首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Qualitative and quantitative characterisation for explosion severity and gaseous-solid residues during methane-coal particle hybrid explosions: An approach to estimating the safety degree for underground coal mines
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Qualitative and quantitative characterisation for explosion severity and gaseous-solid residues during methane-coal particle hybrid explosions: An approach to estimating the safety degree for underground coal mines

机译:甲烷 - 煤粒子杂交爆炸过程中爆炸严重程度和气体固体残留物的定性和定量表征:一种估算地下煤矿安全程度的方法

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摘要

Methane-coal dust explosions can damage coal mining equipment and the working environment by overpressure, particulate release, and gas emissions. In this study, we investigated the influence of fuel concentration and coal particle size on multiple explosion parameters for methane-coal particle mixtures within a 20-L sphere. Next, we analysed the effects of fuel concentration and coal particle size on the oxygen consumption index (OCI). Then, we determined the quantitative and qualitative data pertaining to oxycarbides and hydrocarbons. The surface microstructures, pore structure properties, chemical composition, particle size distribution, and thermal hazard of solid residues and raw samples were systematically evaluated. Results revealed that fuel concentration and particle size exert large influences on the explosibility of methane-coal dust mixtures. Oxycarbides and hydrocarbons were analysed because they are useful for predicting explosions and monitoring air quality. We investigated the effects of microstructure, pore structure, and particle size. We proposed a mechanism by which methane-coal particle hybrid mixtures induce explosions, including the formation pathway of gaseous and solid products. This study aids strategic decision-making pertaining to the prevention of methane-coal dust explosions. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:甲烷 - 煤尘爆炸可以通过过压,微粒释放和气体排放来损坏煤矿设备和工作环境。在这项研究中,我们研究了燃料浓度和煤粒度对20 -L球体内甲烷 - 煤颗粒混合物的多爆炸参数的影响。接下来,我们分析了燃料浓度和煤粒度对氧气消耗指数(OCI)的影响。然后,我们确定了与氧气和碳氢化合物有关的定量和定性数据。系统地评价了表面微观结构,孔隙结构性能,化学成分,粒度分布和固体残留物和原料样品的热危害。结果表明,燃料浓度和粒度对甲烷 - 煤粉粉尘混合物的可解冻性产生了很大的影响。分析了氧气和烃,因为它们可用于预测爆炸和监测空气质量。我们调查了微观结构,孔隙结构和粒度的影响。我们提出了一种机制,甲烷 - 煤溶液杂交混合物诱导爆炸,包括气态和固体产物的形成途径。本研究辅助战略决策与预防甲烷粉尘爆炸有关。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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  • 作者单位

    Tech Univ Munich Inst Aerodynam &

    Fluid Mech 15 Boltzmannstr D-85748 Munich Germany;

    Xian Univ Sci &

    Technol Coll Safety Sci &

    Engn Engn Res Ctr Minist Educ Shaanxi Key Lab Prevent &

    Control Coal Fire XUST 58 Yanta Mid Rd Xian 710054 Shaanxi Peoples R China;

    Xian Univ Sci &

    Technol Coll Safety Sci &

    Engn Engn Res Ctr Minist Educ Shaanxi Key Lab Prevent &

    Control Coal Fire XUST 58 Yanta Mid Rd Xian 710054 Shaanxi Peoples R China;

    Natl Yunlin Univ Sci &

    Technol Grad Sch Engn Sci &

    Technol YunTech 123 Univ Rd Sec 3 Touliu 64002 Yunlin Taiwan;

    Natl Yunlin Univ Sci &

    Technol Grad Sch Engn Sci &

    Technol YunTech 123 Univ Rd Sec 3 Touliu 64002 Yunlin Taiwan;

    Xian Univ Sci &

    Technol Coll Safety Sci &

    Engn Engn Res Ctr Minist Educ Shaanxi Key Lab Prevent &

    Control Coal Fire XUST 58 Yanta Mid Rd Xian 710054 Shaanxi Peoples R China;

    Xian Univ Sci &

    Technol Coll Safety Sci &

    Engn Engn Res Ctr Minist Educ Shaanxi Key Lab Prevent &

    Control Coal Fire XUST 58 Yanta Mid Rd Xian 710054 Shaanxi Peoples R China;

    Tech Univ Munich Inst Aerodynam &

    Fluid Mech 15 Boltzmannstr D-85748 Munich Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Methane-coal dust explosion; Particulate release; Explosion parameter; Thermal hazard; Gaseous and solid products;

    机译:甲烷 - 煤尘爆炸;颗粒释放;爆炸参数;热危险;气态和固体产品;

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