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Effect of hydrogen addition on NOx formation in high-pressure counter-flow premixed CH_4/air flames

机译:加氢对高压逆流预混合CH_4 /空气火焰中NOx形成的影响

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摘要

A laboratory-scale laminar counterflow burner was used to investigate NO formation in high pressure premixed CH4/H-2/air flames. New experimental results on NO measurements by LIF were obtained at high pressure in CH4/H-2/air flames with H-2 content fixed at 20% in the fuel at pressures ranging from 0.1 to 0.7 MPa and an equivalence ratio progressively decreased from 0.74 to 0.6. The effects of hydrogen addition, equivalence ratio and pressure are discussed. These results are satisfactorily compared to the simulations using two detailed mechanisms: GDFkin (R) 3.0_NOmecha2.0 and the mechanism from Klippenstein et al., which are the most recent high-pressure NOx formation mechanisms available in the literature. A kinetic analysis based on Rate of Production/Rate of Con- sumption and sensitivity analyses of NO is then presented to identify the main pathways that lead to the formation and consumption of NO. In addition, the effect of hydrogen addition on NO formation pathways is described and analysed. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用实验室规模的层流逆流燃烧器研究高压预混合CH4 / H-2 /空气火焰中的NO形成。在高压下,在压力为0.1至0.7 MPa且燃料中H-2含量固定为20%的CH4 / H-2 /空气火焰中,获得了通过LIF测量NO的新实验结果,当量比从0.74逐渐降低至0.6。讨论了加氢,当量比和压力的影响。将这些结果与使用两种详细机理的模拟进行了令人满意的比较:GDFkin(R)3.0_NOmecha2.0和Klippenstein等人的机理,这是文献中最新的高压NOx形成机理。然后提出了基于生产速率/消耗速率和NO敏感性分析的动力学分析,以识别导致NO形成和消耗的主要途径。另外,描述并分析了氢添加对NO形成途径的影响。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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