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Flame Retardant Property of Nanopowder Aerosols toward Methane

机译:纳米粉末气溶胶对甲烷的阻燃性能

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摘要

The flame retardant property of aerosols formed from 18 different nanopowders has been studied. The diameter of nanocrystalline powders was determined by XRD and TEM. The concentration of combustible gas was determined by gas chromatography. It was found that ZrO2 nanocrystalline powdered aerosol can effectively retard the burning of CELj. The flame retardation caused by ZrO2 toward the combustion reaction of methane is through an inhibitory mechanism, which was further confirmed by contrasting it with Halon extinguishing agent and flame retardant property of ZrO2-aerosol toward CH3CH2CH3 or CO. The type of nanopowder aerosols as anti-explosion and fireproof agents was researched preliminarily in theory, too. The current ZrO2-aerosol study will find extensive applications in the field of fire-extinguishing and anti-explosion agents used in case of combustible gas.
机译:研究了由18种不同的纳米粉末形成的气溶胶的阻燃性能。纳米晶体粉末的直径通过XRD和TEM确定。通过气相色谱法测定可燃气体的浓度。发现ZrO2纳米晶体粉末气溶胶可以有效地阻止CELj的燃烧。 ZrO2对甲烷燃烧反应的阻燃作用是通过抑制机制来实现的,这一点可以通过与哈龙灭火剂和ZrO2-气溶胶对CH3CH2CH3或CO的阻燃性进行对比来进一步证实。在理论上也对爆炸和防火剂进行了初步的研究。当前对ZrO2-气溶胶的研究将在可燃气体的灭火和防爆剂领域找到广泛的应用。

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