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Application of Microplasma for $hbox{NO}_{rm x}$ Removal

机译:应用微浆技术去除$ hbox {NO} _ {rm x} $

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In this paper, microplasma is investigated, which occurs between the narrow gap of the electrodes covered with dielectric materials. The discharge gap is set on the order of micrometers by changing a spacer from 0 to 100 mum. In this paper, the characteristics of microplasma, such as discharge voltages, discharge currents, and discharge power that is obtained with the help of Lissajous figures, and the relationships between these electric characteristics are presented. The characteristics of ozone generation by a microplasma electrode are investigated. Treatment by microplasma for the simulated exhaust gas, which contains NOx and C3H8 as a role of HC and CO, is estimated experimentally. In the absence of O2, the exhaust gas is decomposed by nitrogen atomic species in particular. In the presence of O2, it is decomposed by nitrogen atomic species and oxidized by ozone. By-product analysis of treated gases is carried out by Fourier transform infrared spectroscopy and gas chromatography-mass spectrometry. When HC, NOx, and N2 are included in the simulated exhaust gas, HCN, N2O, and CH4 are confirmed as by-products of the microplasma treatment.
机译:在本文中,对微等离子体进行了研究,这种等离子体发生在被电介质覆盖的电极的狭窄间隙之间。通过将垫片从0改为100微米,将放电间隙设置为微米级。在本文中,利用李沙育图形获得了微等离子体的特性,如放电电压,放电电流和放电功率,以及这些电特性之间的关系。研究了通过等离子电极产生臭氧的特性。实验估算了通过等离子体处理模拟废气的过程,该废气包含NOx和C3H8作为HC和CO的作用。在不存在O 2的情况下,废气尤其被氮原子物质分解。在存在氧气的情况下,它会被氮原子分解并被臭氧氧化。经处理的气体的副产物分析通过傅里叶变换红外光谱法和气相色谱-质谱法进行。当模拟废气中包含HC,NOx和N2时,确认HCN,N2O和CH4是微等离子体处理的副产品。

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