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Using Synchrotron-Based X-Ray Microtomography and Functional Contrast Agents in Environmental Applications

机译:在环境应用中使用基于同步加速器的X射线断层摄影术和功能性造影剂

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摘要

Despite very rapid development in commercial X-ray tomography technology, synchrotron-based tomography facilities still have a number of advantages over conventional systems. The high photon flux inherent of synchrotron radiation sources allows for (i) high resolution to micro- or nanometer scales depending on the individual beamline, (ii) rapid acquisition times that allow for collection of sufficient data for statistically significant results in a short amount of time as well as prevention of temporal changes that would take place during longer scan times, and (iii) optimal implementation of contrast agents that allow us to resolve features that would not be decipherable in scans obtained with a polychromatic radiation source. This chapter highlights recent advances in capabilities at synchrotron sources, as well as implementation of synchrotron-based computed microtomography (CMT) to two topics of interest to researchers in the soil science, hydrology, and environmental engineering fields, namely multiphase flow in porous media and characterization of biofilm architecture in porous media. In both examples, we make use of contrast agents and photoelectric edge-specic scanning (single- or dual-energy type), in combination with advanced image processing techniques.
机译:尽管商业X射线断层摄影技术发展非常迅速,但基于同步加速器的断层摄影设备仍比传统系统具有许多优势。同步加速器辐射源固有的高光子通量允许(i)取决于单个光束线的高分辨率至微米或纳米级;(ii)快速采集时间,可以在短时间内获得足够的数据以得到具有统计意义的结果时间以及防止在较长的扫描时间内会发生时间变化,以及(iii)造影剂的最佳实现,这些造影剂使我们能够解决使用多色辐射源进行的扫描中无法识别的特征。本章重点介绍了同步加速器源功能的最新进展以及基于同步加速器的计算机显微断层照相术(CMT)的实施,这是土壤科学,水文学和环境工程领域研究人员感兴趣的两个主题,即多孔介质中的多相流和多孔介质中生物膜结构的表征。在这两个示例中,我们都使用了造影剂和边缘光电扫描(单能量或双能量类型),并结合了先进的图像处理技术。

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