首页> 外文会议>IEEE Conference on Electrical Insulation and Dielectric Phenomena (CEIDP '09) >Experimental investigation on photochemical NOx gas treatment for diesel engine combustion exhaust by a dielectric barrier discharge type Xe excimer lamp
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Experimental investigation on photochemical NOx gas treatment for diesel engine combustion exhaust by a dielectric barrier discharge type Xe excimer lamp

机译:介质阻挡放电型Xe准分子灯对柴油机燃烧废气光化学NOx气体处理的实验研究

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In this work, a NOx gas treatment using photochemical reactions with a VUV irradiation was investigated. From the theoretical considerations, an effective photon energy (165 kcal/mol) higher than the binding energies of NO (150 kcal/mol) and NO2 (74 kcal/mol) was applied to the photochemical reaction. The experimental evaluation was conducted by using a photochemical reactor with a diesel engine combustion exhaust tube attached on a Xe excimer lamp operated on dielectric barrier discharges. It was confirmed that the discharge lamp radiated the excimer light of 172 nm in wavelength as the effective photon energy. The experimental results indicated that the concentration of NO and NO2 gas molecules in the combustion exhaust were decreased with increasing the excimer light irradiation time. The photochemical effect on the NO removal was improved due to increasing NO2 molecules as a secondary product with NO molecules and photochemically dissociated O atoms from residual O2 molecules. This fact suggested that the NO and NO2 removal rates were depended on residual O2 concentration. This paper presents the application of the VUV irradiation from the Xe excimer lamp to the effective NOx treatment for diesel engine combustion exhaust gas. The fundamental characteristics is quantitatively discussed as functions of the experimental parameter such as the Xe excimer operation and the combustion exhaust gas condition.
机译:在这项工作中,研究了使用光化学反应和VUV辐射进行的NOx气体处理。从理论上考虑,将比NO(150 kcal / mol)和NO 2 (74 kcal / mol)的结合能高的有效光子能(165 kcal / mol)用于光化学反应。 。通过使用光化学反应器进行实验评估,该光化学反应器的柴油发动机燃烧排气管安装在通过介电势垒放电操作的Xe准分子灯上。可以确认,放电灯以有效光子能量放射出波长为172nm的受激准分子光。实验结果表明,随着准分子光照射时间的增加,燃烧废气中NO和NO 2 气体分子的浓度降低。通过增加NO 2 分子作为NO的二级产物,并从残留的O 2 分子中光解离O原子,改善了光化学作用对NO的去除。这一事实表明,NO和NO 2 的去除率取决于残留的O 2 浓度。本文介绍了氙气准分子灯的VUV辐照在柴油机燃烧废气的有效NOx处理中的应用。基本特性将作为实验参数(例如Xe准分子操作和燃烧废气条件)的函数进行定量讨论。

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