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The effect of air plasma treatment at atmospheric pressure on thermally modified wood surfaces

机译:大气压下空气等离子体处理对热改性木材表面的影响

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This study tests the hypothesis that thermal modification of wood influences the effectivity of air plasma treatment. Micro-veneers of European beech, Scots pine and Norway spruce were thermally modified at two different temperatures and subsequently plasma-treated for 1 and 3 s. The veneer surfaces were characterized in terms of morphology, wetting behaviour and surface chemistry. No severe changes in the veneer surfaces due to plasma treatment were observed by scanning electron microscopy. Plasma treatment increased surface free energy and wettability by water and urea-formaldehyde adhesive; it was more effective on thermally modified wood than on unmodified wood. X-ray photoelectron spectroscopy revealed a similar distribution of oxygen-containing functional groups on the wood surface after plasma treatment of thermally modified and unmodified beech wood. It is suggested that enhanced wettability through plasma treatment is due to the generation of carboxyl groups within the lignin network, which contribute to the polar part of the surface free energy. The high effectiveness of plasma treatment on thermally modified wood might thus be explained by its high relative proportion of lignin.
机译:这项研究检验了木材热改性影响空气等离子体处理效果的假设。对欧洲山毛榉,苏格兰松树和挪威云杉的微饰面在两个不同的温度下进行了热改性,随后进行了等离子处理1和3 s。单板表面通过形态,润湿行为和表面化学特性进行表征。通过扫描电子显微镜未观察到由于等离子体处理导致的胶合板表面的严重变化。等离子体处理通过水和脲醛胶粘剂提高了表面自由能和可湿性;它在热改性木材上比未改性木材上更有效。 X射线光电子能谱显示,经过等离子体处理的热改性和未改性的山毛榉木,含氧官能团在木材表面的分布相似。提出通过等离子体处理提高的可润湿性是由于木质素网络内羧基的产生,其有助于表面自由能的极性部分。因此,用木质素的相对比例高可以解释在热改性木材上进行等离子处理的高效率。

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  • 来源
    《Wood Science and Technology 》 |2016年第6期| 1227-1241| 共15页
  • 作者单位

    Univ Gottingen, Dept Wood Biol & Wood Prod, Busgenweg 4, D-37077 Gottingen, Germany;

    Univ Appl Sci & Arts, Dept Plasma & Laser Technol, Von Ossietzky Str 99, D-37085 Gottingen, Germany|Fraunhofer IST, Applicat Ctr Plasma & Photon, Von Ossietzky Str 100, D-37085 Gottingen, Germany;

    Univ Appl Sci & Arts, Dept Plasma & Laser Technol, Von Ossietzky Str 99, D-37085 Gottingen, Germany|Fraunhofer IST, Applicat Ctr Plasma & Photon, Von Ossietzky Str 100, D-37085 Gottingen, Germany;

    Univ Gottingen, Dept Wood Biol & Wood Prod, Busgenweg 4, D-37077 Gottingen, Germany;

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