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Optimal boiler control through real-time monitoring of unburned carbon in fly ash by laser-induced breakdown spectroscopy

机译:通过激光诱导击穿光谱法实时监测粉煤灰中未燃烧碳的最佳锅炉控制

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A laser-induced breakdown spectroscopy (LIBS) technique has been applied for detection of unburned carbon in fly ash, and an automated LIBS unit has been developed and applied in a 1000-MW pulverized-coal-fired power plant for real-time measurement, specifically of unburned carbon in fly ash. Good agreement was found between measurement results from the LIBS method and those from the conventional method (Japanese Industrial Standard 8815), with a standard deviation of 0.27%. This result confirms that the measurement of unburned carbon in fly ash by use of LIBS is sufficiently accurate for boiler control. Measurements taken by this apparatus were also integrated into a boiler-control system with the objective of achieving optimal and stable combustion. By control of the rotating speed of a mill rotary separator relative to measured unburned-carbon content, it has been demonstrated that boiler control is possible in an optimized manner by use of the value of the unburned-carbon content of fly ash.
机译:激光诱导击穿光谱(LIBS)技术已用于检测粉煤灰中未燃烧的碳,并且开发了自动LIBS装置并将其应用于1000 MW的粉煤电厂中以进行实时测量,特别是飞灰中未燃烧的碳。 LIBS方法的测量结果与常规方法(日本工业标准8815)的测量结果之间具有很好的一致性,标准偏差为0.27%。该结果证实,使用LIBS进行粉煤灰中未燃烧碳的测量对于锅炉控制而言足够准确。该设备进行的测量也被集成到锅炉控制系统中,以实现最佳和稳定的燃烧。通过控制磨机旋转分离器相对于测得的未燃烧碳含量的旋转速度,已证明可以通过利用粉煤灰的未燃烧碳含量的值以最佳方式对锅炉进行控制。

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    《Applied optics》 |2003年第30期|共7页
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