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Aggregates Obtained by Alkali Activation of Fly Ash: The Effect of Granulation Pelletization Methods and Curing Regimes

机译:粉煤灰碱活化获得的骨料:造粒制粒方法和固化方式的影响

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摘要

This paper presents results regarding the phase composition, microstructure and textural properties of two types of aggregates, which were prepared via crushing or pelletization of alkali-activated Class F fly ash and cured under different conditions. The alkali activator was the same for aggregate products, containing an alkaline solution consisting of 8 M NaOH and Na-silicate (8 M NaOH/Na-silicate = 1:2.5 mass ratio). The aforementioned properties were influenced by two different preparation procedures combined with varying curing regimes (under normal conditions at 20 °C, RH 40–60% for 28 and 120 days and under an accelerated regime, at 65 °C for 5 days). Aggregates were characterized using X-ray diffraction (XRD), Fourier-transform transmission infrared spectroscopy (FTIR), back scattered electron microscopy with energy dispersive spectrometer (BSE-EDS) analyses and mercury intrusion porosimetry (MIP). The results showed noteworthy structural and textural diversities between the two types of aggregate. The method of preparation and curing regime affected the formation of the N-A-S-H structure and the texture of the alkali-activated fly ash product, with the crushing method giving an advantage.
机译:本文介绍了两种类型的骨料的相组成,微观结构和织构性质的结果,这两种骨料是通过将碱活化的F类粉煤灰粉碎或制粒并在不同条件下固化而制备的。对于骨料产品,碱活化剂是相同的,其包含由8 M NaOH和硅酸钠组成的碱性溶液(8 ​​M NaOH /硅酸钠= 1:2.5质量比)。上述性能受两种不同的制备程序以及不同的固化方案的影响(在正常条件下,温度为20°C,相对湿度40-60%,持续28天和120天,在加速条件下,在65°C下持续5天)。使用X射线衍射(XRD),傅里叶变换透射红外光谱(FTIR),带能量色散光谱仪(BSE-EDS)的反散射电子显微镜和汞侵入孔隙率法(MIP)对聚集体进行表征。结果表明,两种骨料之间在结构和质地上存在显着差异。制备和固化方式的方法影响了N-A-S-H结构的形成和碱活化的粉煤灰产品的质地,其中压碎法具有优势。

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