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Application of Inorganic Solidified Foam to Control the Coexistence of Unusual Methane Emission and Spontaneous Combustion of Coal in the Luwa Coal Mine, China

机译:无机凝固泡沫控制煤矿煤矿煤矿异常甲烷排放及自燃燃烧的共存

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摘要

Unusual methane emission and spontaneous combustion of coal induced by the air leakage are both hazards during mining. The most common practice has been to improve mine safety is sealing the mining fractures. In this paper, the methane and geology, coal spontaneous combustion characteristics and the coexistence of methane emission and spontaneous combustion of coal were analyzed. The preparation system of inorganic solidified foam (ISF) in field applications is studied and the working principle of generating device consists of foam generator and mixer was expounded. The technical plan of site construction is that the foam fluid was injected to respectively seal the mining fractures behind hydraulic supports, the cavities of air return corner, and the fractures nearby the coal pillar. After the foam fluid injection, the two stress values in the coal pillar eventually maintained above 15.5 Mpa and 13 Mpa, respectively. It indicated that the ISF can enhance the bearing stress ability of the coal pillar by transforming the stress state from two dimensional to three dimensional. The methane concentration in the air return corner and air return roadway declined significantly to 0.63% and 0.25%. The differential pressure inside and outside of the 4301(1) goaf fluctuated between -100 pa and 150 pa and the concentration of CO and O-2 declined to 9 ppm and 6%. The CO concentration in the air return corner finally reached a stable level of 6 ppm. What that all means, the foam fluids can seal the air leakage and inhibit spontaneous combustion of coal effectively.
机译:通过空气泄漏引起的煤的异常甲烷排放和自发燃烧在采矿过程中均有危害。最常见的做法是提高矿井安全密封采矿骨折。本文分析了甲烷和地质,煤自燃特性及煤炭排放和煤炭自燃的共存。研究了现场应用中无机固化泡沫(ISF)的制备系统,并阐述了发电装置的工作原理由泡沫发生器和混合器组成。现场施工的技术计划是将泡沫流体注入分别密封液压支架后面的采矿骨折,空气返回角的空腔,以及煤柱附近的裂缝。在泡沫流体喷射之后,煤柱中的两个应力值最终分别保持在15.5MPa和13MPa以上。它表明,ISF可以通过将应力状态从二维转变为三维来增强煤柱的轴承应力能力。空气返回角和空气回程道路中的甲烷浓度明显下降至0.63%和0.25%。 4301(1)GOF的差压在-100Pa和150Pa之间波动,CO和O-2的浓度下降至9ppm和6%。空气返回角的CO浓度最终达到6ppm的稳定水平。一切意味着什么,泡沫流体可以密封空气泄漏并有效地抑制煤的自燃燃烧。

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  • 来源
    《Combustion Science and Technology》 |2020年第6期|638-656|共19页
  • 作者单位

    Hunan Univ Sci Sch Resource Environm Safety Engn Technology Xiangtan Hunan Peoples R China|Penn State Univ EMS Energy Inst G3 Ctr Dept Energy Mineral Engn University Pk PA USA;

    Hunan Univ Sci Sch Resource Environm Safety Engn Technology Xiangtan Hunan Peoples R China|Penn State Univ EMS Energy Inst G3 Ctr Dept Energy Mineral Engn University Pk PA USA|Hunan Univ Sci Work Safety Key Lab Prevent Control Gas Roof Disasters So Coal Mines Technology Xiangtan Hunan Peoples R China|Hunan Univ Sci Sch Resource CONTACT Yi Lu Environm Safety Engn Technology Xiangtan Hunan Peoples R China;

    Penn State Univ EMS Energy Inst G3 Ctr Dept Energy Mineral Engn University Pk PA USA;

    Hunan Univ Sci Sch Resource Environm Safety Engn Technology Xiangtan Hunan Peoples R China;

    Hunan Univ Sci Sch Resource Environm Safety Engn Technology Xiangtan Hunan Peoples R China;

    Hunan Univ Sci Sch Resource Environm Safety Engn Technology Xiangtan Hunan Peoples R China|Hunan Univ Sci Hunan Prov Key Lab Safe Min Techniques Coal Mines Technology Xiangtan Hunan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Methane emission; spontaneous combustion of coal; sealing the air leakage; mining fractures; inorganic solidified foam;

    机译:甲烷排放;煤炭的自发燃烧;密封空气泄漏;采矿骨折;无机凝固泡沫;

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