Dipartimento di Geoscienze, Università di Padova, 35122 Padua, Italy.
Anal Bioanal Chem. 2010 Jul;397(6):2131-6. doi: 10.1007/s00216-010-3649-0. Epub 2010 Apr 1.
A recently developed synchrotron-based imaging technique, X-ray diffraction microtomography (XRD-CT), has been applied here for the first time to a complex system, the hydrating Portland cement paste, in order to monitor the evolution of microstructure and phase formation with a 3D non-invasive imaging approach. The ettringite-XRD-peak-based image reconstructions, combined with transmission microtomography (X-microCT) images, allowed to assess the ubiquitous distribution of this phase, which appears early in the hydration process and showed its preferential concentration in the relatively less compact regions of the paste. The comparison of greyscale histograms for cement pastes after 9 and 58 h from hydration showed an increase of ettringite content with age, in agreement with the quantitative Rietveld analysis of the sum patterns. By renormalizing the greyscale histograms to the relative weight fraction, as obtained from Rietveld refinements, a new technique which allows estimation of phase contents with spatial resolution has been developed. The results achievable by combining XRD-CT, X-microCT and Rietveld appear very promising to provide experimental snapshots of the cement hydration process to be compared with results obtained from computer simulations.
最近开发的基于同步加速器的成像技术,X 射线衍射断层扫描(XRD-CT),首次应用于一个复杂的系统,即水化波特兰水泥浆,以通过 3D 非侵入性成像方法监测微观结构和相形成的演变。基于石膏-XRD-峰的图像重建,结合透射断层扫描(X-微 CT)图像,评估了这种普遍存在的相的分布情况,这种相在水化过程早期出现,并显示出其在浆体相对不太致密的区域中的优先浓度。对水化 9 小时和 58 小时后的水泥浆体的灰度直方图进行比较,显示出随着龄期的增加,石膏含量增加,与总和模式的定量 Rietveld 分析一致。通过将灰度直方图归一化为 Rietveld 细化获得的相对重量分数,开发了一种允许以空间分辨率估计相含量的新技术。将 XRD-CT、X-微 CT 和 Rietveld 相结合的结果非常有希望提供水泥水化过程的实验快照,以便与计算机模拟获得的结果进行比较。