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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Optimizing the synthesis of cobalt-based catalysts for the selective growth of multiwalled carbon nanotubes under industrially relevant conditions
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Optimizing the synthesis of cobalt-based catalysts for the selective growth of multiwalled carbon nanotubes under industrially relevant conditions

机译:在工业相关条件下优化钴基催化剂的合成,以选择性生长多壁碳纳米管

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An industrially applicable cobalt-based catalyst was optimized for the production of multiwalled carbon nanotubes (CNTs) from ethene in a hot-wall reactor. A series of highly active Co-Mn-Al-Mg spinel-type oxides with systematically varied Co:Mn ratios was synthesized by precipitation and calcined at different temperatures. The addition of Mn drastically enhanced the catalytic activity of the Co nanoparticles resulting in an extraordinarily high CNT yield of up to 249 g_(CNT)/g_(cat). All quaternary catalysts possessed an excellent selectivity towards the growth of CNTs. The detailed characterization of the obtained CNTs by electron microscopy, Raman spectroscopy and thermogravimetry demonstrated that a higher Mn content results in a narrower CNT diameter distribution, while the morphology of the CNTs and their oxidation resistance remains rather similar. The temperature-programmed reduction of the calcined precursors as well as in situ X-ray absorption spectroscopy investigations during the growth revealed that the remarkable promoting effect of the Mn is due to the presence of monovalent Mn(II) oxide in the working catalyst, which enhances the catalytic activity of the metallic Co nanoparticles by strong metal-oxide interactions. The observed correlations between the added Mn promotor and the catalytic performance are of high relevance for the production of CNTs on an industrial scale.
机译:为了在热壁反应器中由乙烯生产多壁碳纳米管(CNT),对工业上适用的钴基催化剂进行了优化。通过沉淀合成了一系列高活性的Co:Mn-Al-Mg尖晶石型氧化物,Co:Mn比率不同,并在不同温度下煅烧。 Mn的添加极大地增强了Co纳米颗粒的催化活性,从而导致了高达249 g_(CNT)/ g_(cat)的超高CNT产率。所有季铵催化剂都对CNT的生长具有极好的选择性。通过电子显微镜,拉曼光谱和热重分析法对得到的碳纳米管进行了详细的表征,结果表明,较高的锰含量会导致碳纳米管直径分布变窄,而碳纳米管的形貌及其抗氧化性仍然相当相似。煅烧前体的程序升温还原以及生长过程中的原位X射线吸收光谱研究表明,Mn的显着促进作用是由于工作催化剂中存在一价Mn(II)氧化物,通过强的金属-氧化物相互作用增强了金属Co纳米颗粒的催化活性。所观察到的添加的Mn促进剂与催化性能之间的相关性与工业规模生产CNT具有高度相关性。

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