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ZHAO Meicheng. Application of large flow gasous CO2 fire control technology in control of spontaneous combustion fire in goaf[J]. Safety in Coal Mines, 2021, 52(3): 122-126.
Citation: ZHAO Meicheng. Application of large flow gasous CO2 fire control technology in control of spontaneous combustion fire in goaf[J]. Safety in Coal Mines, 2021, 52(3): 122-126.

Application of large flow gasous CO2 fire control technology in control of spontaneous combustion fire in goaf

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  • Published Date: March 19, 2021
  • In order to control the spontaneous fire in the goaf, CO2 is used to study the prevention and control of the spontaneous fire in the coal mine. Combined with the actual situation of the spontaneous fire in the goaf at the back of the 150201 fully mechanized top coal caving face, this paper expounds the performance parameters and technical process of the relevant equipment of the large flow gaseous CO2 fire prevention and extinguishing system, and calculates the appropriate air volume of the working face, as well as the air injection volume, air injection intensity, air injection mode and air injection pressure in the goaf, which is the large flow gaseous. The results show that: the large flow gaseous CO2 fire-fighting system has a large gas production, which can fully meet the requirements of coal mine underground goaf fire-fighting work; the technological parameters of CO2 gas injection are similar to those of N2 injection, and on the premise that the CO2 pipeline release port is located in the oxidation zone of goaf, no CO2 gas will flow from the working face; liquid CO2 is a by-product of chemical plant, with a relatively low cost, is advantageous in the coal mine underground fire prevention work promotion application.
  • [1]
    王省身,张国枢.中国煤矿火灾防治技术的现状与发展[J].火灾科学,1994,3(2):1-6.
    [2]
    梁运涛,罗海珠.中国煤矿火灾防治技术现状与趋势[J]. 煤炭学报,2008,33(2):126-130.

    LIANG Yuntao, LUO Haizhu. Current situation and development trend for coal mine fire prevention & extinguishing techniques in China[J]. Journal of China Coal Society, 2008, 33(2): 126-130.
    [3]
    葛亮,邵毅敏,唐彦昌,等.二氧化碳气体井下远距离输送的可行性研究[J].煤矿安全,2017,48(11):40.

    GE Liang, SHAO Yimin, TANG Yanchang, et al. Feasible research of long distance underground transportation for carbon dioxide gas[J]. Safety in Coal Mines, 2017, 48(11): 40.
    [4]
    顾帅威,李玉星,滕霖,等.超临界CO2管道泄漏量计算研究[J].石油化工,2018,47(11):1204-1208.

    GU Shuaiwei, LI Yuxing, TENG Lin, et al. Calculation and study on the leakage rate of supercritical CO2 pipeline[J]. Petrochemical Technology, 2018, 47(11): 1204-1208.
    [5]
    阮增定.液态CO2灭火技术在高瓦斯矿井火灾的治理研究与应用[D].太原:太原理工大学,2013.
    [6]
    王晋生.液态CO2防灭火装备及其工程应用[J].现代矿业,2018(7):164-165.
    [7]
    张允宁,贾明鑫,刘松.海洋平台二氧化碳灭火系统设计与调试[J].中国造船,2008,49(S2):139-143.

    ZHANG Yunning, JIA Mingxin, LIU Song. The designing and commissioning about the carbon dioxide fire extinguishing system on the offshore platform[J]. Shipbuilding of China, 2008, 49(S2): 139-143.
    [8]
    景巨栋.羊场湾煤矿液态二氧化碳防灭火技术研究[D].徐州:中国矿业大学,2019.
    [9]
    周春山.液态CO2在治理高瓦斯矿综放工作面自燃火灾的应用[J].煤矿安全,2012,43(9):149-151.

    ZHOU Chunshan. The application of liquid carbon dioxide for coal spontaneous combustion in high gassy mine fully mechanized top-coal caving working face[J]. Safety in Coal Mines, 2012, 43(9): 149-151.
    [10]
    曹军生.浅谈综放工作面采空区煤层发火治理技术[J].内蒙古煤炭经济,2019 (9):79-80.
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