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Application of Microwave in Hydrogen Production from Methane Dry Reforming: Comparison Between the Conventional and Microwave-Assisted Catalytic Reforming on Improving the Energy Efficiency

机译:微波在甲烷干燥重整中的应用:常规和微波辅助催化重整对提高能效的比较

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摘要

The microwave-assisted dry reforming of methane over Ni and Ni−MgO catalysts supported on activated carbon (AC) was studied with respect to reducing reaction energy consumption. In order to optimize the reforming reaction using the microwave setup, an inclusive study was performed on the effect of operating parameters, including the type of catalysts’ active metal and their concentration in the AC support, feed flow rate, and reaction temperature on the reaction conversion and H2/CO selectivity. The methane dry reforming was also carried out using conventional heating and the results were compared to those of microwave heating. The catalysts’ activity was increased under microwave heating and as a result, the feed conversion and hydrogen selectivity were enhanced in comparison to the conventional heating method. In addition, to improve the reactants’ conversion and products’ selectivity, the thermal analysis also clarified the crucial importance of microwave heating in enhancing the energy efficiency of the reaction compared to the conventional heating.
机译:关于降低反应能量消耗,研究了在活性炭(AC)上负载的Ni和Ni-MgO催化剂的微波辅助干燥重整。为了使用微波设置优化重整反应,对操作参数的影响,包括催化剂的活性金属类型及其在AC载体,进给流速和反应的反应温度的浓度下进行包容性研究转换和H2 / CO选择性。使用常规加热也进行甲烷干重整,并将结果与​​微波加热相比。微波加热下催化剂的活性增加,结果,与常规的加热方法相比,增强了进料转化和氢选择性。此外,为了提高反应物的转化和产品的选择性,热分析还阐明了微波加热在与常规加热相比增强反应能效的关键重要性。

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