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Effect of drying on the hydroxyl accessibility and sorption properties of pressurized hot water extracted wood

机译:干燥对加压热水萃取木材羟基可渗透性和吸附性能的影响

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摘要

Hot water extraction (HWE) treatment changes the physicochemical properties of the wood, including hygroscopic properties. HWE treatment decreases the hydroxyl accessibility of the wood, but the relevance of other mechanisms that change hygroscopic properties are not fully understood. This study investigates the effect of drying on the hydroxyl accessibility and sorption properties of wood. Pressurized hot water extraction (HWE) treatment was applied at 140 degrees C for 1-5 h to Scots pine (Pinus sylvestris L.) sapwood samples in order to remove increasingly more hemicellulose from the cell wall matrix. Following HWE treatment, half of the wood samples were oven-dried and then re-soaked, while the other half was kept in a fully saturated state. The samples were investigated by applying a new approach that was based on the deuteration of accessible hydroxyl groups, which was followed by the measurement of mass loss due to re-protonation. Sorption properties of the wood samples were studied by measuring moisture content, sorption isotherms and dimensional changes. The present results showed that accessible hydroxyl group content decreased only due to hemicellulose removal during the HWE treatment and was unaffected by oven-drying. However, oven-drying enhanced the effect of HWE treatments in reducing the water-saturated dimensions and the moisture content of wood. Therefore, the additional reductions in hygroscopicity and water-saturated dimensions were not related to changes in sorption site density.
机译:热水萃取(HWE)治疗改变了木材的物理化学性质,包括吸湿性。 HWE治疗降低了木材的羟基可接受性,但是改变吸湿性特性的其他机制的相关性尚未完全理解。本研究研究了干燥对木材羟基可接近性和吸附性能的影响。将加压的热水萃取(HWE)处理在140℃下施加1-5小时,以苏格兰松(Pinus Sylvestris L.)Sapwood样品,以从细胞壁基质中除去越来越多的半纤维素。在HWE处理之后,将一半的木质样品烘箱干燥,然后重新浸泡,而另一半保持在完全饱和状态。通过施加基于可获得的羟基氘的新方法来研究样品,然后通过重新质子化而进行质量损失的测量。通过测量水分含量,吸附等温线和尺寸变化来研究木样品的吸附性能。本结果表明,由于HWE处理期间的半纤维素除去,可获得的羟基含量仅降低,并且不受烘箱干燥的影响。然而,烘箱干燥增强了HWE治疗在降低水饱和尺寸和木材水分含量方面的作用。因此,吸湿性和水饱和尺寸的额外减少与吸附位点密度的变化无关。

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  • 来源
    《Wood Science and Technology》 |2021年第5期|1203-1220|共18页
  • 作者单位

    Aalto Univ Sch Chem Engn Dept Bioprod & Biosyst POB 16300 Aalto 00076 Finland;

    Aalto Univ Sch Chem Engn Dept Bioprod & Biosyst POB 16300 Aalto 00076 Finland|Univ Hamburg Inst Wood Sci Dept Biol Leuschnerstr 91C D-21031 Hamburg Germany;

    Aalto Univ Sch Chem Engn Dept Bioprod & Biosyst POB 16300 Aalto 00076 Finland;

    Nat Resources Inst Finland Prod Syst Tietotie 2 Espoo 02150 Finland;

    Aalto Univ Sch Chem Engn Dept Bioprod & Biosyst POB 16300 Aalto 00076 Finland;

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  • 正文语种 eng
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  • 入库时间 2022-08-19 02:28:11

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