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Parametric analysis of plasma-assisted pulsed dry methane reforming over Ni/Al2O3 catalyst

机译:Ni / Al2O3催化剂上等离子辅助脉冲式干甲烷重整的参数分析

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Pulsed dry methane reforming (DMR) with CH4/CO2 ratios of 0.5-2.0 was investigated in a dielectric barrier discharge (DBD) and Ni/Al2O3 hybrid reaction. A pulsed CH4 supply allows alternating DMR and de-coking reactions, thus enabling reaction diagnostics without serious catalyst deactivation by coking. Parametric changes in the CH4/CO2 ratio were used to probe the rate-determining step and synergistic effect induced by DBD. Nonthermal plasma-activated CO2 and H2O were found to be key factors for enhancing the H-2 and CO yields and CO2 conversion. In contrast, CH4 conversion was not clearly enhanced by DBD at fixed temperatures near 550 degrees C. Moreover, based on experimental observations, a tentative mechanism was proposed wherein a trace amount of plasma-excited H2O catalytically promoted solid carbon oxidation.
机译:在介电势垒放电(DBD)和Ni / Al2O3杂化反应中,研究了CH4 / CO2比为0.5-2.0的脉冲干甲烷重整(DMR)。脉冲CH4供应允许交替进行DMR和除焦反应,因此可以进行反应诊断,而不会因焦化而使催化剂严重失活。 CH4 / CO2比值的参数变化用于探测速率决定步骤和DBD诱导的协同效应。发现非热等离子体活化的CO2和H2O是提高H-2和CO产量以及CO2转化率的关键因素。相反,DBD在接近550摄氏度的固定温度下并不能明显提高CH4的转化率。此外,基于实验观察,提出了一种试探性机制,其中微量的等离子体激发的H2O催化促进了固体碳的氧化。

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