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Effects of Portland cement on activation mechanism of class F fly ash geopolymer cured under ambient conditions

机译:硅酸盐水泥对环境条件下固化的F级粉煤灰地质聚合物活化机理的影响

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摘要

This study addresses the influence of a small Portland cement addition on the reaction kinetics and phase evolution of ambient cured class F fly ash-based geopolymer. The results show that setting time and reaction kinetics can be controlled by tailoring the precursor and activator characteristics, primarily the Ca/Si molar ratio. Calcium ions, dissolved from cement phases, contribute to a faster precipitation of products and in consequence, to a denser microstructure of composite pastes and a higher early age mechanical performance. However, excessive cement content impedes the gel formation due to hindered hydration of cement in high alkalinity at later ages and low compatibility between calcium deficient and calcium rich phases which lower the silica availability. It is found that the optimal dosage of cement in fly ash F based geopolymeric system is depending on the total silica content, 5 wt% and 7.5 wt% for silicate based activator with a silica modulus of 1.2 and 1.5, respectively. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究解决了添加少量波特兰水泥对环境固化的F级粉煤灰基地质聚合物的反应动力学和相演化的影响。结果表明,可以通过调整前体和活化剂特性(主要是Ca / Si摩尔比)来控制凝固时间和反应动力学。从水泥相中溶解的钙离子有助于更快地沉淀出产品,并因此导致复合浆料的致密微观结构和更高的早期机械性能。但是,过量的水泥含量会阻碍胶凝剂的形成,原因是在较高的年龄下,水泥在高碱度下的水合作用受阻,并且钙缺乏相和富钙相之间的相容性较低,从而降低了二氧化硅的利用率。发现在粉煤灰F基地聚合物体系中水泥的最佳剂量取决于总二氧化硅含量,对于二氧化硅模量为1.2和1.5的基于硅酸盐的活化剂,分别为5重量%和7.5重量%。 (C)2018 Elsevier Ltd.保留所有权利。

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