材料科学
微观结构
多孔性
同步加速器
水泥
煅烧
X射线显微断层摄影术
结构精修
矿物学
相(物质)
复合材料
耐久性
化学
结晶学
晶体结构
光学
物理
催化作用
有机化学
生物化学
作者
Isabel M.R. Bernal,Shiva Shirani,Ana Cuesta,Isabel Santacruz,Miguel Á. G. Aranda
标识
DOI:10.1016/j.conbuildmat.2021.124054
摘要
Limestone Calcined Clay Cements, LC3, are attracting a lot of attention as it is possible to reduce the clinker factor by 50%, which means a cement CO2 footprint reduction of 40%. This is compatible with maintaining the mechanical strength performances after one week, if the kaolinite contents of the raw clays are above ~40 wt%. Durability properties are also maintained or even enhanced. Here, it is used a multi-technique approach to understand the phase and microstructure developments. From the thermal analysis, partial limestone reactivity is proven. Chiefly, high-resolution synchrotron microtomography has been employed, for the first time in these systems, to characterize their microstructures. The measured total porosities, within our 1 μm spatial resolution (voxel size 0.32 μm), were 16.6, 10.0 and 2.4 vol% at 7, 8 and 60 days of hydration, respectively. Pore connectivity strongly decreases with hydration time due to the chemical reactions producing new phases filling the pores. The 6-connected porosity fractions were 92, 78, and 9% at 7, 8 and 60 days. The reactions filling the pores were investigated by Rietveld quantitative phase analysis and 27Al MAS-NMR.
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