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轴向压力作用下煤田火区贫氧燃烧特性及剩余热力学

Characteristics for Oxygen-Lean Combustion and Residual Thermodynamics in Coalfield-Fire Zones within Axial Pressure.

作者信息

Xu Yongliang, Bu Yunchuan, Chen Menglei, Yu Minggao, Wang Lanyun

机构信息

School of Safety Science and Engineering, Henan Polytechnic University, Jiaozuo 454003, China.

Collaborative Innovation Center for Coal Safety Production & High-Efficient-Clean Utilization by Provincial and Ministerial Co-construction, Jiaozuo 454003, China.

出版信息

ACS Omega. 2020 Aug 24;5(35):22502-22512. doi: 10.1021/acsomega.0c03108. eCollection 2020 Sep 8.

Abstract

Coalfield fires during coal mining have become a major problem in the world today. To effectively prevent such disasters, we established an experimental platform to measure the spontaneous combustion characteristics of large-scale pressurized coal; thermal analysis experiments and microscopic analysis of briquettes under different axial pressures were carried out. It can be seen from the results that when the axial pressure is 4 MPa, the heating rate of the oxidative combustion of coal samples is accelerated, the crossing point temperature is lower (reduced by 71.09 °C), the activation energy is reduced (the second stage is decreased by 21.3 kJ/mol), and the oxidative combustion is more intense. Simultaneously, the porosity evolution process of briquettes under different axial pressures is simulated. Through calculation, it can be seen that the porosity and thermal conductivity show a linear increasing trend. The basis for the increase in the internal oxygen supply channels and increase in oxygen consumption when the axial pressure is 4 MPa is given. Through thermogravimetric-differential scanning calorimetry analysis, it is found that the maximum mass loss rate and maximum mass growth rate of residual coal after combustion under an axial pressure of 4 MPa are low, the residual rate after combustion is large, and the flammability rate is low when reoxidized, while complete combustion oxidation releases more heat. The application of axial pressure will change the combustion characteristics of briquettes, and the promotion effect is more obvious at 4 MPa. Analyzing the laws of the coal-oxygen composite reaction under different axial pressures provides theoretical guidance for the prevention and control of multistress coupling fields in coalfield-fire areas.

摘要

煤炭开采过程中的煤田火灾已成为当今世界的一个重大问题。为有效预防此类灾害,我们搭建了一个实验平台来测定大规模加压煤的自燃特性;开展了不同轴向压力下压块的热分析实验和微观分析。从结果可以看出,当轴向压力为4 MPa时,煤样氧化燃烧的升温速率加快,交叉点温度降低(降低了71.09℃),活化能降低(第二阶段降低了21.3 kJ/mol),氧化燃烧更剧烈。同时,模拟了不同轴向压力下压块的孔隙率演化过程。通过计算可知,孔隙率和热导率呈线性增加趋势。给出了轴向压力为4 MPa时内部氧气供应通道增加和氧气消耗增加的依据。通过热重-差示扫描量热分析发现,轴向压力为4 MPa时燃烧后残余煤的最大质量损失率和最大质量增长率较低,燃烧后残余率较大,再氧化时易燃率较低,而完全燃烧氧化释放的热量更多。轴向压力的施加会改变压块的燃烧特性,在4 MPa时促进作用更明显。分析不同轴向压力下煤-氧复合反应规律,为煤田火区多应力耦合场的防治提供理论指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3c2/7482241/ef150fa6af02/ao0c03108_0002.jpg

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