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The effects of Na_2O/SiO_2 molar ratio, curing temperature and age on compressive strength, morphology and microstructure of alkali-activated fly ash-based geopolymers

机译:Na_2O / SiO_2摩尔比,固化温度和时效对碱活化粉煤灰基地质聚合物抗压强度,形态和微观结构的影响

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摘要

Fly ashes (FA) are byproducts of electricity production from mineral coal in thermoelectric power plants. The pozzolanic properties of FA have been utilized in various applications, including structural concrete, yet the large part of FA is still discarded into the environment. To promote greater FA usage, this study aims to produce a dense matrix, with mechanical properties satisfactory for civil engineering projects, from alkali-activated fly ash-based geopolymers. Three variables were studied: the Na_2O/SiO_2 molar ratio (N/S 0.20, N/S 0.30 and N/S 0.40); curing temperature in the first 24 h (50, 65 and 80C); and age (1, 7, 28, 91 and 180 days). For this study, alkali-activated fly ash pastes and mortars were prepared. In pastes, morphology was studied using scanning electron microscopy (SEM/EDS) and microstructural properties with X-ray Diffraction (XRD) analysis. Mortars were evaluated according to their mechanical performance measured using compression strength tests. Compression strength results were analysed using ANOVA. The results show that the N/S molar ratio plays an important role in the mechanical and morphological characteristics of geopolymers. The mortars prepared with a N/S 0.40 molar ratio had the greatest compression strength. The analysis of paste morphology revealed that N/S 0.40 pastes had a denser appearance, which is in agreement with results of compression strength tests.
机译:粉煤灰(FA)是热电厂矿物煤发电的副产品。 FA的火山灰性质已被用于各种应用中,包括结构混凝土,但FA的大部分仍被丢弃到环境中。为了促进更多的FA使用,本研究旨在从碱活化的粉煤灰基地质聚合物中生产出致密的基质,其机械性能满足土木工程项目的要求。研究了三个变量:Na_2O / SiO_2摩尔比(N / S 0.20,N / S 0.30和N / S 0.40);以及前24小时的固化温度(50、65和80C);和年龄(1、7、28、91和180天)。为了进行这项研究,准备了碱活化的粉煤灰糊和砂浆。在糊剂中,使用扫描电子显微镜(SEM / EDS)和X射线衍射(XRD)分析的微观结构特性研究了形态。根据使用抗压强度测试测得的机械性能评估砂浆。使用ANOVA分析抗压强度结果。结果表明,N / S摩尔比在地质聚合物的力学和形态特征中起重要作用。以N / S 0.40摩尔比制备的砂浆具有最大的抗压强度。糊状物的形态分析表明,N / S 0.40糊状物具有较稠密的外观,这与抗压强度测试的结果一致。

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