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Sorption-Related Characteristics of Surface Charred Spruce Wood

机译:表面炭化云杉木材的吸附相关特性

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摘要

Surface charring of wood is a one-sided thermal modification process that can be used to create a hydrophobic, durable surface to exterior claddings. Spruce (Picea abies L.) wood samples were charred with a hot plate and several time-temperature combinations while using simultaneous surface compression. Temperature profile, water sorption, cupping after water exposure and density profile were measured. Furthermore, changes in the microstructure and surface functional groups were investigated by scanning electron microscopy and photoacoustic FT-IR spectroscopy. Results show that surface charring notably improves the hydrophobicity measured by contact angle, water floating and dynamic vapour sorption. Increased holding time during charring reduced the sorption but at the same time increased the dimensional instability measured by cupping. The density profile showed a shifting density peak with more severe modification regimes, indicating a more porous surface. The PAS-FTIR showed increased aromaticity of the surface that was also present in the pyrolysis zone beneath the surface in samples modified with longer holding time. Higher modification temperature affected the sorption as well as cupping positively but it is possible similar results can be obtained with lower temperature and longer holding time.
机译:木材的表面炭化是一种单面热改性工艺,可用于为外部覆层创建疏水,耐用的表面。将云杉(Picea abies L.)木材样品用热板和几种时间-温度组合烧焦,同时使用表面压缩。测量温度曲线,吸水率,水暴露后的拔罐和密度曲线。此外,通过扫描电子显微镜和光声FT-IR光谱研究了微观结构和表面官能团的变化。结果表明,表面炭化可显着改善通过接触角,水浮和动态蒸气吸附测量的疏水性。在炭化过程中增加的保持时间会减少吸附,但同时会增加通过拔罐测得的尺寸不稳定性。密度分布图显示具有更严格的修饰方式的移动密度峰,表明表面更多孔。 PAS-FTIR显示出增加的表面芳香性,该芳香性还存在于在表面下的较长时间的改性样品中的热解区中。较高的改性温度对吸附和拔罐有积极影响,但可能在较低的温度和较长的保持时间下获得相似的结果。

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