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    循环流化床锅炉高温烟气组分在线监测技术应用

    Application of high-temperature flue gas component online monitoring technology in CFB boilers

    • 摘要: 在循环流化床(CFB)锅炉机组运行中,烟气组分的在线监测对于指导锅炉运行参数的调整至关重要。传统在线监测系统受环境工况等影响所选取的监测位置离炉膛区域较远,测得的烟气组分对于炉内实时调整而言,存在代表性不足、时滞大、响应慢等问题。通过完成适用于炉内高烟尘、高烟速、高烟温气体组分在线分析系统的开发,实现了炉内高温烟气组分的在线实时监测。该系统可弥补传统分析方式的不足,更快速、真实地反映炉内燃烧过程的特征参数,进而为循环流化床锅炉运行人员的精细化调整提供可靠指导。对循环流化床锅炉常用的监测方法和手段进行了调研,总结分析了各类在线气体监测系统原理方法的优缺点与应用范围,用于指导高温烟气组分在线监测技术的设计方案选择。结合具体的高温烟气分区监测技术工程应用,对比分析运行效果,应用结果显示在取样系统设计上采用抽取式方法、一对一测量方式更佳,仪表选型上常规组分测量推荐选择非分光红外气体分析仪,掺烧多元燃料的机组可选择傅里叶红外气体分析仪以实现更多组分的监测。建议加强高温烟气分区监测系统智能化监测保障设备安全稳定运行;在燃料多变、运行负荷多变的背景工况下,通过应用高温烟气分区监测技术,将系统获取的数据纳入电厂运行调控措施中,增加炉内精细化调整方法;未来可进行更多相关技术的应用开发,完善炉内运行过程参数监测和控制手段。

       

      Abstract: In the operation of circulating fluidized bed (CFB) boiler units, online monitoring of flue gas components is crucial guiding the adjustment of boiler operation parameters. Traditional online monitoring systems, affected by environmental conditions, select monitoring positions far from the furnace area, and the measured flue gas components have problems such as insufficient representativeness, large time lag, and slow response for real-time adjustment in the furnace. By completing the development of an online analysis suitable for high-smoke, high-smoke speed, and high-smoke temperature gas components in the furnace, it is possible to monitor the high-temperature flue components in the furnace online and in real time, which can make up for the shortcomings of traditional methods and more quickly and truly reflect the characteristic parameters of the combustion process the furnace, thus better guiding the operation personnel to adjust the circulating fluidized bed boiler in detail. The research investigates the commonly used monitoring methods and means of CFB, summarizes and analyzes the advantages, disadvantages, and application scope of the principles and methods of various online gas monitoring systems, and uses them to guide the selection of the scheme of the online monitoring technology for high-temperature flue gas components. Combined with the specific engineering application of high-temperature flue gas zoning monitoring technology, the effect is compared and analyzed, and the application results show that the extraction method and one-to-one measurement mode are better in the design of the sampling system, and the component measurement recommends the use of non-dispersive infrared gas analyzer, and the unit with mixed combustion of multiple fuels can choose Fourier infrared gas analyzer to achieve more components. It is suggested to strengthen the intelligent monitoring of the high-temperature flue gas zoning monitoring system to ensure the safe and stable operation of the equipment; under background conditions of fuel variability and operation load variability, by applying the high-temperature flue gas zoning monitoring technology, the data obtained by the system should be included in operation and regulation measures of the power plant, and the methods of detailed adjustment in the furnace should be increased; in the future, more related technologies can be applied and, and the monitoring and control means of the furnace operation process parameters can be perfected.

       

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