偏高岭土
聚合物
结晶
放热反应
溶解
氢氧化钠
方沸石
材料科学
化学工程
动力学
反应速率
化学
物理化学
有机化学
粉煤灰
复合材料
催化作用
工程类
物理
沸石
量子力学
作者
Zuhua Zhang,Hao Wang,John L. Provis,F Bullen,Andrew Reid,Yingcan Zhu
标识
DOI:10.1016/j.tca.2012.03.021
摘要
Isothermal conduction calorimetry (ICC) is used here to measure the kinetics of geopolymerisation of metakaolin by reaction with NaOH solution under a variety of conditions. Three exothermic peaks are observed in the calorimetric curve, and are assigned to the dissolution of metakaolin, the formation of geopolymer with disordered or locally ordered structure, and finally the reorganization and partial crystallization of this inorganic polymer gels. For the purpose of further quantifying the ICC data, the geopolymeric reaction products are assumed to have an analcime-like local structure, and their standard formation enthalpies are estimated from the available data for this structure. This assumption enables ICC to be used for the first time in a quantitative manner to determine the real reaction kinetics of geopolymerization. Increasing the NaOH concentration up to a molar overall Na/Al ratio of 1.1 is seen to enhance the reaction extent observed at 3 days, up to a maximum of around 40% in the high liquid/solid ratio systems studied here, and accelerates the crystallization process. However, further addition of NaOH does not give any additional reaction within this period, or any further acceleration. Raising the reaction temperature from 25 °C to 40 °C increases the initial reaction rate but has little effect on the final reaction extent, particularly when Na/Al > 1.
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