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The Presence of Excess Oxygen in Burning Metallic Materials

机译:燃烧金属材料中存在过量的氧气

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Early work on burning of iron rods under conditions of the ASTM/NASA flammability test showed that there was excess oxygen, that is, above stoichiometric requirements for Fe_2O_3, present in the molten product formed during burning. Since that initial work, this phenomenon has been confirmed for burning under microgravity conditions and has been observed for a wide range of metals under various burning conditions at ambient pressures and under pressurized oxygen-enriched conditions. This paper reviews these experimental observations and discusses the possible thermodynamic analysis for the metals iron, cobalt, and nickel. The excess oxygen in the burning molten iron oxide is represented as combined to form a series of ferrite ions. For cobalt the excess oxygen is represented as a bridging species; that is, the cobalt oxide liquid is oxygenated. There is no definitive evidence for excess oxygen in nickel oxide.
机译:在ASTM / NASA易燃性试验的条件下燃烧铁棒的早期工作表明存在过量的氧气,即,在燃烧期间形成的熔融产物中的Fe_2O_3的高于化学计量要求。自该初始化以来,已经证实在微匍匐条件下燃烧的这种现象,并且已经在环境压力下在各种燃烧条件下观察到各种金属,并且在加压氧富含条件下。本文审查了这些实验观察,并探讨了金属铁,钴和镍的可能热力学分析。燃烧的熔融氧化铁中的过量氧被表示为组合以形成一系列铁素体离子。对于钴的钴,多余的氧气表示为桥接物种;也就是说,氧化钴液是氧化的。氧化镍中的过量氧没有明确的证据。

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