主管:中华人民共和国应急管理部
主办:应急管理部天津消防研究所
ISSN 1009-0029  CN 12-1311/TU

消防科学与技术 ›› 2025, Vol. 44 ›› Issue (6): 738-744.

• • 上一篇    下一篇

改性草木灰粉体抑制瓦斯爆炸的试验研究

计新龙, 杨克, 康青春, 李雪瑞   

  1. (常州大学 安全科学与工程学院,江苏 常州 213164)
  • 收稿日期:2024-07-16 修回日期:2024-10-24 出版日期:2025-06-24 发布日期:2025-06-15
  • 作者简介:计新龙,常州大学安全科学与工程学院硕士研究生,主要从事消防安全方面的研究,江苏省常州市武进区滆湖中路1号,213164。
  • 基金资助:
    国家自然科学基金项目(5170404);常州市科技支撑计划(社会发展)(BK20140264)

dual cables in a long-narrow space

Ji Xinlong, Yang Ke, Kang Qingchun, Li Xuerui   

  1. (School of Safety Science and Engineering, Changzhou University, Changzhou Jiangsu 213164, China)
  • Received:2024-07-16 Revised:2024-10-24 Online:2025-06-24 Published:2025-06-15

摘要: 为了探究草木灰(Plant Ash,PA)对甲烷爆炸的影响,对其进行改性并搭建了小型半封闭可视爆炸试验平台。通过改变粉体质量和粒径大小研究改性草木灰(Modified Plant Ash,MPA)粉体在爆炸管道中对9.5%甲烷爆炸峰值超压、火焰传播速度、火焰传播形态的影响,并结合表征结果对抑爆机理进行分析和探讨。结果表明,MPA粉体具有较大的比表面积和孔隙率,且具有较高的热解失重率,质量损失达到46%;MPA粉体的粒径为64~73 μm,质量为300 mg时对管道甲烷爆炸传播的抑制性能最佳;对比不喷粉末试验组,MPA粉体可使9.5%甲烷最大爆炸超压下降达50.14%,火焰最大传播速率下降达51.17%。可见,MPA粉体对甲烷爆炸表现出优异的抑爆性能。

关键词: 甲烷爆炸, 草木灰, 粒径分布, 抑爆机理, 爆炸超压, 火焰传播速度

Abstract: In order to investigate the effect of plant ash (PA) on methane explosion, PA was modified and a small semi enclosed visual explosion experimental platform was built. By changing the powder mass and particle size, the influence of modified plant ash (MPA) powder on the peak overpressure, flame propagation speed, and flame propagation morphology of 9.5% methane explosion in explosion pipelines was studied. The explosion suppression mechanism was analyzed and discussed based on the characterization results. The results showed that MPA powder has a large specific surface area and porosity, and it has a high pyrolysis weight loss rate, with a mass loss of 46%. The particle size and mass of MPA powder with the best suppression performance on methane explosion propagation in pipelines obtained in the experiment were 64~73 μm and 300 mg, respectively. Compared with the non-spraying powder experimental group, it resulted in a maximum reduction of 50.14% in the maximum explosion overpressure and a maximum reduction of 51.17% in the maximum propagation rate of methane flame. It can be seen that MPA powder exhibits excellent explosion suppression performance against methane explosions.

Key words: methane explosion, plant ash, particle size distribution, explosion suppression mechanism, explosion overpressure, flame propagation speed