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IN SITU HYDRATION IMAGING STUDY OF A YE'ELIMITE PASTE BY PTYCHOGRAPHIC X-RAY COMPUTED TOMOGRAPHY

机译:X线计算机断层摄影术对E浆的原位水化成像研究

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Eco-cements are a desirable alternative to ordinary Portland cements because of their lower CO_2 footprints. For instance, the manufacture of Calcium SulfoAluminate (CSA) cements is more environmentally friendly than that of Portland cements as their production may decrease CO_2 footprint by up to 40%. CSA cements contain ye'elimite, Ca_4Al_6O_(12)SO_4, as main phase. The hydration of ye'elimite leads to hydrated compounds such as crystalline ettringite (AFt), crystalline monosulfoaluminate (AFm) and amorphous aluminum hydroxide gel, Al(OH)_3 nH_2O. Here, we report the results of a ptychographic X-ray computed tomography (PXCT) study on the in situ hydration of ye'elimite with gypsum at different early ages. PXCT is a nondestructive X-ray imaging technique which provides 3D electron density and attenuation coefficient distributions of cement pastes with an isotropic resolution close to100 nm allowing distinguishing between component phases with very similar contrast in more conventional absorption-based X-ray tomography. The sample was prepared by hydrating ye'elimite with gypsum. Four datasets were recorded at 48, 53, 58 and 63 hours of hydration. The main aim of this imaging study was to quantify the microstructure evolution, within this time interval, with submicrometer spatial resolution. The different component phases were identified and their mass densities determined. Furthermore, the tomograms were segmented and the volume percentage of each component were determined and compared at the four hydrating ages. The overall porosity content (air and pore solution) decreased from 11.5 to 8.8 vol% and the anhydrous material content (ye'elimite and gypsum) decreased from 14.7 to 7.5 vol% in the studied time interval. Correspondingly, the hydrated content (crystalline ettringite and aluminum hydroxide gel) increased from 73.7 to 83.7 vol%. The time evolution of several anhydrous particles was analyzed to determine the dissolution rate of the ye'elimite particles. Similarly, the pore filling process has also been investigated by quantifying their time evolution. These rates are reported and some insights about the mechanisms of these processes are discussed.
机译:生态水泥是普通波特兰水泥的理想替代品,因为它们的CO_2足迹较低。例如,铝硅酸钙(CSA)水泥的生产比波特兰水泥对环境更加友好,因为它们的生产可以减少多达40%的CO_2足迹。 CSA水泥的主要成分为Ca_4Al_6O_(12)SO_4。野薄荷的水合生成水合化合物,例如结晶钙矾石(AFt),结晶单硫酸铝酸盐(AFm)和无定形氢氧化铝凝胶Al(OH)_3 nH_2O。在这里,我们报告了在不同的早期阶段用石膏原位水化of烯的液相色谱X射线计算机断层扫描(PXCT)研究的结果。 PXCT是一种非破坏性X射线成像技术,可提供各向同性分辨率接近100 nm的水泥浆的3D电子密度和衰减系数分布,从而可以在更常规的基于吸收的X射线层析成像中以非常相似的对比度区分组分相。通过用石膏水合草来制备样品。在水合48、53、58和63小时时记录了四个数据集。这项成像研究的主要目的是量化在此时间间隔内亚微米空间分辨率下的微观结构演变。确定了不同的组分相并确定了它们的质量密度。此外,对断层图进行了分割,确定了每种成分的体积百分比,并在四个水合年龄进行了比较。在研究的时间间隔内,总孔隙率(空气和孔隙溶液)从11.5%降低到8.8%(体积),无水材料含量(ye石和石膏)从14.7%降低到7.5%(体积)。相应地,水合含量(结晶钙矾石和氢氧化铝凝胶)从73.7体积%增加到83.7体积%。分析了几个无水颗粒的时间演变,以确定ye'elimite颗粒的溶解速率。同样,还通过量化孔的填充时间来研究孔填充过程。报告了这些速率,并讨论了有关这些过程机制的一些见解。

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