中国电力 ›› 2018, Vol. 51 ›› Issue (12): 114-117.DOI: 10.11930/j.issn.1004-9649.201806015

• 发电 • 上一篇    下一篇

三次风炉外分离技术在低氮燃烧改造中的研究与应用

杜君文, 申明, 李升   

  1. 长安石门发电有限公司, 湖南 常德 415300
  • 收稿日期:2018-06-06 修回日期:2018-10-05 出版日期:2018-12-05 发布日期:2018-12-13
  • 作者简介:杜君文(1981-),男,硕士,工程师,从事火力发电厂热能动力工程和电力经济研究,E-mail:djw@cadlhz.com;申明(1976-),男,高级工程师,从事火力发电厂热工自动化专业研究,E-mail:13973757251@139.com;李升(1968-),男,工程师,从事火力发电厂热能动力工程和电气自动化专业研究,E-mail:ls@cadlhz.com
  • 基金资助:
    国家重点研发计划基金资助项目(2017YFB0602004)。

Research on and Application of Tertiary Air External Separation Technology in Low Nitrogen Combustion Retrofit

DU Junwen, SHEN Ming, LI Sheng   

  1. Chang'an Shimen Power Generation Co., Ltd., Changde 415300, China
  • Received:2018-06-06 Revised:2018-10-05 Online:2018-12-05 Published:2018-12-13
  • Supported by:
    This work is supported by National Key Research and Development Project (No.2017YFB0602004).

摘要: 针对某电厂330 MW四角切圆中间储仓式热风送粉锅炉NOx生成浓度高的问题,分析了三次风对NOx生成的影响,优化了燃烧系统关键部件,整体上采用一次风水平浓淡低氮燃烧器+三次风炉外分离+空气分级技术的改造方案,针对NOx生成影响较大的三次风采用了炉外分离+垂直空间分级送入技术。实际运行表明,改造后锅炉NOx生成量明显减少,锅炉燃烧、运行稳定,锅炉效率不降低。

关键词: 火电厂, 锅炉, 炉外分离, 浓淡分离, 垂直空间分级, 热风送粉, 高温腐蚀

Abstract: Regarding the problem of high NOx concentrations in a 330 MW boiler with quadrangular circular firing and hot air coal-powder feeding, based on the analysis of the impacts of tertiary air on NOx generation, the key components of the combustion system are optimized. To be more specific, the low level nitrogen burner with horizontal primary air separation, plus the tertiary air with external separation together with the in-depth air classification technologies are implemented in the entire retrofit scheme. Especially for the tertiary air that may highly affect the NOx generation, the external separation and vertical space classification and delivery technologies are used. It is evident from the actual operation that after the retrofit, the NOx generation volume is reduced significantly, while the boiler combustion and operation still remain stable state without any side effect on the boiler efficiency.

Key words: thermal power plant, boiler, external separation, deep dense and dilute separation, vertical space classification, hot air powder, high temperature corrosion

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