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Main fundamental gas reactions in denitrification and desulfurization from flue gas by non-thermal plasmas

机译:非热等离子体在烟气脱硝和脱硫中的主要基本气体反应

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Numerous species and their fundamental reactions are involved in non-thermal plasma (NTP0 flue gas cleaning kinetics, but only a few species and their reactions are important. In this paper, the CSTR simulation is utilized to analyze the NTP processes so as to establish the kinetic equations in a logical maner. In addition, by comparing the reaction rates of different species, it is found that only three kinds of reactions(positive ion charge transfer, metastable reactions adn radical reactions) are significant for denitrification and desulfurization. Thus the whole set of kinetic equations can be divided into three subsets, each of which corresponds to one kind of reaction. Furthermore, almost all the characteristic times of the reactions of interest are much shorter than the practical treatment time. So, the NTP processes are considered to reach their stationary states. Solving the stationary kinetic equations and calculating the related reaction rates, the main species and their main reactions in four concrete cases of NTP denitrification and desulfurization are picked out. Effects of differnet conditions on NTP denitrification and desulfuriation are discussed.
机译:非热等离子体(NTP0烟道气净化动力学)涉及多种物种及其基本反应,但只有少数几种物种及其反应是重要的。在本文中,CSTR模拟用于分析NTP过程,从而建立了此外,通过比较不同物种的反应速率,发现只有三种反应(正离子电荷转移,亚稳态反应和自由基反应)对反硝化和脱硫反应很重要。一组动力学方程可以分为三个子集,每个子​​集对应一种反应,而且,几乎所有感兴趣反应的特征时间都比实际处理时间短得多,因此,NTP过程被认为是达到稳态,求解稳态动力学方程并计算相关的反应速率,主要物质及其残基选取了NTP脱硝和脱硫的四个具体案例中的n个反应。讨论了不同网络条件对NTP脱氮和脱硫的影响。

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