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Influence of quicklime addition on the mechanical properties and hydration degree of blended cements containing different fly ashes

机译:生石灰的添加对不同粉煤灰掺合水泥力学性能和水化度的影响

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摘要

Even though the use of pozzolanic and latent hydraulic materials (such as fly ash, slag and natural pozzolans) in the construction sector is nowadays a common practice, certain deficits associated with these materials have initiated research that aims to reduce the negative effects that they introduce into cementitious systems. With respect to fly ash, its relatively slow pozzolanic reactivity hinders its greater utilization; hence cost efficient methods of activation are on demand. In this work, cement systems containing the two typical types of Hellenic fly ashes (of high and moderate calcium content) were chemically activated by adding industrially produced quicklime. A first step in assessing the efficiency of the above procedure was based in monitoring the compressive strength development, lime depletion values and data derived from a selective dissolution procedure (based on a mixture of picric acid-methanol). Moreover, evolution of the fly ash reaction and the morphology of the formed hydration products were examined by means of scanning electron microscopy. Evidence included in this investigation reveal that quicklime presence accelerated the reaction rate of high-calcium fly ash, whereas in the case of lower-calcium fly ash, quicklime had a positive impact only during the very early stages of hydration and thereafter acted inhibitory with respect to its reactivity development.
机译:尽管如今在建筑行业中使用火山灰和潜在的水硬性材料(例如粉煤灰,矿渣和天然火山灰),但与这些材料相关的某些缺陷已经开始进行研究,旨在减少它们带来的负面影响。进入水泥体系。就粉煤灰而言,其相对缓慢的火山灰反应性阻碍了其更大的利用。因此,需要经济高效的激活方法。在这项工作中,通过添加工业生产的生石灰对包含两种典型类型的希腊粉煤灰(钙含量高和中等)的水泥体系进行了化学活化。评估上述程序效率的第一步是基于监测抗压强度的发展,石灰消耗量和选择性溶解程序(基于苦味酸-甲醇的混合物)得出的数据。此外,通过扫描电子显微镜检查了飞灰反应的演变和形成的水合产物的形态。这项调查中的证据表明,生石灰的存在加快了高钙粉煤灰的反应速度,而在低钙粉煤灰的情况下,生石灰仅在水合的非常早期才产生积极的影响,其后对水合起抑制作用。促进其反应性发展。

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