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In situ observing the hydration process of K-PSS geopolymeric cement with environment scanning electron microscopy

机译:环境扫描电镜原位观察K-PSS地聚合物的水化过程

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The hydration process of K-PSS geopolymeric cement was in situ quantitatively investigated by environment scanning electron microscope (ESEM) under 80% relative humidity. An energy dispersion X-ray analysis (EDXA) was also employed to determine the chemical composition of the hydration product. The ESEM micrographs showed that metakaolin particles pack loosely at 10 min after an initial mixing, resulting in an existence of many large voids. As the hydration proceeded, some gels were produced and gradually precipitated on the surfaces of these particles. At a later stage, these particles were covered by thick gel layers, and their interspaces among the metakaolin particles were also completely filled up. The corresponding EDXA results illustrated that the molar ratios of K/Al and Si/Al decreased with the development of hydration. The molar ratios of K/Al and Si/Al of the hydration products at an age of 13 h amounted to 1.06 and 2.14 respectively, which were very close to the theoretical values (K/Al=1.0, Si/Al=2.0) for K-PSS geopolymeric cement hardened paste. In addition, well-developed crystals could not be found at any ages, instead sponge-like amorphous gels have always been observed during the whole hydration process.
机译:通过环境扫描电子显微镜(ESEM)在80%相对湿度下原位定量研究了K-PSS地质聚合物水泥的水化过程。还使用能量分散X射线分析(EDXA)确定水合产物的化学组成。 ESEM显微照片显示,初次混合后10分钟,偏高岭土颗粒松散堆积,导致存在许多大空隙。随着水合的进行,产生了一些凝胶,并逐渐沉淀在这些颗粒的表面上。在稍后的阶段,这些颗粒被厚厚的凝胶层覆盖,并且偏高岭土颗粒之间的间隙也被完全填充。相应的EDXA结果表明,随着水化的发展,K / Al和Si / Al的摩尔比降低。水化产物在13 h时的K / Al和Si / Al摩尔比分别为1.06和2.14,非常接近于理论值(K / Al = 1.0,Si / Al = 2.0)。 K-PSS地聚合物水泥硬化浆。此外,在任何年龄都找不到成熟的晶体,相反,在整个水化过程中一直观察到海绵状无定形凝胶。

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