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Study on the explosion characteristics of methane-air with coal dust originating from low-temperature oxidation of coal

机译:煤低温氧化产生煤尘对甲烷-空气的爆炸特性研究

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摘要

The aim of this research was to reveal the explosion characteristics of methane-air with the admixtures of low-temperature oxidized coal dust. For this purpose, the particles (48-75 mu m) of raw and oxidized coal dust with oxidation temperature of 80 degrees C, 160 degrees C and 240 degrees C were sampled. The industrial analysis and surface morphology of coal dust after low-temperature oxidation were comparatively investigated. In addition, the explosion parameters and flame propagation behaviors of methane-air/coal dust mixtures were monitored and analyzed by a 20 L spherical vessel reactor and a high speed camera, respectively. The results indicated that coal dust after low-temperature oxidation showed a significant decrease in the content of moisture and volatiles, and more cracks and pores were formed on their surface. The explosion experiments revealed that the coal dust after low-temperature oxidation of 240 degrees C had prolonged the combustion time of methane-air/coal dust mixtures by 81.69%, and increased the maximum overpressure from 0.67 MPa to 0.73 MPa as compared to the raw coal dust. The flame propagation behaviors of methane-air/coal dust mixtures showed that the coal dust after low-temperature oxidation displayed a lower flame propagation speed in the stage of gas phase combustion reaction, mainly due to the loss of volatile matter. This paper concluded that the reduction of volatile matter in the coal dust caused by the low-temperature oxidation inhibited the flame propagation of the methane-air/coal dust mixtures, but the cracks and pores formed during the low-temperature oxidation process promoted the combustion of coke in the coal dust.
机译:这项研究的目的是揭示甲烷-空气与低温氧化煤尘混合物的爆炸特性。为此,对氧化温度为80℃,160℃和240℃的生的和氧化的煤粉的颗粒(48-75μm)进行采样。对比研究了煤粉低温氧化后的工业分析和表面形貌。此外,分别通过20 L球形容器反应器和高速摄像机监测和分析了甲烷-空气/煤尘混合物的爆炸参数和火焰传播行为。结果表明,低温氧化后的煤尘中水分和挥发物含量明显降低,并且在其表面上形成了更多的裂纹和孔隙。爆炸实验表明,煤粉在240摄氏度的低温氧化后,甲烷-空气/煤粉混合物的燃烧时间延长了81.69%,最大过压比原煤提高了0.67 MPa至0.73 MPa。煤炭粉末。甲烷-空气/煤粉尘混合物的火焰传播行为表明,低温氧化后的煤粉在气相燃烧反应阶段表现出较低的火焰传播速度,这主要是由于挥发物的损失。本文的结论是,低温氧化引起的煤尘中挥发性物质的减少抑制了甲烷-空气/煤尘混合物的火焰传播,但低温氧化过程中形成的裂纹和气孔促进了燃烧。煤尘中的焦炭。

著录项

  • 来源
    《Fuel》 |2020年第15期|116304.1-116304.8|共8页
  • 作者单位

    China Univ Min & Technol Key Lab Coal Methane & Fire Control Minist Educ Xuzhou 221116 Jiangsu Peoples R China|China Univ Min & Technol State Key Lab Coal Resources & Mine Safety Xuzhou 221008 Jiangsu Peoples R China|China Univ Min & Technol Sch Safety Engn Xuzhou 221116 Jiangsu Peoples R China;

    China Univ Min & Technol Sch Safety Engn Xuzhou 221116 Jiangsu Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Low-temperature oxidation; Methane explosion; Coal dust; Flame propagation;

    机译:低温氧化;甲烷爆炸;煤炭粉末;火焰传播;

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