Kolya Haradhan, Kang Chun-Won
Department of Housing Environmental Design, Research Institute of Human Ecology, College of Human Ecology, Jeonbuk National University, Jeonju 54896, Jeonbuk, Republic of Korea.
Polymers (Basel). 2024 Jul 17;16(14):2045. doi: 10.3390/polym16142045.
The increasing global commitment to carbon neutrality has propelled a heightened focus on sustainable construction materials, with wood emerging as pivotal due to its environmental benefits. This review explores the development and application of eco-friendly polymer nanocomposite coatings to enhance wood's fire resistance, addressing a critical limitation in its widespread adoption. These nanocomposites demonstrate improved thermal stability and char formation properties by integrating nanoparticles, such as nano-clays, graphene oxide, and metal oxides, into biopolymer matrices. This significantly mitigates the flammability of wood substrates, creating a robust barrier against heat and oxygen. The review provides a comprehensive examination of these advanced coatings' synthesis, characterization, and performance. By emphasizing recent innovations and outlining future research directions, this review underscores the potential of eco-friendly polymer nanocomposite coatings as next-generation fire retardants. This advancement supports the expanded utilization of wood in sustainable construction practices and aligns with global initiatives toward achieving carbon neutrality.
全球对碳中和的日益重视推动了对可持续建筑材料的高度关注,木材因其环境效益而成为关键材料。本综述探讨了环保型聚合物纳米复合涂层的开发与应用,以提高木材的耐火性,解决其广泛应用中的一个关键限制。这些纳米复合材料通过将纳米颗粒(如纳米粘土、氧化石墨烯和金属氧化物)整合到生物聚合物基体中,展现出改善的热稳定性和炭形成特性。这显著降低了木材基材的可燃性,形成了一道抵御热和氧气的坚固屏障。本综述全面考察了这些先进涂层的合成、表征和性能。通过强调近期的创新并概述未来的研究方向,本综述强调了环保型聚合物纳米复合涂层作为下一代阻燃剂的潜力。这一进展支持了木材在可持续建筑实践中的更广泛应用,并与全球实现碳中和的倡议相一致。