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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Modeling hydration process of magnesia based on nucleation and growth theory: The isothermal calorimetry study
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Modeling hydration process of magnesia based on nucleation and growth theory: The isothermal calorimetry study

机译:基于成核和生长理论的氧化镁水化过程建模:等温量热法研究

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摘要

Hydration process of magnesia was studied by isothermal calorimetry in the temperature range of 20-40 °C. Thereafter, nucleation and growth model was employed to describe the hydration process characterized by hydration heat evolution. Results showed that similar to cement, obvious five stages could be observed in the hydration process of the magnesia at temperature of 20 °C. Boundary nucleation and growth model provided a better description of the magnesia hydration process than did the random nucleation and growth model, especially for the sample hydrated at a lower temperature, and the activation energy calculated by kinetics parameters fitted the above models were 57.4 kJ/mol and 53.4 kJ/mol, respectively. In addition, micrographs of magnesia grains before and after hydration were also analyzed, which further indicated the hydration kinetics of the magnesia inclined to the nucleation and growth model.
机译:通过等温量热法在20-40°C的温度范围内研究了氧化镁的水合过程。此后,采用成核和生长模型来描述以水合作用放热为特征的水合作用过程。结果表明,与水泥相似,在温度为20°C的氧化镁水化过程中,可以观察到明显的五个阶段。边界成核和生长模型比随机成核和生长模型更好地描述了氧化镁的水化过程,特别是对于在较低温度下水合的样品,通过动力学参数计算得出的活化能为57.4 kJ / mol和53.4 kJ / mol。另外,还分析了水合前后氧化镁晶粒的显微照片,进一步表明了镁的水合动力学倾向于成核和生长模型。

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