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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >In-situ CO measurement of gas and oil combustion flame using near infrared tunable diode laser with direct and modulated absorption signals
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In-situ CO measurement of gas and oil combustion flame using near infrared tunable diode laser with direct and modulated absorption signals

机译:使用具有直接和调制吸收信号的近红外可调谐二极管激光器对天然气和石油燃烧火焰进行原位CO测量

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摘要

An in-situ optical system consisting of a near infrared single-mode distributed-feedback laser and a range-extended InGaAsSb detector is reported for CO measurement in gas and industrial oil combustion flames. To minimize interference from the other major gas species in the flame, the individual R(30) transition in the first overtone band was selected from the HITRAN/HITEMP database. The average CO volume concentration along the optical path was retrieved using two different signals: the direct absorption signal and the secondary harmonic signal of wavelength modulated absorption spectroscopy. The measurement limit was approximately 300 ppm when the direct absorption signal was used and can be improved to 30 ppm by using the secondary modulated harmonic signal. An electrically heated tubular gas cell with precisely controlled temperature and CO concentration was used for calibration. The measurement system accuracy was evaluated using a laboratory premixed C_3H_8/air flat flame. Practical measurements of an industrial oil flame were carried out under different fuel/air equivalence ratios. The results indicate that the system is capable of fast in-situ CO measurement of different flames and that the interference from water vapor is negligible. The maximum relative difference between the measured CO concentration and the theoretically calculated value was less than 200 ppm in a stable gas flame. For industrial oil flames, the oscillation behavior of the CO concentration and the effect of the equivalence ratio on CO formation were captured clearly.
机译:据报道,一种由近红外单模分布式反馈激光器和增程InGaAsSb探测器组成的原位光学系统可用于天然气和工业燃油燃烧火焰中的CO测量。为了使火焰中其他主要气体物种的干扰最小,请从HITRAN / HITEMP数据库中选择第一个泛音带中的单个R(30)跃迁。使用两个不同的信号检索沿光路的平均CO体积浓度:直接吸收信号和波长调制吸收光谱法的二次谐波信号。当使用直接吸收信号时,测量极限约为300 ppm,并且可以通过使用二次调制谐波信号将测量极限提高到30 ppm。具有精确控制的温度和CO浓度的电加热管状气室用于校准。使用实验室预混合的C_3H_8 /空气平面火焰评估测量系统的准确性。在不同的燃料/空气当量比下对工业油焰进行了实际测量。结果表明,该系统能够快速现场测量不同火焰的一氧化碳,而水蒸气的干扰可以忽略不计。在稳定的气体火焰中,测得的CO浓度与理论计算值之间的最大相对差小于200 ppm。对于工业油火焰,可以清楚地捕获到CO浓度的振荡行为以及当量比对CO形成的影响。

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