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EXPLOSION STUDY OF AN IRON POWDER REDUCTION FURNACE

机译:铁粉还原炉的爆炸研究

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Explosion study in an iron powder reduction furnace was performed. Pressurized gaseous hydrogen was used as reductive atmosphere to convert iron powder in the interior of the furnace. Hydrogen was fed to the pre-chamber of the iron powder reduction furnace. The furnace was located inside a brick building. Explosion potential causes were determined by the fault tree technique. The impact effects to people, environment and materials were also analyzed by using Chem-Plus software. The consequences and vulnerability analyzes were performed considering a confined explosion inside the furnace pre-chamber, resulting from formation of a hydrogen cloud within the H{sub}2, explosion limits. The vent area criteria recommended by NFPA 68 to confined spaces were employed to the reduction furnace and to the vulnerability calculations; probit equations of the Eisenberg model were used. As results, safety measures to enhance safety on the reduction of iron powder operation inside the furnace installation were recommended.
机译:进行铁粉还原炉中的爆炸研究。加压气态氢气用作还原气氛,在炉子内部转换铁粉。将氢气进料到铁粉还原炉的预室中。炉子位于砖砌建筑内。爆炸潜在原因是通过故障树技术确定的。还通过使用Chem-Plus软件分析了对人,环境和材料的影响效应。考虑到炉子前室内的狭窄爆炸进行后果和脆弱性分析,从{sub} 2内形成氢云,爆炸限制。 NFPA 68推荐的通风口区域标准将被限制空间用于还原炉和脆弱性计算;使用了艾森伯格模型的概率方程。结果,建议使用措施,提高炉内安装内部铁粉操作安全性的安全措施。

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