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Effect Of Propene, n-Decane, and Toluene Plasma Kinetics on NO Conversion in Homogeneous Oxygen-Rich Dry Mixtures at Ambient Temperature

机译:丙烯,正癸烷和甲苯等离子体动力学对常温下富氧干混合物中NO转化的影响

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摘要

A photo-triggered discharge is used to study the influence of three hydrocarbons (HCs), propene (C3H6), n-decane (C10H22), and toluene (C6H5CH3) on NO conversion in N2/O2/NO/HC mixtures, with 18.5% O2 concentration, 700 ppm of NO, and an hydrocarbon concentration ranging between 190 ppm and 2,700 ppm. The electrical system generates a transient homogeneous plasma, working under 400 mbar total pressure, with a 50 ns short current pulse at a repetition frequency up to a few Hz. The NO concentration at the exit of the reactor is quantified using absolute FTIR spectroscopy measurements, as a function of the specific deposited energy in the discharge and the mixture composition. Owing to the plasma homogeneity, the experimental results can be compared to predictions of a self-consistent 0-D discharge and kinetic model based on available data in the literature about reactions and their rate constants. It is shown that the addition of either propene (as for DBD or corona discharges) or n-decane to N2/O2/NO leads to an improvement of the NO removal as compared to the mixture without hydrocarbon molecules. The adopted kinetic schemes explain this effect for the two mixture types. On the other hand, both the experiments and model predictions emphasize that the addition of toluene does not lead to the improvement of NO conversion. Moreover, compounds that are useful for NO x reduction catalysis, such as aldehydes, are less produced in the mixture with toluene.
机译:使用光触发放电来研究三种碳氢化合物(HCs),丙烯(C3 H6 ),正癸烷(C10 H22 )和甲苯的影响(C6 H5 CH3 )对N2 / O2 / NO / HC混合物中NO的转化率,O2浓度为18.5% NO含量为190 ppm至2700 ppm。电气系统会产生瞬态均匀等离子体,该等离子体在总压力为400 mbar的情况下工作,并具有5​​0 ns的短电流脉冲,其重复频率高达几赫兹。使用绝对FTIR光谱测量来量化反应器出口处的NO浓度,该排放量是排放物中特定沉积能量和混合物组成的函数。由于等离子体的均质性,可以根据文献中有关反应及其速率常数的可用数据,将实验结果与自洽0-D放电和动力学模型的预测进行比较。结果表明,与不含烃的混合物相比,向N2 / O2 / NO中添加丙烯(如DBD或电晕放电)或正癸烷可提高NO的去除率分子。所采用的动力学方案解释了两种混合物类型的这种影响。另一方面,实验和模型预测均强调,添加甲苯不会导致NO转化率的提高。此外,在与甲苯的混合物中较少产生用于NO x 还原催化的化合物,例如醛。

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