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Real-time, in situ, continuous monitoring of CO in a pulverized-coal-fired power plant with a 2.3 urn laser absorption sensor

机译:使用2.3微米激光吸收传感器实时实时监控粉煤发电厂中的CO

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摘要

A real-time, in situ CO sensor using 2.3 urn DFB diode laser absorption, with calibration-free wave-length-modulation-spectroscopy, was demonstrated for continuous monitoring in the boiler exhaust of a pulver-ized-coal-fired power plant up to temperatures of 700 K. The sensor was similar to a design demonstrated earlier in laboratory conditions, now refined to accommodate the harsh conditions of utility boilers. Measurements were performed across a 3 m path in the particulate-laden economizer exhaust of the coal-fired boiler. A 0.6 ppm detection limit with 1 s averaging was estimated from the results of a continuous 7-h-long measurement with varied excess air levels. The measured CO concentration exhibited expected inverse trends with the excess O_2 concentration, which was varied between 1 and 3 %. Measured CO concentrations ranged between 6 and 200 ppm; evaluation of the data suggested a dynamic range from 6 to 10,000 ppm based on a minimum signal-to-noise ratio of ten and maximum absorbance of one. This field demonstration of a 2.3 μm laser absorption sensor for CO showed great potential for real-time combustion exhaust monitoring and control of practical combustion systems.
机译:演示了使用2.3 urn DFB二极管激光吸收的实时原位CO传感器和无标定波长调制光谱技术,用于连续监测粉煤电厂的锅炉尾气温度可达700K。该传感器类似于早先在实验室条件下演示的设计,现在经过精炼以适应公用事业锅炉的苛刻条件。在燃煤锅炉的装有颗粒的省煤器排气口中的3 m路径上进行了测量。根据连续7小时的测量结果(变化的过量空气水平)估算出平均1秒的0.6 ppm检测极限。测得的CO浓度随过量的O_2浓度表现出预期的逆趋势,而O_2的浓度在1-3%之间变化。测得的CO浓度范围为6至200 ppm。数据评估表明,动态范围为6至10,000 ppm,基于最小的信噪比为10和最大的吸光度为1。这个用于CO的2.3μm激光吸收传感器的现场演示显示了对实时燃烧排气进行监测和控制实际燃烧系统的巨大潜力。

著录项

  • 来源
    《Applied physics》 |2013年第3期|359-365|共7页
  • 作者单位

    High Temperature Gasdynamics Laboratory, Department of Mechanical Engineering, Stanford University, Stanford,CA 94035, USA;

    High Temperature Gasdynamics Laboratory, Department of Mechanical Engineering, Stanford University, Stanford,CA 94035, USA;

    High Temperature Gasdynamics Laboratory, Department of Mechanical Engineering, Stanford University, Stanford,CA 94035, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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