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Trace gas detection based on photoacoustic spectroscopy in 3-D printed gas cell

机译:基于光声光谱法的痕量气体检测3-D印刷气体电池

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摘要

A novel photoacoustic spectroscopy gas sensor based on a micro-resonator has been developed. The photoacoustic cell was designed and fabricated using 3-D printing and the photoacoustic cell volume was compressed significantly. This design greatly reduces the time of manufacturing the micro-resonator and the weight was lighter compared to traditional cells. Furthermore, the acoustic pressure distribution in the 3-D printed photoacoustic cell was analyzed by COMSOL Multiphysics software, which indicated that the strongest acoustic pressure occurred in the middle of the resonant cavity. The performance of the sensor was evaluated by detection of CH4 at normal atmospheric pressure used a near infrared distributed feedback laser emitted at 1653 nm. The characteristic of the photoacoustic signal under different pressures was also investigated. An Allan variance shows that the 3-D printed photoacoustic spectroscopy sensor has the detection limit of 1.44 ppmv (3 sigma) for CH4 detection at about 200 s integration time.
机译:已经开发了一种基于微谐振器的新型光声光谱气体传感器。使用3-D印刷设计和制造光声电池,显着压缩光声电池体积。这种设计极大地减少了微谐振器的制造时间,与传统电池相比,重量轻。此外,通过COMSOL多体体软件分析了3-D印刷光声电池中的声压分布,表明在谐振腔的中间发生最强的声压。通过在正常大气压下检测CH4来评估传感器的性能,使用在1653nm处发出的近红外分布式反馈激光器。还研究了不同压力下光声信号的特性。 Allan方差表明,3-D印刷光声光谱传感器的检测限为1.44ppmv(3 sigma),对于CH4检测在大约200秒的积分时间。

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