粉煤灰
硅酸铝钙
水合硅酸钙
硅酸铝
熔渣(焊接)
化学工程
钙
胶凝的
材料科学
铝硅酸钠
波特兰岩
化学
硅酸钙
氢氧化钙
水泥
矿物学
冶金
硅酸盐水泥
有机化学
复合材料
工程类
催化作用
出处
期刊:Sustainability
[Multidisciplinary Digital Publishing Institute]
日期:2022-03-23
卷期号:14 (7): 3767-3767
被引量:2
摘要
This paper investigates the hydrated phase assemblage, microstructure, and gel composition of sodium hydroxide (NaOH)-activated fly ash–slag blends with either low-calcium or high-calcium fly ash. The results show that the nature of precipitated calcium–aluminosilicate–hydrate (C-A-S-H) and alkali aluminosilicate-hydrate (N-A-S-H) depends on the fly ash composition and slag-to-fly ash ratio. However, regardless of fly ash composition and slag-to-fly ash ratio, a universal linear compositional relationship exists between Al/Ca ratio and Si/Ca ratio in precipitated gels. This indicates that there exists a structural limitation on the incorporation of Al3+ for Si4+ in the tetrahedral silicate of C-A-S-H, N-A-S-H, or metastable N-C-A-S-H gels. In a hybrid slag–fly ash system, the framework structure of precipitated gels is an assemblage of aluminosilicate units with heterogeneous Ca2+ and Na+ distribution. The amount and reactivity of calcium and alkalis seem to play a critical role in determining the structure and properties of precipitated gels in hybrid systems. The low cementitious capability in alkali-activated high-calcium fly ash may be attributed to the unstable N-C-A-S-H gel structure with concurrent high Na and Ca contents.
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