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Renewable nanobrick wall coatings for fire protection of wood

机译:可再生纳米波里克壁涂料,用于木材的防火

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摘要

Home-structure fires account for 77% of fire deaths and result in more than USS7.7 billion in property damage every year. Wood is a major component in home construction and decoration due to its mechanical properties, aesthetic appeal and renewability, but its inherent flammability poses an ongoing risk. Layer-by-layer-assembled nanocoatings are effective for improving the fire safety of a variety of substrates, but the heterogeneous nature of wood's surface complicates this aqueous multilayer process. Two different surface treatments, carboxylation and an alkaline wash, are studied here to increase the surface charge of wood and improve the deposition of nanobrick walls composed of renewable chitosan (CH) and vermiculite (VMT) clay. These treatments improve the penetration and performance of these nanocoatings on wood. Wood pretreated with an alkaline wash and coated with just two CH/ VMT bilayers exhibits a time to ignition double that of the uncoated wood. This aqueous surface treatment provides a unique opportunity to improve the safety of wood construction.
机译:家庭结构火灾占87%的消防死亡,每年占财产损失超过37亿美元。由于其机械性能,审美吸引力和可再生性,木材是家庭建筑和装饰的主要组成部分,但其固有的易燃性构成了持续的风险。逐层组装的纳米织物对于提高各种基材的火灾安全性是有效的,但木材表面的异质性使该含水多层工艺复杂化。这里研究了两种不同的表面处理,羧化和碱性清洗,以增加木材的表面电荷,并改善由可再生壳聚糖(CH)和蛭石(VMT)粘土组成的纳米杆壁的沉积。这些治疗改善了这些纳米织物在木材上的渗透和性能。用碱性洗涤用碱性洗涤和涂有两个CH / VMT双层的木材,表现出了点火的时间,以点燃未涂层的木材。该水性表面处理提供了提高木材建筑安全性的独特机会。

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