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Nanonickel catalyst reinforced with silicate for methane decomposition to produce hydrogen and nanocarbon: Synthesis by co-precipitation cum modified Stober method

机译:硅酸盐增强的纳米镍催化剂用于甲烷分解以生产氢气和纳米碳:共沉淀合成的斯托伯法

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摘要

Co-precipitation cum modified Stober method is a continuous process avoiding application of higher temperature treatment before supporting nanometal with SiO2, irrespective of pre-preparation methods. We have conducted the co-precipitation process without undertaking calcination under air in order to avoid even a partial particle agglomeration and hence maintained average particle size similar to 30 nm after enforcing with SiO2. This is the first report adopting such an unceasing preparation for preparing metal/silicate nanostructures. Furthermore, n-Ni/SiO2 nanostructured catalysts were used for thermocatalytic decomposition of methane to produce hydrogen and carbon nanotubes. The catalyst was found to be very stable and the methane transformation activity proceeded for 300 min on methane stream with little deactivation in the temperature range 475-600 degrees C. We have also successfully extended the catalyst preparation method for Fe and Co metals and conducted preliminary catalyst examinations.
机译:共沉淀和改进的Stober方法是一个连续过程,避免了在用SiO2负载纳米金属之前应用高温处理的方法,而与制备方法无关。我们进行了共沉淀过程,没有在空气中进行煅烧,从而避免了部分颗粒的团聚,因此在用SiO2填充后,平均粒径保持在30 nm左右。这是采用这种不断的制备方法制备金属/硅酸盐纳米结构的第一份报告。此外,n-Ni / SiO2纳米结构催化剂用于甲烷的热催化分解,以生产氢气和碳纳米管。发现该催化剂非常稳定,并且在475-600℃的温度范围内,在甲烷物流上进行了300分钟的甲烷转化,几乎没有失活。我们还成功地扩展了Fe和Co金属的催化剂制备方法,并进行了初步催化剂检查。

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    Ashik U.P.M.; Daud W.M.A.W.;

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  • 年度 2015
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