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A role of hydrocarbon reaction for NO_x formation and reduction in fuel-rich pulverized coal combustion

机译:碳氢化合物反应在富燃料煤粉燃烧中对NO_x生成和还原的作用

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摘要

We have investigated an index for modeling a NO_x reaction mechanism of pulverized coal combustion. The reaction mechanism of coal nitrogen was examined by drop-tube furnace experiments under various burning conditions. We proposed the gas phase stoichiometric ratio (SRgas) as a key index to evaluate NO_x concentration in fuel-rich flames. The SRgas was defined as:rnSRgas = amount of fuel required for stoichiometry combustion/amount of gasified fuelrnwhere, the amount of gasified fuel was defined as the amount of fuel which had been released to the gas phase by pyrolysis, oxidation and gasification reactions. When SRgas < 1.0, NO_x concentration was strongly influenced by the value of SRgas. In this condition, the NO_x concentration was hardly influenced by coal type, particle diameter, or reaction time. We developed a model to analyze NO_x and XN(HCN, NH_3) concentrations for pulverized coal/air combustion and coal/CO_2/O_2 combustion, based on the index. NO_x and XN concentrations did not reproduce the experimental results without considering reactions between hydrocarbons and NO_x. The hydrocarbon reaction was important for both NO_x and XN, especially for air combustion. In the present model, an empirical formula was used to estimate the total concentration of hydrocarbons in coal flame. The reaction of heavy hydrocarbons which had plural aromatic rings was very important to analyze the reaction mechanism of hydrocarbons for coal combustion in detail. When burning temperature and SRgas were the same, total hydrocarbon concentration in a coal flame was larger than that of a light gaseous hydrocarbon flame. Total hydrocarbon concentration in oxy-fuel combustion was lower than that in air combustion. We verified the proposed model by experimental results obtained for a drop-tube furnace and a laboratory-scale furnace that had an installed low-NO_x burner.
机译:我们研究了用于模拟煤粉燃烧NO_x反应机理的指标。通过滴管炉实验在不同燃烧条件下研究了煤氮的反应机理。我们提出了气相化学计量比(SRgas)作为评估富燃料火焰中NO_x浓度的关键指标。 SRgas定义为:rnSRgas =化学计量燃烧所需的燃料量/气化燃料的量rn,其中,气化燃料的量定义为通过热解,氧化和气化反应释放到气相中的燃料量。当SRgas <1.0时,NO_x浓度受SRgas值的强烈影响。在这种条件下,NO_x浓度几乎不受煤类型,粒径或反应时间的影响。我们建立了一个用于分析煤粉/空气燃烧和煤/ CO_2 / O_2燃烧的NO_x和XN(HCN,NH_3)浓度的模型。如果不考虑碳氢化合物和NO_x之间的反应,NO_x和XN的浓度不能再现实验结果。碳氢化合物反应对于NO_x和XN都很重要,特别是对于空气燃烧而言。在本模型中,使用经验公式估算煤火焰中碳氢化合物的总浓度。具有多个芳环的重烃的反应对于详细分析烃类燃烧煤的反应机理非常重要。当燃烧温度和SRgas相同时,煤火焰中的总烃浓度大于轻质气态烃火焰中的总烃浓度。含氧燃料燃烧中的总烃浓度低于空气燃烧中的总烃浓度。我们通过安装了低NO_x燃烧器的落管式炉和实验室规模的炉所获得的实验结果验证了所提出的模型。

著录项

  • 来源
    《Combustion and Flame》 |2010年第8期|P.1456-1466|共11页
  • 作者单位

    Energy and Environmental Systems Laboratory, Hitachi, Ltd. Power Systems Company, 7-2-1 Omika-cho, Hitachi-shi, Ibaraki-ken 319-1292, Japan Combustion System Group, The Coal Science Project, Energy and Environmental Systems Laboratory, Hitachi, Ltd. Power Systems Company, 832-2 Horiguchi, Hitachinaka-shi, lbaraki-ken 312-0034, Japan;

    rnEnergy and Environmental Systems Laboratory, Hitachi, Ltd. Power Systems Company, 7-2-1 Omika-cho, Hitachi-shi, Ibaraki-ken 319-1292, Japan;

    rnEnergy and Environmental Systems Laboratory, Hitachi, Ltd. Power Systems Company, 7-2-1 Omika-cho, Hitachi-shi, Ibaraki-ken 319-1292, Japan;

    rnEnergy and Environmental Systems Laboratory, Hitachi, Ltd. Power Systems Company, 7-2-1 Omika-cho, Hitachi-shi, Ibaraki-ken 319-1292, Japan;

    rnEnergy and Environmental Systems Laboratory, Hitachi, Ltd. Power Systems Company, 7-2-1 Omika-cho, Hitachi-shi, Ibaraki-ken 319-1292, Japan;

  • 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

    low-NO_x combustion; pulverized coals; reaction model; gas phase stoichiometric ratio; hydrocarbon reaction;

    机译:低NOx燃烧煤粉反应模型气相化学计量比烃反应;
  • 入库时间 2022-08-18 00:12:27

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