Development of a Rapid Measurement Method for Analysis of the NOx Conversion Process Based on Quantum Cascade Laser Absorption Spectroscopy

量子级联激光器 氮氧化物 吸收光谱法 级联 光谱学 大气压力 吸收(声学) 激光器 红外光谱学 化学 谱线 分析化学(期刊) 干扰(通信) 材料科学 光学 物理 燃烧 气象学 物理化学 电信 环境化学 频道(广播) 有机化学 量子力学 色谱法 计算机科学 天文
作者
Xi Yang,Zhirong Zhang,Shuang Yang,Pengshuai Sun,Bian Wu,Hua Xia,Runqing Yu
出处
期刊:Sensors [Multidisciplinary Digital Publishing Institute]
卷期号:23 (8): 3885-3885 被引量:1
标识
DOI:10.3390/s23083885
摘要

In this study, a method for double-beam quantum cascade laser absorption spectroscopy (DB-QCLAS) was developed. Two mid-infrared distributed feedback quantum cascade laser beams were coupled in an optical cavity for the monitoring of NO and NO2 (NO at 5.26 μm; NO2 at 6.13 μm). Appropriate lines in the absorption spectra were selected, and the influence of common gases in the atmosphere, such as H2O and CO2, was avoided. By analyzing the spectral lines under different pressure conditions, the appropriate measurement pressure of 111 mbar was selected. Under this pressure, the interference between adjacent spectral lines could be effectively distinguished. The experimental results show that the standard deviations for NO and NO2 were 1.57 ppm and 2.67 ppm, respectively. Moreover, in order to improve the feasibility of this technology for detecting chemical reactions between NO and O2, the standard gases of NO and O2 were used to fill the cavity. A chemical reaction instantaneously began, and the concentrations of the two gases were immediately changed. Through this experiment, we hope to develop new ideas for the accurate and rapid analysis of the process of NOx conversion and to lay a foundation for a deeper understanding of the chemical changes in atmospheric environments.

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