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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Modified carbon nanotubes by KMnO4 supported iron Fischer-Tropsch catalyst for the direct conversion of syngas to lower olefins
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Modified carbon nanotubes by KMnO4 supported iron Fischer-Tropsch catalyst for the direct conversion of syngas to lower olefins

机译:KMnO4负载的费-托催化剂铁改性的碳纳米管,用于将合成气直接转化为低级烯烃

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摘要

Manganese and potassium promoters coated carbon nanotubes (i.e., MnK-CNTs) were synthesized by a redox reaction between CNTs and KMnO4, in which the CNTs act as reducing agent and as substrate for the heterogeneous nucleation of K-doped manganese oxide. The as-synthesized MnK-CNTs were employed to support Fe catalyst (i.e., Fe/MnK-CNTs, the loadings of 7.9 wt% Fe, 15.7 wt% Mn and 1.9 wt% K) for the direct conversion of syngas to lower olefins. It is revealed that Fe/MnK-CNTs catalyst is more active and stable than FeMnK/CNTs catalyst prepared by co-impregnation method using CNTs as a support. Furthermore, under similar CO conversion, the Fe/MnK-CNTs catalyst exhibits higher selectivity of hydrocarbons especially lower olefins. This could be related to the small-sized and uniform nanoparticles, the well-distributed promoters, the weak metal-support interaction and the greater defects on support, which are the consequences of the unique structural transformation of MnK-CNTs as a function of temperature and atmosphere.
机译:通过CNT与KMnO4之间的氧化还原反应合成了涂覆有锰和钾促进剂的碳纳米管(即MnK-CNT),其中CNT充当还原剂和K掺杂的锰氧化物异质成核的基质。合成后的MnK-CNT用于负载Fe催化剂(即Fe / MnK-CNT,7.9重量%的Fe,15.7重量%的Mn和1.9重量%的K的负载量)以将合成气直接转化为低级烯烃。结果表明,Fe / MnK-CNTs催化剂比采用CNTs为载体的共浸渍法制备的FeMnK / CNTs催化剂更具活性和稳定性。此外,在类似的CO转化率下,Fe / MnK-CNTs催化剂表现出更高的烃选择性,特别是低级烯烃。这可能与小而均匀的纳米粒子,分布均匀的促进剂,弱的金属-载体相互作用以及载体上的较大缺陷有关,这是MnK-CNTs随温度的独特结构转变的结果和气氛。

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