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Detection of nitrogen dioxide by CW cavity-enhanced spectroscopy

机译:连续波腔增强光谱法检测二氧化氮

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In the paper, an accurate and sensitive system was used to monitor the ambient atmospheric NO_2 concentrations. This system utilizes cavity attenuated phase shift spectroscopy(CAPS), a technology related to cavity ring down spectroscopy(CRDS). Advantages of the CAPS system include such as: (1) cheap and easy to control the light source, (2) high accuracy, and (3) low detection limit. The performance of the CAPS system was evaluated by measuring of the stability and response of the system. The minima (~0.08 ppb NO_2) in the Allan plots show the optimum average time(~100s) for optimum detection performance of the CAPS system. Over a 20-day-long period of the ambient atmospheric NO_2 concentrations monitoring, a comparison of the CAPS system with an extremely accurate and precise chemiluminescence-based NOx analyzer showed that the CAPS system was able to reliably and quantitatively measure both large and small fluctuations in the ambient nitrogen dioxide concentration. The experimental results show that the measuring instrument results correlation is 0.95.
机译:在本文中,使用了一个精确而灵敏的系统来监测周围大气中NO_2的浓度。该系统利用腔衰减相移谱(CAPS),这是一种与腔衰荡光谱(CRDS)相关的技术。 CAPS系统的优点包括:(1)价格便宜且易于控制的光源;(2)精度高;(3)检测限低。通过测量系统的稳定性和响应来评估CAPS系统的性能。艾伦图中的最小值(〜0.08 ppb NO_2)显示了CAPS系统最佳检测性能的最佳平均时间(〜100s)。在为期20天的环境大气NO_2浓度监测期间,CAPS系统与基于化学发光的极其精确的NOx分析仪的比较表明,CAPS系统能够可靠且定量地测量大小波动在环境中的二氧化氮浓度。实验结果表明,测量仪器结果的相关度为0.95。

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