Kinetic and thermodynamic modeling of Portland cement hydration at low temperatures

被引:1
|
作者
Zhuangzhuang Liu
Aimin Sha
Liqun Hu
Yongwei Lu
Wenxiu Jiao
Zheng Tong
Jie Gao
机构
[1] Chang’an University,School of Highway
[2] Key Laboratory for Special Area Highway Engineering,undefined
[3] Ministry of Education,undefined
来源
Chemical Papers | 2017年 / 71卷
关键词
Portland cement; Cold climates; Low temperature; Thermodynamics; Kinetics; Degree of hydration;
D O I
暂无
中图分类号
学科分类号
摘要
Portland cement have to hydrate in cold climates in some particular conditions. Therefore, a better understanding of cement hydration under low temperatures would benefit the cement-based composites application. In this study, Portland cement was, therefore, kinetically and thermodynamically simulated based on a simple kinetics model and minimization of Gibbs free energy. The results of an evaluation indicate that Portland cement hydration impact factors include the water–cement ratio (w/c), temperature, and specific surface area, with the latter being an especially remarkable factor. Therefore, increasing the specific surface area to an appropriate level may be a solution to speed the delayed hydration due to low temperatures. Meanwhile, the w/c ratio is believed to be controlled under cold climates with consideration of durability. The thermodynamic calculation results suggest that low-temperature influences can be divided into three levels: irrevocable effects (<0 °C), recoverable effects (0–10 °C), and insignificant effects (10–20 °C). Portland cement was additionally measured via X-ray diffraction, thermal gravity analysis, and low-temperature nitrogen adsorption test in a laboratory and comparisons were drawn that validate the simulation result.
引用
收藏
页码:741 / 751
页数:10
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