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Beat frequency quartz-enhanced photoacoustic spectroscopy for fast and calibration-free continuous trace-gas monitoring

机译:拍频石英增强的光声光谱仪,用于快速,无标定的连续痕量气体监测

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Quartz-enhanced photoacoustic spectroscopy (QEPAS) is a sensitive gas detection technique which requires frequent calibration and has a long response time. Here we report beat frequency (BF) QEPAS that can be used for ultra-sensitive calibration-free trace-gas detection and fast spectral scan applications. The resonance frequency and Q -factor of the quartz tuning fork (QTF) as well as the trace-gas concentration can be obtained simultaneously by detecting the beat frequency signal generated when the transient response signal of the QTF is demodulated at its non-resonance frequency. Hence, BF-QEPAS avoids a calibration process and permits continuous monitoring of a targeted trace gas. Three semiconductor lasers were selected as the excitation source to verify the performance of the BF-QEPAS technique. The BF-QEPAS method is capable of measuring lower trace-gas concentration levels with shorter averaging times as compared to conventional PAS and QEPAS techniques and determines the electrical QTF parameters precisely.
机译:石英增强光声光谱法(QEPAS)是一种敏感的气体检测技术,需要频繁校准并且响应时间长。在这里,我们报告了拍频(BF)QEPAS,该拍频可用于超灵敏的无标定痕量气体检测和快速光谱扫描应用。通过检测QTF的瞬态响应信号以其非共振频率解调时产生的拍频信号,可以同时获得石英音叉(QTF)的共振频率和Q因子以及微量气体浓度。 。因此,BF-QEPAS避免了校准过程,并允许连续监测目标痕量气体。选择了三个半导体激光器作为激发源,以验证BF-QEPAS技术的性能。与传统的PAS和QEPAS技术相比,BF-QEPAS方法能够以较短的平均时间测量较低的痕量气体浓度水平,并且可以精确确定电QTF参数。

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