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Ni-SiO2 Catalysts for the Carbon Dioxide Reforming of Methane: Varying Support Properties by Flame Spray Pyrolysis

机译:用于甲烷二氧化碳重整的Ni-SiO2催化剂:通过火焰喷雾热解改变载体性质

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摘要

Silica particles were prepared by flame spray pyrolysis (FSP) as a support for nickel catalysts. The impact of precursor feed rate (3, 5 and 7 mL/min) during FSP on the silica characteristics and the ensuing effect on catalytic performance for the carbon dioxide, or dry, reforming of methane (DRM) was probed. Increasing the precursor feed rate: (i) progressively lowered the silica surface area from ≈340 m2/g to ≈240 m2/g; (ii) altered the silanol groups on the silica surface; and (iii) introduced residual carbon-based surface species to the sample at the highest feed rate. The variations in silica properties altered the (5 wt %) nickel deposit characteristics which in turn impacted on the DRM reaction. As the silica surface area increased, the nickel dispersion increased which improved catalyst performance. The residual carbon-based species also appeared to improve nickel dispersion, and in turn catalyst activity, although not to the same extent as the change in silica surface area. The findings illustrate both the importance of silica support characteristics on the catalytic performance of nickel for the DRM reaction and the capacity for using FSP to control these characteristics.
机译:通过火焰喷雾热解(FSP)制备二氧化硅颗粒作为镍催化剂的载体。考察了FSP期间前体进料速度(3、5和7 mL / min)对二氧化硅特性的影响以及对二氧化碳催化性能或甲烷干重整(DRM)的后续影响。提高前驱物进料速度:(i)将二氧化硅表面积从≈340m 2 / g逐渐降低到≈240m 2 / g; (ii)改变了二氧化硅表面上的硅烷醇基; (iii)以最高进料速度向样品中引入残留的碳基表面物质。二氧化硅性质的变化改变了(5重量%)镍沉积特性,这反过来影响了DRM反应。随着二氧化硅表面积增加,镍分散体增加,这改善了催化剂性能。残余的基于碳的物质还似乎改善了镍的分散性,进而改善了催化剂的活性,尽管其程度与二氧化硅表面积的变化不同。这些发现说明了二氧化硅载体特性对镍对DRM反应的催化性能的重要性以及使用FSP控制这些特性的能力。

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