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首页> 外文期刊>EPJ Web of Conferences >Imaging the root–rhizosphere interface using micro computed tomography: quantifying void ratio and root volume ratio profiles
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Imaging the root–rhizosphere interface using micro computed tomography: quantifying void ratio and root volume ratio profiles

机译:使用Micro Computed断层扫描成像根无根际接口:量化空隙率和根体积比轮廓

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摘要

Root growth alters soil fabric and consequently its mechanical and physical properties. Recent studies show that roots induce compaction of soil in their immediate vicinity, a region that is central for plant health. However, high quality quantification of root influence on the soil fabric, able to inform computational models is lacking from the literature. This study quantifies the relationship between soil physical characteristics and root growth, giving special emphasis on how roots in early stage formation influence the physical architecture of the surrounding soil structure. High-resolution X-ray micro-Computed Tomography (μCT) is used to acquire three dimensional images of two homogeneously-packed samples. It is observed that the void ratio profile extending from the soil-root interface into the bulk soil is altered by root growth. The roots considerably modify the immediate soil physical characteristics by creating micro cracks at the soil-root interface and by increasing void ratio. This paper presents the mechanisms that led to the observed structure as well as some of the implications that it has in such a dynamic zone.
机译:根生长改变土壤织物,因此其机械和物理性质。最近的研究表明,根系诱导土壤的衔接,即植物健康中心的地区。然而,高质量的土壤织物对土壤影响的量化,能够通知计算模型缺乏文献。本研究量化了土壤物理特征与根系生长之间的关系,特别强调早期地层的根源如何影响周围土壤结构的物理结构。高分辨率X射线微计算机断层扫描(μCT)用于获取两个均匀包装样品的三维图像。观察到从土壤根界面延伸到散装土壤中的空隙率曲线通过根生长而改变。通过在土根界面产生微裂纹并通过增加空隙率来显着地改变立即的土壤物理特性。本文介绍了导致观察到的结构的机制以及在这种动态区域中的一些含义。

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