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            "abstractNote": "Abstract\nThis chapter presents the application of synchrotron-based microtomography (SR-μCT) as a three-dimensional (3D) analysis tool to investigate microscale structural attributes of soils and sediments. After an introduction on the need of noninvasive 3D imaging to study pore scale processes in natural porous media the principles, potentials, and limitations of SR-μCT are outlined. A review of selected applications of SR-μCT in soils and sediments illustrates the capabilities of the technique. To fully exploit the vast amount of information stored in 3D image reconstructions, some level of quantification of morphological and topological properties of the pore system is desired. Therefore, basic aspects and concepts of 3D image analysis and a software option (3dma), which was previously used to visualize and quantify of pore space architectures, are introduced. The extraction of pore network visualizations and quantifications from SR-μCT data is demonstrated on a 5 mm soil aggregate. Synchrotron microtomography, 3D image analysis, and pore scale modeling approaches in combination with experimental treatments and measurements will give new insights into the complex interacting physical, chemical, and biological processes occurring in natural porous media.",
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