Shao Hao, Wang Zihang, Jiang Shuguang, Zhang Yue, Xi Xian, Wu Zhengyan
Key Laboratory of Gas and Fire Control for Coal Mines, China University of Mining & Technology, Ministry of Education, Xuzhou, Jiangsu221116, People's Republic of China.
School of Safety Engineering, China University of Mining & Technology, Xuzhou, Jiangsu221116, People's Republic of China.
ACS Omega. 2023 Feb 6;8(6):5947-5957. doi: 10.1021/acsomega.2c07827. eCollection 2023 Feb 14.
A new type of efficient and anti-extinguishing materials to inhibit coal spontaneous combustion is required because of the current situation of the short activity cycle of existing anti-extinguishing technology. Now, polyethylene glycol (PEG) was used as a water-absorbing monomer to polymerize various substances to prepare an AB-type mining thermosensitive hydrogel that was obviously thermoresponsive. The thermosensitive hydrogel, which is low-cost and stable, can be stored for a long time, and it is prepared by compounding A and B components. The orthogonal experiments determined the optimal ratio of component A, while the controlling variable experiments determined the optimal ratio of component B. The thermal stability and flame-retardant properties of the AB-type thermosensitive hydrogel were analyzed during the process of natural oxidation of coal, and the temperature responsiveness of thermosensitive hydrogels was investigated at different temperatures. The results showed that the optimal ratio of polyethylene glycol:methyl cellulose:sodium carboxymethyl cellulose:guar gum of component A was 6:6:1.2:1.5; and the ratio of bentonite:kaolin:Mg(OH) of component B was 2:1:1. When the ratio of component A to component B was 1:2, the AB-type thermosensitive hydrogel shows the best flame retardant properties. When this ratio of gel was applied to coal samples, the weight loss was just 6%, and the reduction of CO was as high as 72.6%. The gel, which was convenient for transportation in mining pipelines, had strong fluidity at low temperatures and rapid temperature response. As the temperature rose, a phase transition occurred gradually, and after the phase transition, a high-viscosity solid substance was formed, whose viscosity was approximately 11 times that of the room temperature. It plugged the pores effectively, and in the high-temperature region, the occurred phase transition gathered to extinguish the fire. It is a new type of high-efficiency anti-extinguishing material with excellent properties.
由于现有灭火技术活性周期短的现状,需要一种新型高效的抑制煤炭自燃的灭火材料。目前,聚乙二醇(PEG)被用作吸水单体来聚合各种物质,制备出一种具有明显热响应性的AB型矿用热敏水凝胶。这种低成本且稳定的热敏水凝胶可长期储存,由A、B两组分复合而成。通过正交实验确定了组分A的最佳比例,通过控制变量实验确定了组分B的最佳比例。在煤自然氧化过程中分析了AB型热敏水凝胶的热稳定性和阻燃性能,并研究了热敏水凝胶在不同温度下的温度响应性。结果表明,组分A中聚乙二醇:甲基纤维素:羧甲基纤维素钠:瓜尔胶的最佳比例为6:6:1.2:1.5;组分B中膨润土:高岭土:氢氧化镁的比例为2:1:1。当组分A与组分B的比例为1:2时,AB型热敏水凝胶表现出最佳的阻燃性能。将该比例的凝胶应用于煤样时,重量损失仅为6%,CO的减少量高达72.6%。该凝胶便于在采矿管道中运输,在低温下具有很强的流动性和快速的温度响应。随着温度升高,逐渐发生相变,相变后形成高粘度固体物质,其粘度约为室温下的11倍。它有效地堵塞了孔隙,在高温区域,发生的相变聚集起来灭火。它是一种性能优异的新型高效灭火材料。