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首页> 外文期刊>International Biodeterioration & Biodegradation >The resistance of wood chemically modified with isocyanates: the role of moisture content in decay suppression
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The resistance of wood chemically modified with isocyanates: the role of moisture content in decay suppression

机译:用异氰酸酯化学改性的木材的抗性:水分含量在抑制腐烂中的作用

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摘要

This paper discusses the moisture content of sound and decayed Corsican pine (Pinus nigra) after modification with isocyanates (n-butyl isocyanate (BuNCO) and 1,6-diisocyanatehexane (HDI)) at specified intervals of weight percent gain (WPG). The main effects of decay fungi (brown and white rot) and levels of modification (WPG) on moisture contents of modified samples are also examined. Corsican pine reacted with isocyanates enhanced the hydrophobic (restrained water) nature of wood. The equilibrium moisture content of chemically modified wood decreases progressively with increasing WPG. Basidiomycete decay tests demonstrated protection by chemical modification. Wood moisture contents after soil block testing are significantly influenced by decay fungi and by the extent of reaction (WPG). Moisture uptake and susceptibility to decay of modified wood are higher when exposed to Coniophora puteana than other decay fungi. Corsican pine cross-linked by reaction with HDI is less susceptible to decay and is more hydrophobic than samples reacted with the single-site reactant BuNCO at comparable WPG.
机译:本文讨论了在指定的增重百分比(WPG)间隔内,用异氰酸酯(异氰酸正丁酯(BuNCO)和1,6-二异氰酸酯己烷(HDI))改性后的声音和腐烂的科西嘉松(Pinus nigra)的水分含量。还检查了腐烂真菌(褐腐病和白腐病)和改性水平(WPG)对改性样品水分含量的主要影响。科西嘉松与异氰酸酯反应增强了木材的疏水性(约束水)性质。化学改性木材的平衡水分含量随着WPG的增加而逐渐降低。担子菌衰变试验证明了通过化学修饰的保护作用。土块测试后的木材水分含量受腐烂真菌和反应程度(WPG)的影响很大。暴露于腐殖菌中时,水分吸收和对改性木材腐烂的敏感性高于其他腐烂真菌。与可比的WPG与单点反应物BuNCO反应的样品相比,通过与HDI反应交联的科西嘉松不易腐烂,并且疏水性更高。

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