Khalaf Yasmina, Sonnier Rodolphe, Brosse Nicolas, El Hage Roland
Laboratory of Physical Chemistry of Materials (LCPM), Campus Fanar, Faculty of Sciences II, Lebanese University, Fanar, Jdeidet P.O. Box 90656, Lebanon.
Department of Mechanical Wood Technology, Faculty of Forest Industry, University of Forestry, 1756 Sofia, Bulgaria.
Polymers (Basel). 2025 Jan 19;17(2):241. doi: 10.3390/polym17020241.
Increasing the flame retardancy of lignocellulosic materials such as × can effectively enable their wide use. This study examines the fireproofing process of Miscanthus particles using an eco-friendly process by grafting phytic acid and urea in aqueous solution. Miscanthus particles underwent a steam explosion step before being grafted. Fireproof binderless particle panels were manufactured from miscanthus particles with or without adding olive pomace by hot-pressing. The effect of the steam explosion and/or the flame-retardant treatment on the morphology, chemical composition and thermal stability of the particles, as well as the thermal stability of the panels, was investigated. The results showed that water impregnation followed by a steam explosion at 210 °C for 8 min resulted in particles that were rich in lignin and more homogeneous in size (length and width). Fireproof particles were produced with relatively low P and N contents. The flame retardancy of the binderless particle panels was significantly improved when using miscanthus particles treated with phytic acid and urea, as shown by a reduced heat release (HRR) and an increased time-to-ignition. However, the presence of olive pomace significantly decreased the flame retardancy of the panels. Binderless particle panels prepared from grafted miscanthus particles showed the best fire properties and are considered fireproof.
提高木质纤维素材料(如×)的阻燃性能够有效促进其广泛应用。本研究通过在水溶液中接枝植酸和尿素,采用环保工艺考察了芒草颗粒的防火过程。芒草颗粒在接枝前经过了蒸汽爆破步骤。通过热压由添加或不添加橄榄果渣的芒草颗粒制备了无胶防火刨花板。研究了蒸汽爆破和/或阻燃处理对颗粒的形态、化学成分和热稳定性以及刨花板热稳定性的影响。结果表明,在210℃下蒸汽爆破8分钟后再进行水浸渍,得到的颗粒富含木质素且尺寸(长度和宽度)更加均匀。制备出了磷和氮含量相对较低的防火颗粒。用植酸和尿素处理过的芒草颗粒制备无胶刨花板时,其阻燃性显著提高,表现为热释放速率(HRR)降低和着火时间增加。然而,橄榄果渣的存在显著降低了刨花板的阻燃性。由接枝芒草颗粒制备的无胶刨花板具有最佳的防火性能,被认为是防火的。