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Effect of SiO_2/Na_2O mole ratio on the properties of foam geopolymers fabricated from circulating fluidized bed fly ash

机译:SiO_2 / Na_2O摩尔比对循环流化床粉煤灰制备泡沫地质聚合物性能的影响

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摘要

Geopolymers are three-dimensional aluminosilicates formed in a short time at low temperature by geopolymerization. In this paper, alkali-activated foam geopolymers were fabricated from circulating fluidized bed fly ash (CFA), and the effect of SiO_2/Na_2O mole ratio (0.91-1.68) on their properties was studied. Geopolymerization products were characterized by mechanical testing, scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDX), and X-ray diffraction (XRD). The results show that SiO_2/Na_2O mole ratio plays an important role in the mechanical and morphological characteristics of geopolymers. Foam samples prepared in 28 d with a SiO_2/Na_2O mole ratio of 1.42 exhibit the greatest compressive strength of 2.52 MPa. Morphological analysis reveals that these foam geopolymers appear the relatively optimized pore structure and distribution, which are beneficial to the structure stability. Moreover, a combination of the Si/Al atomic ratio ranging between 1.47 and 1.94 with the Na/Al atomic ratio of about 1 produces the samples with high strength.
机译:地质聚合物是在短时间内在低温下通过地质聚合形成的三维硅铝酸盐。本文利用循环流化床粉煤灰(CFA)制备了碱活化泡沫地质聚合物,研究了SiO_2 / Na_2O摩尔比(0.91-1.68)对其性能的影响。通过机械测试,扫描电子显微镜(SEM),能量色散X射线光谱(EDX)和X射线衍射(XRD)对地聚产物进行了表征。结果表明,SiO_2 / Na_2O的摩尔比在地质聚合物的力学和形态特征中起着重要作用。 SiO_2 / Na_2O摩尔比为1.42的28 d泡沫样品最大抗压强度为2.52 MPa。形态分析表明,这些泡沫地质聚合物表现出相对优化的孔隙结构和分布,有利于结构的稳定性。而且,将Si / Al原子比在1.47和1.94之间与Na / Al原子比大约为1的组合产生具有高强度的样品。

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