首页> 外文期刊>Journal of Chemical Engineering of Japan >Plate-Type Anodic Alumina Supported Ruthenium Catalysts for Steam Reforming of Kerosene: Influence of Calcination on Catalysts Reactivity
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Plate-Type Anodic Alumina Supported Ruthenium Catalysts for Steam Reforming of Kerosene: Influence of Calcination on Catalysts Reactivity

机译:用于煤油蒸汽重整的板型阳极氧化铝负载钌催化剂:煅烧对催化剂反应性的影响

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References(20) Cited-By(3) Metal monolithic anodic alumina supported Ru catalysts prepared by impregnation method are employed to the steam reforming of kerosene. The characteristics of the resulting catalysts are analyzed by using ICP, BET, CO-Pulse and temperature-programmed reduction (TPR) measurements. The calcination on the catalyst reactivity is investigated. We found that calcination operation during the catalyst preparation is not an essential procedure; on the contrary, it decreases the catalyst dispersion, further resulting in poor activity. Furthermore, the anodic alumina supported Ru catalyst prepared without calcination at 500°C, provided better activity and stability than a commercial catalyst (S/C = 3.0, F/W = 80,000 mL/(h·g), 450–750°C). In particular, pre-reduction with hydrogen over catalyst is considered to not be an essential operation due to the excellent activity and stability in the reforming reaction.
机译:参考文献(20)引用By(3)通过浸渍法制备的金属整体阳极氧化铝负载的Ru催化剂用于煤油的蒸汽重整。通过使用ICP,BET,CO-Pulse和程序升温还原(TPR)测量来分析所得催化剂的特性。研究了煅烧对催化剂反应性的影响。我们发现,催化剂制备过程中的煅烧操作不是必不可少的步骤。相反,它降低了催化剂的分散性,进一步导致活性差。此外,制备的阳极氧化铝负载的Ru催化剂在500°C下不需煅烧,其活性和稳定性优于市售催化剂(S / C = 3.0,F / W = 80,000 mL /(h·g),450–750°C )。特别地,由于氢在催化剂上的预还原由于其优异的活性和重整反应的稳定性,因此被认为不是必要的操作。

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