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Effect of the Volumetric Flow Rate of Reaction Mixture Components on Nonoxidative Reforming of Methane with Admixed Water in Dielectric-Barrier Discharge

机译:反应混合物组分体积流量对介电阻挡放电混合水的非氧化重整

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摘要

The effect of the volumetric flow rate of reaction mixture components on the nonoxidative reforming of methane with admixed water in dielectric-barrier discharge has been studied. An increase in the volumetric flow rate of water from 1.3 to 6 cm(3)/h did not exert a noticeable effect on the conversion of methane and on the concentrations of hydrogen and ethane in gaseous reaction products. An increase in the concentration of propane and butanes was observed, whereas the total ethylene and propylene content of the products decreased. An increase in the volumetric flow rate of methane from 5 to 60 cm(3)/min led to a decrease in the conversion of methane from 29.3 to 6.2 vol % and a decrease in energy consumption for its reforming from 88.3 to 34.7 eV/molecule, and it was also accompanied by a decrease in the rate of formation of gaseous alkanes and olefins. The experimental data confirmed previous conclusions on the reaction mechanism and kinetics of the nonoxidative reforming of methane in dielectric-barrier discharge, which were made using a mathematical model.
机译:研究了反应混合物组分对介电阻隔放电中与混合水的非氧化反应的非氧化重整的影响。从1.3〜6cm(3)/ h的水的容量流速的增加对甲烷的转化并对气态反应产物中的氢气和乙烷的浓度没有发挥着显着的影响。观察到丙烷和丁烷浓度的增加,而产物的总乙烯和丙烯含量降低。从5至60cm(3)/ min的甲烷的体积流速的增加导致甲烷转化的降低从29.3%到6.2体积%,从88.3至34.7 eV /分子的重整率降低并且还伴随着气态烷烃和烯烃形成速率的降低。实验数据证实了前一种结论,关于介电阻挡放电中甲烷中非氧化重整的反应机理和动力学,其使用数学模型进行。

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