Effect of alkali-activation on aluminosilicate-based cementitious materials

Xiaoguang Yang , Wen Ni , Xufang Zhang , Yali Wang
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引用次数: 8

Abstract

High-performance aluminosilicate-based cementitious materials were produced with fly ash from a coal power plant as one of the major raw materials. The structures of fly ash containing aluminosilicate-based cementitious materials were compared before and after treatment by the methods of nuclear magnetic resonance (NMR) and scanning electron microscopy (SEM). During the 28 d curing time, the compressive strength of water glass and fly ash samples increased from 9.08 MPa to 26.75 MPa. The results show that most of the stiff shells are destroyed after mechanical grinding and chemical activation. Magic angle spinning (MAS) NMR of 27Al shows that the wide peak becomes narrow and the main peak shifts to the direction of low field, indicating the decrease of polymerization degree, the enhancing of activity, the decrease of six-coordination structure, and the increase of small and symmetrical four-coordination polyhedron structure within the aluminum-oxygen polyhedron network. Comparisons between MAS NMR of 29Si with different treatments suggest that Q0 disappears, the quantity of Q2 increases, and the quantity of Q4 decreases. The polymerization degree of silicon-oxygen is reduced, and the potential activity of fly ash is increased.

碱活化对硅酸盐铝基胶凝材料的影响
以某燃煤电厂粉煤灰为主要原料,制备了高性能硅酸盐铝基胶凝材料。采用核磁共振(NMR)和扫描电镜(SEM)等方法对含硅铝基胶凝材料粉煤灰处理前后的结构进行了比较。在28 d的养护时间内,水玻璃和粉煤灰试样的抗压强度由9.08 MPa提高到26.75 MPa。结果表明,经机械研磨和化学活化后,大部分硬壳被破坏。27Al的MAS核磁共振显示,宽峰变窄,主峰向低场方向移动,表明聚合度降低,活性增强,六配位结构减少,小而对称的四配位多面体结构增加。不同处理的29Si的MAS NMR比较表明,Q0消失,Q2数量增加,Q4数量减少。降低了硅氧的聚合度,提高了粉煤灰的潜在活性。
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