首页> 外文期刊>Energy Technology: Generation,Conversion,Storage,Distribution >Effect of Preparation Solvent and Calcination Atmosphere on Ni@SiO2 Catalyst for Simultaneous Production of Hydrogen and Carbon Nanotubes from Simulated Plastic Waste Syngas
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Effect of Preparation Solvent and Calcination Atmosphere on Ni@SiO2 Catalyst for Simultaneous Production of Hydrogen and Carbon Nanotubes from Simulated Plastic Waste Syngas

机译:制备溶剂和煅烧气氛对镍氢和碳纳米管同时生产模拟塑料废弃物合成气的影响

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摘要

SiO2 core supports are prepared via the Stober method with various synthesizing solvents. Then, a Ni shell is deposited on SiO2 by a deposition-precipitation method. The results illustrate that using isopropanol as the solvent governs the catalyst particle size with a superior dispersion and a high catalytic activity. Thus, the calcination atmosphere of the catalyst directly affects both the chemical state and the catalytic performance of the active sites. The Ni@SiO2-I-air (isopropanol) catalyst calcined by air with more Ni2+ facilitates the highest H-2 production of 142.2 mmol g(-1) h(-1) but provides a carbon nanotube (CNT) yield of only 7.6%. Most importantly, the Ni@SiO2-I-H-2 catalyst calcined by ambient H-2 is prone to form Ni-0 species, thus providing the best crystalline conversion and metal-support interaction, which benefits the production of CNTs to a maximum yield of 19.8% with a H-2 production of 122.8 mmol g(-1) h(-1).
机译:SiO2核心支撑件由具有各种合成溶剂的STOBER方法制备。 然后,通过沉积沉淀法在SiO 2上沉积Ni壳。 结果说明,使用异丙醇作为溶剂,具有优异的分散体和高催化活性的催化剂粒度。 因此,催化剂的煅烧气氛直接影响活性位点的化学状态和催化性能。 具有更多Ni2 +的空气煅烧的Ni @ SiO 2-I-AIR(异丙醇)催化剂促进了142.2mmol G(-1)H(-1)的最高H-2产生,但提供仅7.6的碳纳米管(CNT)产率 %。 最重要的是,通过环境H-2煅烧的Ni @ SiO2-IH-2催化剂易于形成Ni-0种,从而提供最佳的结晶转化和金属支持相互作用,这有利于将CNT的生产产生为最大收益率 19.8%,H-2产生122.8 mmol G(-1)H(-1)。

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