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MR Study of Water Distribution in a Beech (Fagus sylvatica) Branch Using Relaxometry Methods

机译:使用弛豫方法研究山毛榉(Fagus Sylvatica)分支水分布的研究

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摘要

Wood is a widely used material because it is environmentally sustainable, renewable and relatively inexpensive. Due to the hygroscopic nature of wood, its physical and mechanical properties as well as the susceptibility to fungal decay are strongly influenced by its moisture content, constantly changing in the course of everyday use. Therefore, the understanding of the water state (free or bound) and its distribution at different moisture contents is of great importance. In this study, changes of the water state and its distribution in a beech sample while drying from the green (fresh cut) to the absolutely dry state were monitored by 1D and 2D 1H NMR relaxometry as well as by spatial mapping of the relaxation times T1 and T2. The relaxometry results are consistent with the model of homogeneously emptying pores in the bioporous system with connected pores. This was also confirmed by the relaxation time mapping results which revealed the moisture transport in the course of drying from an axially oriented early- and latewood system to radial rays through which it evaporates from the branch. The results of this study confirmed that MRI is an efficient tool to study the pathways of water transport in wood in the course of drying and is capable of determining the state of water and its distribution in wood.
机译:木材是一种广泛使用的材料,因为它是环保,可再生,更便宜的。由于木材的吸湿性,其物理和机械性能以及对真菌衰减的敏感性受到其水分含量的强烈影响,在日常使用过程中不断变化。因此,了解水状态(自由或束缚)及其在不同水分含量的分布非常重要。在该研究中,通过1D和2D 1H NMR弛豫测量测量从绿色(鲜切割)从绿色(鲜切割)中干燥到绝对干燥状态的同时将水状态及其分布的变化和其在绝对干燥状态下进行干燥。并且通过弛豫时间T1的空间映射和t2。放松的结果与具有连接孔的生物富摩系统中的均匀清空孔的模型一致。这也通过弛豫时间映射结果证实了在从轴向定向的早期和胶水系统到径向射线的过程中揭示了水分运输,通过其从分支中蒸发的径向射线。本研究的结果证实,MRI是一种有效的工具,可以在干燥过程中研究木材中的水运输路径,并能够确定水中的水状态及其在木材中的分布。

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