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Characteristics of NO reduction with non-thermal plasma

机译:非热等离子体还原NO的特性

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As a new type of NO removal system, NO reduction in N_2-NO plasma was applied to solve the difficulties in the traditional methods, such as higher energy-consumption, larger equipment size and high cost, and so on. Using the experimental NO reduction system with single-pair electrode tip discharge structure, the NO reduction characteristics of N_2-NO system were revealed to guide the engineering practice; the results of NO reduction with single-pair electrode tip discharge plasma also have the same instructive meaning to the NO reduction with multi-pair electrode tip discharge plasma. The amount of both active N atom and NO removal rate increased with the distance increasing between the two electrode tips and then dropped when the distance exceeded a certain value. The NO removal rate increased while the voltage between two electrode tips or the resident time of gas flow increased. The distance is a key geometrical variable factor that can determine the intensity of electric field between two electrode tips and the resident time of gas. In this paper, the effects of the dielectric features on NO reduction using dielectric-barrier discharge plasma system were also studied. The results of NO removal rate with different dielectrics such as Al_2O_3, CaO, MgO and glass showed that the electric field intensity is different with different dielectric, because it brings different energy to particles in discharge room and thus it causes different NO removal rate.
机译:作为一种新型的NO去除系统,N_2-NO等离子体中的NO还原被用来解决传统方法中的难题,如能耗高,设备尺寸大,成本高等。利用具有单对电极尖端放电结构的实验性NO还原系统,揭示了N_2-NO系统的NO还原特性,以指导工程实践。单对电极头放电等离子体还原NO的结果与多对电极头放电等离子体还原NO的意义相同。随着两个电极头之间距离的增加,活性N原子和NO的去除率均增加,而当距离超过一定值时,活性N原子和NO的去除率均下降。当两个电极头之间的电压或气流的停留时间增加时,NO去除率增加。距离是关键的几何变量因子,可以确定两个电极头之间的电场强度和气体的停留时间。本文还研究了电介质特性对使用电介质阻挡放电等离子体系统还原NO的影响。 Al_2O_3,CaO,MgO和玻璃等不同电介质的NO去除率结果表明,不同电介质的电场强度不同,因为它给放电室中的颗粒带来不同的能量,从而导致不同的NO去除率。

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