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首页> 外文期刊>Photoacoustics >Quartz-enhanced photoacoustic spectroscopic methane sensor system using a quartz tuning fork-embedded, double-pass and off-beam configuration
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Quartz-enhanced photoacoustic spectroscopic methane sensor system using a quartz tuning fork-embedded, double-pass and off-beam configuration

机译:石英增强的光声光谱甲烷传感器系统使用石英调整叉,双通和离线配置

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Development of a methane (CH4) sensor system was reported based on a novel quartz-tuning-fork (QTF)-embedded, double-pass, off-beam quartz-enhanced photoacoustic spectroscopy (DP-OB-QEPAS). A simplified and accurate numerical model was presented to optimize the DP-OB-QEPAS spectrophone and to enhance the detection sensitivity. A compact and fiber-coupled acoustic detection module (ADM) with a volume of 3 × 2×1 cm3and a weight of 9.7 g was fabricated. A continuous-wave distributed feedback diode laser was used to target the CH4absorption line at 6046.95 cm?1. With the combination of wavelength modulation spectroscopy (WMS) and second harmonic (2f) detection technique, the CH4sensor system reveals a 1σ detection limit of 8.62 parts-per-million in volume (ppmv) for a 0.3 s averaging time with an optimized modulation depth of 0.26 cm?1. The proposed CH4sensor shows a similar or even lower level in the normalized noise equivalent absorption coefficient (NNEA) (1.8 × 10?8cm?1?W/√Hz), compared to previously reported QEPAS-based CH4sensors.
机译:报告了甲烷(CH4)传感器系统的基于新颖的石英调谐叉(QTF) - jedded,双通,离束石英型增强的光声光谱(DP-OB-QEPA)。提出了一种简化和准确的数控模型以优化DP-OB-QEPAS分光池并增强检测灵敏度。体积为3×2×1cm 3和重量为9.7g的紧凑型和光纤耦合声学检测模块(ADM)。连续波分布式反馈二极管激光器用于以6046.95cmα1靶向CH 4吸收线。通过波长调制光谱(WMS)和第二次谐波(2F)检测技术的组合,CH4Sensor系统揭示了具有优化调制深度的0.3秒平均时间(PPMV)的1σ检测限度为8.62份(PPMV) 0.26厘米?1。与先前报道的基于QEPAS的CH4sensors相比,所提出的CH4Sensor在标准化的噪声等效吸收系数(NNEA)中显示出相似或甚至较低的水平在标准化的噪声等效吸收系数(NNEA)(1.8×10?8cm?1?w /√Hz)。

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