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Carbon nanomaterial Formation on Fresh-Reduced Iron by Converted Natural Gas

机译:转化天然气在鲜还原铁上形成碳纳米材料

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摘要

The mechanism of carbon nanomaterial formation at moderate temperatures while processing fresh-reduced iron by products of air conversion of natural gas is considered. It is shown that under given conditions, the size and the shape of the resulting carbon are dependent on the temperature and the size of microscopic iron grains formed during reduction. These iron grains are the catalyzer of the reaction of carbon monoxide disproportionation. It is concluded that the formation of a nucleus of the new carbon phase occurs at the contact boundaries of neighboring grains of newly reduced iron with the subsequent formation in these places of ring-shaped carbon cuffs. Nanotubes are forming as a result of further carbon crystallization, and separation of iron particles from the main mass is occurring, i.e., there is a fragmentation of the substance of the catalyst. According to the results of laboratory studies, the optimum temperature of carbon nanotube formation in the environment of converted gas is 600–650 °C. The evidence of the hypothesis that the mechanism of the reaction of carbon monoxide disproportionation flows through the intermediate stage of iron oxides formation is given.
机译:考虑了在中等温度下碳纳米材料形成的机理,同时通过天然气的空气转化产物处理鲜还原铁。结果表明,在给定的条件下,所得碳的尺寸和形状取决于还原过程中形成的微观铁晶粒的温度和尺寸。这些铁颗粒是一氧化碳歧化反应的催化剂。结论是,新碳相的核形成在新还原铁的相邻晶粒的接触边界处发生,随后在环形碳箍的这些位置处形成。由于进一步的碳结晶,形成了纳米管,并且铁颗粒与主体发生分离,即,催化剂物质破碎。根据实验室研究的结果,转化后的气体环境中形成碳纳米管的最佳温度为600–650°C。给出了一氧化碳歧化反应机理流经氧化铁形成的中间阶段这一假说的证据。

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