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Experimental study on NO_x formation and burnout characteristics of pulverized coal in oxygen enriched and deep-staging combustion

机译:富氧深层燃烧中煤粉NO_x形成及燃尽特性的实验研究

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摘要

Deep-staging combustion is an effective technology for reduction of NOx, but is often accompanied by the combustion worsening. Oxygen enriched and deep-staging combustion is a promising technology to realize both low NOx formation and high burnout rate. NOx reduction and burnout characteristics of pulverized coal in oxygen enriched combustion were experimentally investigated in this study with a drop-tube reactor. Results show that the NOx reduction is significantly promoted by elevated O-2 concentration under deep-staging condition. The NOx formation of coal under 40% oxygen concentration condition is 40.7% lower than those in air combustion as the stoichiometric ratio in the fuel-rich zone (SR1) is 0.5. The thermal and fuel NOx formations were separately investigated. The fuel NOx reduction with increase of O-2 concentration makes a major contribution to the total NOx reduction under deep-staging conditions. The elevated O-2 concentration facilitates the release of fuel nitrogen in the fuel-rich zone, avoiding its oxidation in the fuel-lean zone. Moreover, the negative correlation between NOx formation and unburned carbon (UBC) in coal ash is evidently weakened with the increase of O-2 concentration. Ultra-low NOx formation and high combustion efficiency could be concurrently achieved in oxygen enriched combustion under deep-staging condition. Furthermore, the comprehensive comparison of the oxygen enriched combustion, air combustion and oxy-fuel combustion was conducted. Low NOx formation can be reached in oxy-fuel combustion under non-staging condition, while oxygen enriched combustion performs much better in NOx reduction under deep-staging conditions.
机译:深度燃烧是减少NOx的有效技术,但通常伴随着燃烧恶化。富氧和深度燃烧是实现低NOx形成和高燃尽率的有前途的技术。利用滴管式反应器,通过实验研究了富氧燃烧中粉煤的NOx还原和燃尽特性。结果表明,在深阶段条件下,升高的O-2浓度可以显着促进NOx的还原。由于富燃料区(SR1)的化学计量比为0.5,因此在40%的氧气浓度条件下,煤的NOx生成量比空气燃烧时的NOx生成量低40.7%。分别研究了热和燃料NOx的形成。随着O-2浓度的增加,燃料NOx的减少对深度分级条件下的总NOx减少做出了重大贡献。升高的O-2浓度有助于在富油区释放燃料氮,避免其在贫油区被氧化。此外,随着O-2浓度的增加,煤灰中NOx形成与未燃烧碳(UBC)之间的负相关性明显减弱。在深阶段条件下,富氧燃烧可同时实现超低NOx形成和高燃烧效率。此外,对富氧燃烧,空气燃烧和含氧燃料燃烧进行了综合比较。在非分级条件下的含氧燃料燃烧中,NOx的生成量较低,而在深度分级条件下的富氧燃烧在NOx还原中的性能要好得多。

著录项

  • 来源
    《Fuel》 |2020年第jul15期|117639.1-117639.10|共10页
  • 作者

  • 作者单位

    Xi An Jiao Tong Univ State Key Lab Multiphase Flow Power Engn Sch Energy & Power Engn Xian 710049 Peoples R China;

    Xi An Jiao Tong Univ Sch Human Settlements & Civil Engn Xian 710049 Peoples R China;

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

    Oxygen enriched combustion; NOx reduction; Burnout characteristics; Fuel and thermal NOx;

    机译:富氧燃烧;减少氮氧化物倦怠特征;燃料和热氮氧化物;

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