超压
甲烷
氩
惰性
惰性气体
粉尘爆炸
化学
化学工程
材料科学
复合材料
热力学
有机化学
工程类
物理
作者
Hong Ji,Shijie Fan,Renjie Lu,Ke Yang,Juncheng Jiang,Zhixiang Xing
标识
DOI:10.1016/j.powtec.2023.119254
摘要
This paper changed ABC powder and performed a comparison on the suppression of methane explosions between pure modified powder under various operating circumstances and cold aerosols induced by various inert gases (argon, CO2). The results show that the maximum explosion pressure and flame velocity greatly decrease when inert gases act as catalytic gases. Different inert catalytic gases have various inhibitory effects on cold aerosols. Argon can delay the arrival of explosion overpressure. CO2 gas can produce bidirectional inhibitory effects from inerting and free radical chain reactions. It not only delays the occurrence of explosion overpressure, but also enhances explosion suppression ability. The most effective inhibitor is the cold aerosol, which contains 0.06 g/L of modified powder and 24% CO2 gas. Finally, under the influence of inert gases (argon, CO2), the modified ABC powder creates a cold aerosol that can more effectively suppress methane explosions.
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