi rst prepared by alkali(Na OH and KOH) activated metakaolin. Then a void space network was employed to simulate the 3-D pore-throat distribution across the unit cell of the various hardened geopolymer pastes with reference to their experimental mercury intrusion curves. Based on the simulated 3-D pore-throat structure models, a wide range of pore-level properties such as porosity, connectivity, permeability and tortuosity of various geopolymer pastes were calculated. The 3-D structural model and calculated parameters showed that most of the pores in Na-PS geopolymer paste was very small size pores ranging from 0 to 100 nm. A few very large pores were spread amongst the small pores, resulting in a very high penetration pressure, permeability resistance. Unlike Na-PS geopolymer paste, pore size with medium size of Na-PSS, K-PS and K-PSS geopolymer pastes distributed uniformly across the unit cell, and the size changes of adjacent pores in the 3 geopolymer pastes were little, producing higher penetration pressure, lower permeability, smaller connectivity and larger tortuosity. In contrast, pores in Na-PSDS and K-PSDS geopolymer pastes were relatively large and distributed concentratively, which caused samples to be easily penetrated by mercury, methane and nitrogen etc under relatively low pressures.
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页码:550 / 555
页数:6
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