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Hydrophobic Wood Particles Developed From Cold Plasma Polymerization

机译:从冷等离子体聚合产生的疏水木颗粒

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The cost and availability of wood as made it a widely utilized material in many applications, however their inherent hydrophilic nature has limited their intrusion into other markets. At Washington State University we have developed a low-cost plasma operation that applies a polymer deposit on the surface of wood to alter the hydrophilic nature, including water diffusion. By using an atmospheric pressure weakly ionized plasma reactor wood veneers and particles were coated with nano-sized polymerized deposits on the wood cell surface. Results from contact angle and capillary rise tests showed a significant drop in water sorption of all wood substrates. The potential for this environmentally benign processing method lies not only in increasing the moisture performance and durability of WPCs, but also potentially enhancing the compatibility between wood and thermoplastic polymers. Recent work has also shown that an increase in deposition rate with modification to the reactor design providing more incentive for a potential commercial process.
机译:木材的成本和可用性使其成为许多应用中广泛利用的材料,然而它们固有的亲水性质将其侵入其侵入到其他市场上。在华盛顿州立大学,我们开发了一种低成本的等离子体操作,将聚合物沉积在木材表面上施加以改变亲水性,包括水分扩散。通过使用大气压,弱电离等离子体反应器木质胶合剂和颗粒在木细胞表面上涂有纳米大小的聚合沉积物。接触角和毛细管升高试验结果显示出所有木材基材的水吸附中的显着下降。这种环境良性处理方法的潜力不仅在于增加WPC的水分性能和耐久性,而且潜在地提高木材和热塑性聚合物之间的相容性。最近的工作还表明,对反应器设计的改进增加了沉积速率,为潜在的商业过程提供了更多的激励。

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