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PREPARATION AND PROPERTIES OF FLY ASH-BASED GEOPOLYMER FOAMS

机译:粉煤灰基聚合物泡沫的制备及性能

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An extremely porous geopolymer material - an incombustible alumino-silicate foam - can be prepared by incorporatinggas-forming agents into mixtures consisting of an alkaline activating agent (NaOH + sodium water glass) and fly ash.Aluminium powder or materials containing elemental Si (silica fume, FeSi or SiC) may be used as gas-forming agents.Macroscopic pores are given rise thanks to the release of gaseous hydrogen generated during the reaction of aluminium,respectively Si, in a strong alkaline environment. The formation of the foam becomes more intense if aluminium powder isused instead of silica fume. The effect of silica fume can only be observed at concentrations ranging from 5 to 10 percent byweight and at temperatures above 60~(o)C because of a low content of elemental Si in silica fume. The foam formation takesplace immediately after the addition of aluminium powder to the mixture but the foam collapsing must be prevented byincorporation of portland cement or lime. The Si reaction in the strong alkaline environment is boosted by the presence ofan alumino-silicate material, ie the fly ash. Geopolymer foams prepared by addition of gas-forming aluminium powder orsilica fume are characterized by similar pore sizes; the pore size is comparable with that observed in lime-silicate materialsproduced in autoclave. The volume weight of geopolymer foams is similar to that of other inorganic foams. The strength ofgeopolymer foams is dependent on their volume weigth. Mechanical properties of geopolymer foams were stable over theinvestigated period of a year. Geopolymer foams are incombustible and can resist temperatures of up to 1000~(o)C without anysign of decomposition. Their shape does not change after exposure to temperatures ranging from 400 to 800~(o)C. In contrastto lime-silicate foams and cement-based foams the firing of geopolymer foams is not accompanied by the formation of anycracks or by any additional changes (rehydration).
机译:可以通过将成气剂掺入由碱性活化剂(NaOH +钠水玻璃)和粉煤灰组成的混合物中来制备极其多孔的地质聚合物材料-不可燃的铝硅酸盐泡沫-铝粉或含硅元素的物质(硅粉) ,FeSi或SiC)可以用作气体形成剂。由于在强碱性环境中铝(分别是Si)反应过程中产生的气态氢的释放,导致出现了宏观孔隙。如果使用铝粉代替硅粉,泡沫的形成会更加强烈。由于硅粉中元素硅含量低,因此只能在浓度范围为5%至10%(重量)和高于60°C的温度下才能观察到硅粉的作用。向混合物中添加铝粉后立即发生泡沫形成,但是必须通过掺入硅酸盐水泥或石灰来防止泡沫塌陷。铝硅酸盐材料(即粉煤灰)的存在促进了强碱环境下的Si反应。通过添加可形成气体的铝粉或硅粉制得的地聚合物泡沫的特征是孔径相似。孔径可与高压釜中生产的石灰硅酸盐材料相媲美。地质聚合物泡沫的体积重量与其他无机泡沫的体积重量相似。地聚合物泡沫的强度取决于其体积重量。在一年的调查期内,地质聚合物泡沫的机械性能稳定。地质聚合物泡沫不可燃,可承受高达1000°C的温度而不会分解。暴露于400至800°C的温度下,它们的形状不会改变。与石灰硅酸盐泡沫和水泥基泡沫相反,地聚合物泡沫的燃烧不会伴随任何裂纹的形成或任何其他变化(补水)。

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