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Brown-rot decay of copper-impregnated wood.

机译:铜浸渍木材的棕褐色腐烂。

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摘要

Copper-based preservatives will be the predominant solution for wood protection in future decades. The composition of those preservatives will likely change from copper-chromium to copper-ethanolamine, due to environmental demands. The most important drawback of copper-impregnated wood is the presence of tolerant fungal organisms that have developed an ability to degrade such preserved wood. In order to elucidate these processes, specimens (0.5x1.0x15 cm) made of Norway spruce (Picea abies) were vacuum impregnated with copper-, chromium-, and copper-ethanolamine-based aqueous solutions (cCu=0.5%), and afterwards exposed to copper-sensitive Gloeophyllum trabeum and copper-tolerant Antrodia vaillantii for various times, between 1 and 8 weeks. After incubation, specimens were isolated, and modulus of elasticity (MOE) losses determined using a nondestructive technique. Mass losses, FTIR spectra, and colour changes were measured as well. The results showed that there is significant difference between brown-rot decay caused by G. trabeum and A. vaillantii. Decay caused by A. vaillantii is more selective than that caused by G. trabeum. Additionally, it was proven that copper effectively protected spruce from G. trabeum, but not completely against A. vaillantii. Decay of copper-impregnated wood by copper-tolerant fungi is similar to decay of control, unimpregnated wood, whereas decay of copper-impregnated specimens by G. trabeum, was effectively stopped in its initial stage..
机译:铜基防腐剂将是未来几十年木材保护的主要解决方案。由于环境需求,这些防腐剂的组成可能会从铜铬变为铜乙醇胺。铜浸渍木材的最重要缺点是存在能够降解此类防腐木材的耐受性真菌生物。为了阐明这些过程,将挪威云杉(Picea abies)制成的标本(0.5x1.0x15 cm)用基于铜,铬和铜-乙醇胺的水溶液(cCu = 0.5%)进行真空浸渍,然后进行真空浸渍。在1至8周内,多次暴露于对铜敏感的Gloeophyllum trabeum和耐铜的樟芝(Antrodia vaillantii)。孵育后,分离标本,并使用非破坏性技术确定弹性模量(MOE)损失。还测量了质量损失,FTIR光谱和颜色变化。结果表明,由G. trabeum和A. vaillantii引起的褐腐腐烂之间存在显着差异。 vaillantii引起的腐烂比G. trabeum引起的腐烂更具选择性。另外,已证明铜有效地保护了云杉免受小白曲霉的侵害,但不能完全抵御vaillantii。耐铜真菌对含铜木材的腐烂与对照的未浸润木材的腐烂相似,而小白曲霉对含铜样品的腐烂在初始阶段已被有效阻止。

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