首页> 外文会议>World Congress of Soil Science >Dynamics of soil pore space structure investigated by X-ray microtomography
【24h】

Dynamics of soil pore space structure investigated by X-ray microtomography

机译:X射线微观图研究土壤孔隙空间结构的动态

获取原文

摘要

Transport and transformation processes of solid, liquid and gaseous compounds/components in soils are intimately connected and strongly dependent on the state of soil structure and pore space geometries. Soil structure in turn is inherently dynamic due to changes in pore water pressure resulting in shrinking and swelling and/or soil compaction and shear deformation by applying external loads and last but not least also continuously modified by biological factors (root growth and soil faunal activities). Studying the dynamic properties of soils and functions requires observing the evolution of soil structure with changing boundary conditions without disturbing the processes of structure formation. Non-invasive techniques such as X-ray microtomographyare able to resolve soil structure and associated pore architectures on various scales and at the same time allow for non-destructive observations of structural dynamics upon changes in boundary conditions. We used synchrotron- and X-ray microfocus tube-based microtomography (SR-muCT and MF-muCT resp.) systems to investigate soil structural dynamics of soil aggregates and typical core-size soil samples. The effects of shrinking/swelling and compaction on pore space architectures were studied under controlled boundary conditions (matric potential, mechanical loads). Three-dimensional reconstructions of the pore space were analyzed with 3D image analysis tools to quantify changes in morphological characteristics of soil structure and related pore networks upon changes in boundary conditions, respectively. The potential of such quantitative data to further develop modeling approaches of transport and deformation processes in soils will be discussed. Further improvements in muCT imaging approaches and 3Dimage analysis of soil structure dynamics coupled with physical measurements of transport functions are essential to achieve a more comprehensive understanding of soil-ecosystem fluxes and interactions.
机译:在土壤中的固体,液体和气态化合物/组分的传输和转换过程紧密连接,并且强烈依赖于土壤结构和孔隙空间的几何形状的状态。反过来土壤结构本质上是动态的,由于导致收缩和通过施加外部负载肿胀和/或土壤板结和剪切变形以及最后但并非最不重要也连续地生物因子(根生长和土壤动物活动)改性孔隙水压力的变化。研究土壤和功能的动态特性,需要观察土壤结构的演变与变化边界条件,而不会干扰的结构形成的过程。非侵入性技术,如X-射线microtomographyare能够解决土壤结构和不同尺度相关的孔结构,并在同一时间允许在边界条件变化的结构动力学的非破坏性的观测。我们使用synchrotron-和X射线微聚焦管为主微断层(SR-muCT和MF-muCT RESP)系统来调查土壤聚集体和典型的芯尺寸的土壤样品的土壤结构动力学。收缩/孔隙空间架构肿胀和压实的效果进行控制的边界条件(基质势,机械载荷)下研究。孔隙空间的三维重建的3D图像分析工具进行分析,以分别在边界条件变化量化在土壤结构和相关的孔的网络的形态特征的变化,。这样的定量数据的进一步发展建模的电位在土壤运输和变形过程的方法将被讨论。在muCT成像方法和加上的传输功能的物理测量土壤结构动力学分析3Dimage进一步改进是必要的,以实现土壤生态系统通量和相互作用的更全面的了解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号