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首页> 外文期刊>Catalysis in industry >Formation of Carbon from High-Molecular Hydrocarbons on Iron Subgroup Metals on the Sibunite Carbon Support
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Formation of Carbon from High-Molecular Hydrocarbons on Iron Subgroup Metals on the Sibunite Carbon Support

机译:从Sibunite碳载体上的铁亚组金属上的高分子烃的形成

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摘要

The properties of iron subgroup metals (Fe, Co, Ni) on a mesoporous carbon Sibunite support during the formation of carbon in the catalytic pyrolysis of high-molecular alkanes (hexane, undecane, and hexadecane) were studied. In the case of the NiO/Sibunite catalyst, the rate of carbon formation at temperatures of 500–600_(о)С decreased in the series hexane > undecane?>?hexadecane. Carbon is deposited in the form of carbon nanofibers. The activity series of reduced catalysts in carbon formation was determined: 10%NiО/Sibunite?>?10%CoО/Sibunite?>?10%Fe~(2)О~(3)/Sibunite. The morphology of carbon that formed on the 10%CoО/Sibunite catalyst depends on the particle size of the active component: multiwalled carbon nanotubes (MCNTs) grow on particles of 10–30 nm, and carbon nanofibers grow on particles larger than 30 nm. The X-ray diffraction studies of Fe~(2)O~(3)/Sibunite after the reaction showed that the active component can be in the form of metal or iron carbide, the fraction of each phase in the catalyst depending on the particle size of the active phase. For particles of 10–30 nm, iron is in the form of metal, for larger particles, it is in the form of carbide. It was concluded that iron carbide particles are responsible for the formation of carbon nanofibers, and iron particles are responsible for the formation of MCNTs.
机译:研究了在高分子烷烃(己烷,未甲烷和十六烷)催化热解中碳中碳三单发渣中的铁亚组金属(Fe,Co,Ni)的性质。在NiO / Sibunite催化剂的情况下,在己烷>过赤赤蛋白己烷中的500-600℃(о)的温度下的碳形成速率α>十六烷。碳以碳纳米纤维的形式沉积。测定碳形成中的减少催化剂的活性系列:10%Ni®/ sibunite?> 10%CO®/ sibunite?> 10%Fe〜(2)о〜(3)/ Sibunite。在10%CO®/ sibunite催化剂上形成的碳的形态取决于活性组分的粒度:多壁碳纳米管(MCNT)在10-30nm的颗粒上生长,并且碳纳米纤维在大于30nm的颗粒上生长。反应后,Fe〜(2)O〜(3)/ sibunite的X射线衍射研究表明,活性成分可以是金属或碳化铁的形式,催化剂中的每相的分数取决于颗粒主动阶段的大小。对于10-30nm的颗粒,铁是金属的形式,对于较大的颗粒,它是碳化物的形式。得出结论是,碳化铁颗粒负责形成碳纳米纤维的形成,铁颗粒负责形成MCNT。

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