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Experimental and kinetic modeling study of PAH formation in methane coflow diffusion flames doped with n-butanol

机译:正丁醇掺杂甲烷同流扩散火焰中多环芳烃形成的实验和动力学模型研究

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摘要

In order to understand the interactions between butanol and hydrocarbon fuels in the PAH formation, experimental and kinetic modeling investigations were combined to study methane laminar coflow diffusion flames doped with two inlet mole fractions of n-butanol (1.95% and 3.90%) in this work. Mole fractions of flame species along the flame centerline were measured using synchrotron VUV photoionization mass spectrometry. A detailed kinetic model of n-butanol combustion, extended from a recent published n-butanol model, was provided in this work to reproduce the fuel decomposition and the formation of benzene and PAHs in the investigated flames. Numerical simulations were performed with laminar-SMOKE code, a CFD code specifically conceived to handle large kinetic mechanisms. The simulation results were able to follow the observed effects of n-butanol addition from the experimental results. In particular, unsaturated hydrocarbons, especially C6-C16 aromatics, were predicted satisfactorily. The reaction flux analysis revealed that benzene precursors, especially C3 radicals, increase significantly with increasing inlet mole fraction of n-butanol. This enhances the formation of phenyl and benzyl radicals, which are important PAH precursors. Reactions of benzyl, phenyl radicals and benzene with C2-C3 species are the major formation pathways for indene and naphthalene. And PAHs with more carbon atoms are dominantly formed from naphthyl and indenyl radicals.
机译:为了了解丁醇与烃类燃料在多环芳烃形成中的相互作用,在这项工作中,结合了实验和动力学模型研究来研究掺有两个正丁醇(1.95%和3.90%)两个进气摩尔分数的甲烷层流同流扩散火焰。 。使用同步加速器VUV光电离质谱法测量了沿火焰中心线的火焰物质的摩尔分数。在这项工作中,提供了正丁醇燃烧的详细动力学模型,该模型是从最近发表的正丁醇模型扩展而来的,以重现燃料分解以及所研究火焰中苯和多环芳烃的形成。使用层流SMOKE代码(专门为处理大型动力学机制而设计的CFD代码)进行了数值模拟。模拟结果能够遵循实验结果中观察到的正丁醇添加效果。特别地,令人满意地预测了不饱和烃,特别是C 6 -C 16芳族化合物。反应通量分析表明,苯正体,特别是C3自由基,随着正丁醇入口摩尔分数的增加而显着增加。这增强了重要的PAH前体苯基和苄基的形成。苄基,苯基和苯与C2-C3的反应是茚和萘的主要形成途径。具有更多碳原子的PAHs主要由萘基和茚基组成。

著录项

  • 来源
    《Combustion and Flame》 |2014年第3期|657-670|共14页
  • 作者单位

    Department of Chemistry, Materials, and Chemical Engineering, Politecnico di Milano, P.zza Leonardo da Vinci 32, 20133 Milano, Italy,State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, Anhui 230026, PR China;

    Department of Chemistry, Materials, and Chemical Engineering, Politecnico di Milano, P.zza Leonardo da Vinci 32, 20133 Milano, Italy;

    Department of Chemistry, Materials, and Chemical Engineering, Politecnico di Milano, P.zza Leonardo da Vinci 32, 20133 Milano, Italy;

    Department of Chemistry, Materials, and Chemical Engineering, Politecnico di Milano, P.zza Leonardo da Vinci 32, 20133 Milano, Italy,Dipartimento di Chimica, Materiali e Inge-gneria Chimica, Politecnico di Milano, Milano 20133, Italy;

    State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, Anhui 230026, PR China;

    State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, Anhui 230026, PR China;

    State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, Anhui 230026, PR China,National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei, Anhui 230029, PR China;

    Dipartimento di Chimica, Materiali e Ingegneria Chimica, Politecnico di Milano, Milano 20133, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laminar non-premixed coflow flame; Butanol; Kinetic modeling of benzene and PAH; formation; Synchrotron VUV photoionization mass; spectrometry;

    机译:层流非预混同流火焰;丁醇苯和多环芳烃的动力学模型;编队同步加速器VUV光电离质量;光谱法;
  • 入库时间 2022-08-18 00:11:30

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