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Experimental and modeling study of off-beam quartz-enhanced photoacoustic detection of nitrogen monoxide (NO) using a quantum cascade laser

机译:量子级联激光束外石英增强一氧化氮(NO)光声检测的实验和建模研究

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This article presents the experimental and modeling study of quartz-enhanced photoacoustic detection of nitrogen monoxide (NO) using the off-beam configuration and a distributed-feedback (DFB) quantum cascade laser (QCL) at 5.26 μm as the excitation source. Trace gas monitoring of NO is one of the important subjects for both environmental protection and human health monitoring. Quartz-enhanced photoacoustic spectroscopy (QEPAS) with on-beam configuration is mostly adopted for gas detection. In comparison, the off-beam approach has not only comparative detection sensitivity but also significant advantage of simpler installation and optical alignment. We optimized the sensor performance by adjusting the horizontal and vertical distances between the micro-resonator (mR) and the QTF prongs. Pressure and humidity are two important factors affecting the photoacoustic signal. The effects of both parameters on the NO concentration determination were investigated.
机译:本文介绍了使用离束配置和5.26μm的分布式反馈(DFB)量子级联激光器(QCL)作为激发源对石英增强一氧化氮(NO)进行光声检测的实验和建模研究。 NO的痕量气体监测是环境保护和人类健康监测的重要课题之一。气体检测主要采用具有光束配置的石英增强光声光谱法(QEPAS)。相比之下,近光束方法不仅具有相对的检测灵敏度,而且具有安装和光学对准更简单的显着优势。我们通过调整微谐振器(mR)与QTF插脚之间的水平和垂直距离来优化传感器性能。压力和湿度是影响光声信号的两个重要因素。研究了这两个参数对NO浓度测定的影响。

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