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Bio-oil from a fast pyrolysis pilot plant as antifungal and hydrophobic agent for wood preservation

机译:快速热解试验工厂的生物油,用作木材防腐的抗真菌剂和疏水剂

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Residual wood fines were used as raw material to produce fast pyrolysis bio-oil in a pilot plant for further utilization as antifungal and hydrophobic agent for wood protection. Phenolic compounds derived from lignin mostly composed the obtained bio-oil. Pinewood was impregnated with natural and diluted bio-oil aiming three different final loads. Scanning electron microscopy images revealed that the internal surface of the tracheids was coated by the bio-oil. Fourier-transformed infrared analysis showed no chemical reactions between wood and bio-oil, while thermogravimetric studies stated changes in the thermal stability of the impregnated pinewood. The bio-oil impregnation proved to be effective to decrease the water absorption and wettability of the pinewood." In addition, the bio-oil impregnated pinewood with low load (7.95%) had decay resistance improved by 2.6 and 4.5 times against T. versicolor and G. trabeum fungi, respectively, meanwhile the highest bio-oil loading (81.3%) inside pinewood caused the mortality of the whole fungal colony in the first days of test. (C) 2016 Elsevier B.V. All rights reserved.
机译:残留的木屑被用作中试工厂中快速产生热解生物油的原料,以进一步用作木材保护的抗真菌剂和疏水剂。源自木质素的酚类化合物主要构成了获得的生物油。针对三种不同的最终负载量,松木浸有天然和稀释的生物油。扫描电子显微镜图像显示,气管的内表面被生物油覆盖。傅里叶变换的红外分析表明木材与生物油之间没有化学反应,而热重分析表明浸渍松木的热稳定性发生了变化。事实证明,生物油浸渍可有效降低松木的吸水率和润湿性。”此外,低负荷(7.95%)的生物油浸渍松木的耐腐性比普通云杉提高了2.6和4.5倍。 (C)2016 Elsevier BV保留所有权利。同时,松木内部最高的生物油载量(81.3%)引起了整个真菌菌落的死亡。

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