Zhang Shaodi, Wang Mingzhi, Huang Yuxiang, Zhang Yahui, Yu Wenji
Research Institute of Wood Industry, Chinese Academy of Forestry Beijing 100091 China
MOE Key Laboratory of Wooden Material Science and Application, Beijing Forestry University Beijing 100083 China
RSC Adv. 2025 Jul 2;15(28):22565-22575. doi: 10.1039/d5ra03148f. eCollection 2025 Jun 30.
The combination of inorganic porous nanomaterials with metal oxides has shown great prospects as flame retardants or flame-retardant synergists in wood composites. In this work, iron oxide-modified hierarchically porous 4A (FeH4A) zeolites were prepared and applied as synergists of ammonium polyphosphate (APP) for flame retardant treatment of wood composites. The effects of FeH4A zeolites with various degrees of modification (0.5FeH4A, 1FeH4A, 5FeH4A, and 10FeH4A) on flame retardancy of wood composites were investigated. With proper modification, the 0.5FeH4A zeolite favored the decomposition process of APP at low temperatures, leading to better flame retardancy. The peak heat release rate (HRR) and total heat release (THR) of W-APP-0.5 FeH4A were decreased by 15.8% and 16.7%, respectively, compared with those of W-APP-H4A. However, severe modification results in damage of the zeolite framework. This change along with the excess iron oxide weaken the thermal stability of the char residue, which negatively affects flame retardancy. Further investigation of the pyrolysis products and morphologies of the char residue indicates that the FeH4A zeolites play a role in both gaseous and condensed phase flame-retardant mechanisms. This study provides information for the development of novel flame retardants and effective synergists for wood composites.
无机多孔纳米材料与金属氧化物的组合在木质复合材料中作为阻燃剂或阻燃增效剂展现出了巨大的前景。在本研究中,制备了氧化铁改性的分级多孔4A(FeH4A)沸石,并将其用作聚磷酸铵(APP)的增效剂用于木质复合材料的阻燃处理。研究了不同改性程度(0.5FeH4A、1FeH4A、5FeH4A和10FeH4A)的FeH4A沸石对木质复合材料阻燃性能的影响。经过适当改性,0.5FeH4A沸石有利于APP在低温下的分解过程,从而具有更好的阻燃性。与W-APP-H4A相比,W-APP-0.5 FeH4A的峰值热释放速率(HRR)和总热释放量(THR)分别降低了15.8%和16.7%。然而,过度改性会导致沸石骨架受损。这种变化以及过量的氧化铁会削弱炭渣的热稳定性,对阻燃性产生负面影响。对热解产物和炭渣形态的进一步研究表明,FeH4A沸石在气相和凝聚相阻燃机理中均发挥作用。本研究为开发新型木质复合材料阻燃剂和有效增效剂提供了信息。