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Effect of natural weathering on water absorption and pore size distribution in thermally modified wood determined by nuclear magnetic resonance

机译:自然风化对核磁共振测定的热改性木材吸水和孔径分布的影响

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Thermally modified wood (TMW) is widely used in outdoor applications due to its advanced properties towards weathering stresses. Although the structure changes of TMW from weather factors have been reported, investigation of the quantitative analysis of water states and cell wall structure of TMW after weathering is limited. In this work, the amount of bound water, fiber saturation point (FSP), cell wall pores, and free water distribution of thermally modified Scots pine, Norway spruce, and European ash were measured before and after a 2-year natural weathering via NMR relaxometry, cryoporometry, and magnetic resonance imaging. The results show that weathering increased T-2 relaxation time of lumens, indicating the degradation of tracheids and vessels, especially in TMW compared to unmodified wood. The amounts of bound water, FSP value, and cell wall pores were increased after weathering; however, an increase in thermal modification intensity resulted in lower FSP and limited the increase in number of pores. In summary, TMW showed better performance than unmodified wood after weathering.
机译:由于其朝向耐候性应力的先进性能,热改性木材(TMW)广泛用于户外应用。据报道,虽然从天气因子从天气因子的结构变化,但风化后的TMW的水状态和细胞壁结构的定量分析。在这项工作中,在通过NMR的2年天然风化之前和之后测量了热改性苏格兰松树,挪威云杉和欧洲灰的结合水,纤维饱和点(FSP),细胞壁孔隙和自由水分布的量放松,低温测定和磁共振成像。结果表明,风化增加了流明的T-2弛豫时间,表明Thachids和血管的降解,特别是与未修饰的木材相比的TMW。在风化之后增加了水,FSP值和细胞壁孔的量;然而,热改性强度的增加导致较低的FSP,并限制孔数量的增加。总之,在风化后,TMW显示出比未修饰的木材更好的性能。

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