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Comparison of two alkali-activated systems: mechanically activated fly ash and fly ash-blast furnace slag blends

机译:两种碱活性系统的比较:机械激活粉煤灰和飞灰 - 高炉渣共混物

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Poor reactivity of fly ash (FA) in alkali activation process can be improved either by mechanical activation of fly ash or by blending fly ash with more reactive material, such as blast furnace slag (BFS). Both options were explored in this paper and comparison was performed. Mechanical activation of fly ash was conducted in a planetary ball mill, while blends of fly ash and blast furnace slag were prepared with different ratios (FA/(FA+BFS) = 1;; 0.75;; 0.50;; 0.25;; 0). Alkali activation was carried out at 95 °C by use of sodium silicate solution as an activator. In both cases significant increase of geopolymer strength was observed in respect to the geopolymer based on the initial fly ash. Optimal geopolymer strength was correlated with the chemical composition of the binding gel. Empirical values of optimal gel composition could serve as a basis for tailoring properties of alkali-activated binders based on different precursors. Both alkali-activated systems represent promissing routes for geopolymer technology development.
机译:通过粉煤灰的机械活化或通过用更多的反应性材料混合粉煤灰(例如高炉炉渣(BFS),可以通过机械活化来改善碱活化过程中的粉煤灰(Fa)的反应性。在本文中探讨了两种选择,并进行了比较。粉煤灰的机械活化在行星球磨机中进行,而粉煤灰和高炉渣的混合物采用不同的比例制备(Fa /(Fa + BFS)= 1;; 0.75 ;; 0.50 ;; 0.25 ;; 0) 。碱活化在95℃下通过使用硅酸钠溶液作为活化剂进行。在这两种情况下,基于初始粉煤灰对地质聚合物观察到地质聚合物强度的显着增加。最佳地缘聚合物强度与结合凝胶的化学成分相关。最佳凝胶组合物的经验值可以作为基于不同前体的碱活化粘合剂剪裁性质的基础。碱活性系统都代表了地缘聚合物技术开发的探讨路线。

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