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Hydration of tricalcium silicate in the presence of synthetic calcium-silicate-hydrate

机译:在合成硅酸钙水合物存在下水合硅酸三钙

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摘要

The early age-hydration of tricalcium silicate, the main chemical compound in Portland cement, was studied in the presence of synthetic calcium silicate hydrate (C-S-H) addition having C/S ratios = 0.8 and 1.2. Isothermal conduction calorimetry, scanning electron microscopy, differential scanning calorimetry and ~(29)Si MAS NMR were employed in order to investigate events occurring during various stages of the hydration. The results that were analyzed using novel methods in cement chemistry showed that the addition of seeds of synthetic C-S-H significantly accelerated the hydration of C3S. The extent of the acceleration was dependant on the amount and chemical composition of the C-S-H seeds. It was suggested that the synthetic C-S-H significantly increased the rate and degree of dissolution of the C3S particles. It was also found that the nucleation and silicate polymerization of the C-S-H that formed during the hydration of the C3S phase was promoted. Direct evidence of the seeding effect was provided. The properties of the resulting C-S-H hydration products seemed to be dependant on the lime-to-silica ratio of the synthetic C-S-H. It was suggested that the silicate polymerization and chemical composition of the hydration products of silicate phases may be manipulated through C-S-H seeding. As the chemical and mechanical properties of C-S-H are largely controlled by its C/S ratio, this method should provide a unique tool for tailoring the nanostructurc of the hydration products of Portland cement through the addition of selective C-S-H seeds for optimum engineering and durability performance.
机译:在添加的合成硅酸钙水合物(C-S-H)的存在下,研究了硅酸三钙(波特兰水泥中的主要化合物)的早期水合作用,水合碳比为0.8和1.2。为了研究水合过程各个阶段发生的事件,采用了等温传导量热法,扫描电子显微镜,差示扫描量热法和〜(29)Si MAS NMR。在水泥化学中使用新方法分析的结果表明,添加合成C-S-H种子可显着加速C3S的水合作用。加速程度取决于C-S-H种子的数量和化学组成。建议合成的C-S-H显着提高C3S颗粒的溶解速率和溶解度。还发现促进了在C 3 S相水合期间形成的C-S-H的成核和硅酸盐聚合。提供了播种效果的直接证据。所得的C-S-H水合产物的性质似乎取决于合成的C-S-H的石灰与二氧化硅的比例。建议可以通过C-S-H晶种控制硅酸盐相的硅酸盐聚合反应和水合产物的化学组成。由于C-S-H的化学和机械性能在很大程度上受其C / S比控制,因此该方法应提供一种独特的工具,通过添加选择性C-S-H晶种来定制波特兰水泥水化产物的纳米结构,以实现最佳工程和耐久性能。

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