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 ›› 2024, Vol. 43 ›› Issue (11): 1505-1511.

• • 上一篇    下一篇

多巴胺包覆珍珠岩对抑制甲烷爆炸的试验研究

吉冬雨, 杨克, 纪虹, 舒中俊   

  1. (常州大学 安全科学与工程学院,江苏 常州 213164)
  • 收稿日期:2024-03-25 修回日期:2024-05-23 出版日期:2024-11-15 发布日期:2024-11-15
  • 作者简介:吉冬雨(2000- ),男,江苏南通人,常州大学安全科学与工程学院在读硕士,主要从事甲烷抑爆研究,江苏省常州市武进区滆湖中路1号常州大学武进校区,213164。
  • 基金资助:
    基金项目:国家自然科学基金资助项目(51704041);江苏省科技计划项目(BK20140264);国家自然科学基金资助项目(52204204);常州市科技支撑计划(CE20235039)

Experimental study of dopamine-coated perlite on inhibition of methane explosion

Ji Dongyu, Yang Ke, Ji Hong, Shu Zhongjun   

  1. (School of Safety Science and Engineering, Changzhou University, Jiangsu Changzhou 213164, China)
  • Received:2024-03-25 Revised:2024-05-23 Online:2024-11-15 Published:2024-11-15

摘要: 通过自行搭建的试验平台,以9.5%的甲烷为爆炸性气体,研究了不同质量的珍珠岩、多巴胺包覆珍珠岩以及SiO2粉体对火焰传播形状、甲烷爆炸压力以及火焰传播速度的影响。采用热重分析、粒径分析、XRD分析以及扫描电镜对包覆前后珍珠岩粉体的热稳定性以及表面微观情况进行了分析,并对比分析改性珍珠岩的抑爆机理。各种数据对比表明,3种粉体均具备抑制甲烷爆炸的作用,其中多巴胺包覆的珍珠岩效果最为明显,喷撒320 mg工况下最大爆炸压力最小,较纯甲烷下降了62.3%,360 mg火焰的最大传播速度最小,下降了42.6%。多巴胺包覆珍珠岩粉体的加入阻碍了火焰的传播,通过化学和物理抑爆中断甲烷爆炸的链式反应,从而达到甲烷抑爆的效果。

关键词: 珍珠岩, 多巴胺, 火焰形状, 爆炸压力, 火焰速度

Abstract: The effects of different qualities of perlite, dopamine-coated perlite, and SiO2 powder on the shape of flame propagation, methane explosion pressure, and flame propagation velocity were investigated by using a self-constructed experimental platform with 9.5% methane as the explosive gas. Thermogravimetric analysis, particle size analysis, XRD analysis and scanning electron microscopy were used to analyze the thermal stability as well as the surface microcosmic condition of perlite powder before and after coating, and to analyze the detonation suppression mechanism of modified perlite by comparison. Through a variety of data comparisons, the three powders have the effect of inhibiting methane explosion, in which the effect of dopamine-coated perlite is the most obvious, spraying 320 mg working conditions of the maximum explosion pressure is the smallest, compared with the percentage of pure methane decreased by 62.3%, the maximum propagation of the flame of the 360 mg is the smallest, a decrease of 42.6%. The addition of dopamine-coated perlite powder hinders flame propagation and interrupts the chain reaction of methane explosion through chemical and physical suppression of methane explosion, thus achieving the effect of methane explosion suppression.

Key words: perlite, dopamine, flame shape, explosion pressure, flame velocity