1000 MW机组锅炉掺烧贫煤NOx排放的燃烧优化
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国家重点研发计划资助项目(2016YFB0600601)


Combustion Optimization for Controlling NOx Emission from 1000 MW Ultra-supercritical Boiler Operated at Lean Coal Blending
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    摘要:

    国内大型燃煤电站锅炉在低负荷运行工况下NOx排放浓度往往偏高。文中采用燃烧优化运行技术,降低某电厂1000 MW超超临界机组锅炉部分负荷运行时NOx排放浓度。通过进行现场试验并与历史运行数据比较分析发现,锅炉运行氧量偏高和掺烧贫煤是该锅炉部分负荷运行时NOx排放浓度偏高的主要原因。试验结果表明,采用燃烧优化技术可有效控制该锅炉低负荷时NOx排放浓度。无论是单烧烟煤还是掺烧贫煤,在机组负荷为700 MW时,采用中间4台磨(B、C、D、E磨)运行的磨组运行方式代替习惯5台磨运行方式,可实现较低的NOx排放浓度目标和较高的锅炉效率。

    Abstract:

    Large-scale pulverized coal-fired power plants in China are frequently operated at partial loads,where NOx emission from the furnace is generally high.The present work aimed at controlling NOx emissions from a 1000 MW ultra supercritical boiler at partial load operation through combustion optimization.In-situ tests were conducted to optimize the combustion through evaluating the impacts of varying major operation parameters on NOxemission and boiler efficiency and comparing testing results with historic operational data extracted from the unit digital control system.High combustion excess O2 level and blending lean coal with bituminous coal were identified to be the major factors leading to high NOx emissions of usual operation particularly at low loads.The optimization successfully reduced NOx emissions from the furnace co-firing lean coal with bituminous coal at both high and low loads,significantly lower than the averages of usual operation.It demonstrated the effectiveness of combustion optimization in controlling NOx emissions for low load operation.Additionally,it was found that,for 700 MW load operation,applying the mode of mid four mills (B,C,D and E) in service to replace the often used mode of five mills in service achieved not only low NOx emissions but also good boiler performance.

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高小涛,盛昌栋.1000 MW机组锅炉掺烧贫煤NOx排放的燃烧优化[J].电力工程技术,2018,37(3):14-20

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  • 收稿日期:2018-01-24
  • 最后修改日期:2018-02-27
  • 录用日期:2018-03-16
  • 在线发布日期: 2018-05-29
  • 出版日期: 2018-05-28
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