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首页> 外文期刊>Energy & fuels >A Detailed Kinetic Modeling Study of Benzene Oxidation and Combustion in Premixed Flames and Ideal Reactors
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A Detailed Kinetic Modeling Study of Benzene Oxidation and Combustion in Premixed Flames and Ideal Reactors

机译:预混火焰和理想反应器中苯氧化与燃烧的详细动力学模型研究

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摘要

The pyrolysis and oxidation of benzene occupies a critical role in the combustion chemistry of practical fuels. Despite numerous experimental and numerical investigations, uncertainties still exist regarding even major benzene combustion features. Recent benzene premixed flame data sets offer a unique possibility for the judicious evaluation of mechanisms developed solely on the basis of a single flame. In this context, a validated detailed kinetic mechanism for benzene oxidation and combustion has been further developed and assessed against recently available premixed flame data and data from shock tubes and stirred and flow reactors. Speciation data from phenol and benzoquinone pyrolysis and oxidation are additionally used as validation targets. This approach provides the opportunity for a more systematic evaluation of uncertainties associated with experimental data obtained under similar conditions. A re-evaluation of the phenyl radical oxidation, phenol/phenoxy chemistry, and a cyclopentadiene submechanism is proposed in view of both new rate data and validation targets. Benzene oxidation is shown to be largely controlled by oxidation of phenoxy and cyclopentadienyl radicals, with C_5 and C_6 linearization reactions also being crucial. A notable exception is benzyne, which is predominantly consumed to a linear isomer. The mechanism is shown to successfully reproduce benzene experimental data covering a wide range of operating conditions. Phenol and benzoquinone pyrolysis and oxidation are also adequately captured. Further, the chemistry of C_1 -C_4 small hydrocarbons is satisfactorily reproduced. Uncertainties related to both kinetic and thermodynamic data are evaluated. Finally, the study identifies aspects of benzene combustion chemistry where further work is required, most notably the rate and product distribution of the C_6H_5 + O_2 reaction.
机译:苯的热解和氧化在实际燃料的燃烧化学中起着至关重要的作用。尽管进行了大量的实验和数值研究,但即使是主要的苯燃烧特征,仍然存在不确定性。最新的苯预混火焰数据集为明智地评估仅基于单个火焰的机理提供了独特的可能性。在这种情况下,已进一步开发并验证了苯氧化和燃烧的详细动力学机理,并根据最近可获得的预混火焰数据以及来自激波管,搅拌和流动反应器的数据进行了评估。来自苯酚和苯醌热解和氧化的物种数据另外用作验证目标。这种方法为更系统地评估与在类似条件下获得的实验数据相关的不确定性提供了机会。鉴于新的速率数据和验证目标,提出了对苯基自由基氧化,苯酚/苯氧基化学和环戊二烯亚机理的重新评估。苯的氧化显示很大程度上受苯氧基和环戊二烯基自由基的氧化控制,C_5和C_6线性化反应也很关键。值得注意的例外是苯炔,其主要被消耗为线性异构体。事实证明,该机理可成功重现涵盖广泛操作条件的苯实验数据。苯酚和苯醌的热解和氧化也得到了充分的捕获。此外,令人满意地再现了C_1 -C_4小烃的化学性质。评估与动力学和热力学数据相关的不确定性。最后,该研究确定了需要进一步工作的苯燃烧化学方面,最值得注意的是C_6H_5 + O_2反应的速率和产物分布。

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  • 来源
    《Energy & fuels》 |2011年第mayajuna期|p.1950-1963|共14页
  • 作者单位

    Laboratory of Heterogeneous Mixtures and Combustion Systems, Thermal Engineering Section, School of Mechanical Engineering, National Technical University of Athens, Heroon Polytechniou 9, Polytechnioupoli-Zografou, Athens 15780, Greece;

    Laboratory of Heterogeneous Mixtures and Combustion Systems, Thermal Engineering Section, School of Mechanical Engineering, National Technical University of Athens, Heroon Polytechniou 9, Polytechnioupoli-Zografou, Athens 15780, Greece;

    Laboratory of Heterogeneous Mixtures and Combustion Systems, Thermal Engineering Section, School of Mechanical Engineering, National Technical University of Athens, Heroon Polytechniou 9, Polytechnioupoli-Zografou, Athens 15780, Greece;

  • 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);
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  • 正文语种 eng
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