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首页> 外文期刊>International Journal of Technology >Applicability Of TDLAS Gas Detection Technique To Combustion Control and Emission Monitoring Under Harsh Environment
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Applicability Of TDLAS Gas Detection Technique To Combustion Control and Emission Monitoring Under Harsh Environment

机译:TDLAS气体检测技术在恶劣环境下燃烧控制与排放监测中的适用性

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摘要

Tunable diode laser absorption spectroscopy (TDLAS) has been well-known as an established detection technique for trace gas molecules and analytical instruments based on this technique are already commercially available. Practical applications to combustion control and emission monitoring for incinerators and industrial furnaces often involve considerations about the technique’s capability to cope with such harsh measuring environmental conditions as high temperature, high pressure and high humidity. In this study, we theoretically describe the laser modulation spectroscopy technique and discuss practical applicability of the technique through a comparison between laboratory experimental results and theoretical calculations by the use of a molecular spectroscopic database, stressing on hydrogen chloride (HCl) measurement for exhaust gas of incinerators. Under experimental condition of elevated temperature, observed absorption line strength deduced by the second harmonic absorption spectrum of HCl in the first overtone region shows good agreement with theoretical prediction. This result indicates that variation of absorption signal due to temperature variation of flue gas can be compensated if gas temperature is simultaneously obtained.
机译:可调二极管激光吸收光谱法(TDLAS)作为一种建立的痕量气体分子检测技术而广为人知,基于该技术的分析仪器已经可以在市场上买到。在焚化炉和工业炉的燃烧控制和排放监控的实际应用中,通常会考虑该技术应对高温,高压和高湿度等恶劣测量环境条件的能力。在这项研究中,我们在理论上描述了激光调制光谱技术,并通过比较实验室实验结果和使用分子光谱数据库进行的理论计算,并讨论了该技术的实际适用性,重点是对氯化氢(HCl)废气的测量焚化炉。在高温实验条件下,观察到的由氢在第一泛音区的二次谐波吸收谱推断的吸收谱线强度与理论预测吻合良好。该结果表明,如果同时获得气体温度,则可以补偿由于烟道气温度变化引起的吸收信号的变化。

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