三维结构互穿型高分子材料对煤自燃的抑制特性研究

    Study on characteristics of three-dimensional interpenetrating polymer materials for inhibiting coal spontaneous combustion

    • 摘要: 为解决平煤股份八矿回采工作面自然发火问题,研制了三维结构互穿型高分子防灭火材料,并通过微观形貌及保水性分析,考察了高分子材料的凝胶特性。利用同步热分析仪及程序升温实验,研究了该材料对平煤股份八矿戊9.10−21070工作面煤自然发火的抑制作用,分析了处理煤样的分阶段特征与热释放规律。结果表明:新型高分子材料骨架呈互穿型三维结构,可包拢大量结合水,提高了体系热稳定性与吸热降温能力,温度低于100 ℃时失水率保持在10%以下,超过100 ℃后失水率低于40%,150 ℃下可持续保水12 h以上;该材料处理煤样与原煤相比燃烧特征温度点(t1~t6)分别延后了7、16、56、31、63、85 ℃,最大失重速率降低了26.19%,稳燃、可燃及综合燃烧性参数分别降低了8.24%、21.90%、23.50%,最大热流速率降低了33.14%,吸热焓值增加了11.43%,总体放热量减少了45.27%,三维结构互穿型高分子材料可有效延缓煤氧化放热进程;同时,在100 ℃下处理后煤样的耗氧率降低了26.78%,CO平均阻化率达70.13%,在120 ℃时,最大放热强度降低了41.26%,快速释放温度点延后20 ℃,整个过程表观活化能增加了17.55 kJ/mol。研究表明,三维结构互穿型高分子材料能实现有效隔氧、降温、降低热辐射,对煤自燃具有良好的抑制作用。

       

      Abstract: To address the spontaneous combustion issue in the working face of No.8 Mine of Pingdingshan Tianan Coal Mining Co., Ltd., a three-dimensional interpenetrating polymer material for fire prevention and extinguishing was developed. The gel properties of the polymer material were investigated through microscopic morphology and water retention analysis. Using a synchronous thermal analyzer and temperature-programmed experiments, the inhibitory effect of the material on spontaneous combustion of coal from the Wu 9.10-21070 working face of No.8 Mine was studied, and the staged characteristics and heat release laws of the treated coal samples were analyzed. The results show that the new polymer material has an interpenetrating three-dimensional network structure, which can encapsulate a large amount of bound water and improve the thermal stability and endothermic cooling capacity of the system. When the temperature is below 100 ℃, the water loss rate remains below 10%; above 100 ℃, the water loss rate is less than 40%, and water retention can last more than 12 h at 150 ℃. Compared with raw coal, the characteristic combustion temperatures (t1-t6) of coal samples treated with the material are delayed by 7, 16, 56, 31, 63, and 85 ℃, respectively. The maximum weight loss rate decreases by 26.19%, the steady combustion, flammability and comprehensive combustion parameters decrease by 8.24%, 21.90%, and 23.50%, respectively. The maximum heat flow rate decreases by 33.14%, the endothermic enthalpy increases by 11.43%, and the total heat release decreases by 45.27%. The three-dimensional interpenetrating polymer material can effectively delay the oxidation and heat release process of coal. At 100 ℃, the oxygen consumption rate of the treated coal samples decreases by 26.78%, and the average CO inhibition rate reaches 70.13%. At 120 ℃, the maximum heat release intensity decreases by 41.26%, the rapid heat release temperature is delayed by 20 ℃, and the apparent activation energy increases by 17.55 kJ/mol. The study indicates that the three-dimensional interpenetrating polymer material can effectively isolate oxygen, reduce temperature and weaken heat radiation, and exhibits excellent inhibition effect on coal spontaneous combustion.

       

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