炭化
烧焦
可燃性
点火系统
材料科学
易燃液体
火焰蔓延
环境科学
热解
复合材料
工作(物理)
青木
燃烧
松木
防火性能
制浆造纸工业
废物管理
工程类
耐火性
植物
化学
木材干燥
有机化学
水分
生物
航空航天工程
机械工程
作者
Shaorun Lin,Yunzhu Qin,Xinyan Huang,Michael J. Gollner
标识
DOI:10.1016/j.firesaf.2023.103745
摘要
Wood is one of the most commonly-used and sustainable construction materials, but it is flammable in nature. Pre-charring is an ancient approach used to protect wooden construction materials against biochemical impacts, but its effectiveness in improving fire performance is still poorly understood. This work proposes a novel method to generate engineered wood with a uniform and robust surface char layer through slow pyrolysis under low thermal irradiation of 20 kW/m2. We found that the flammability of the pre-charred wood can be significantly reduced under higher irradiations up to 50 kW/m2 by increasing the ignition time by up to seven-fold and doubling the ignition temperature to about 670 °C. For the tested wood species (Merbau), we quantify a minimum char-layer thickness of 6 ± 1 mm to achieve effective fire retardancy. The fire hazards of pre-charred wood are also mitigated significantly, where observed flames become weaker, thinner, and bluer than that of the virgin wood. The peak heat release rate of burning pre-charred wood is reduced by over 50%, helping maintain the fire resilience of timber structures. This work quantifies the fire performance of pre-charred wood, highlighting a promising direction toward fire-safe timber construction materials.
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