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Hydrogen Sulfide Detection in the Midinfrared Using a 3D-Printed Resonant Gas Cell

机译:使用3D印刷的共振煤气电池中小型硫化氢检测中的硫化氢检测

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A fast and reliable photoacoustic (PA) sensor for trace gas detection is reported. The sensor is based on a 3D-printed resonant cell in combination with a continuous wave mode-hop-free external cavity quantum cascade laser to rapidly acquire gas absorption data in the midinfrared range. The cell is designed so as to minimize the window PA background at a selected acoustic resonance. The goal is a resonant PA cell capable of detecting the traces of gases using wavelength modulation of the laser source and second harmonic detection. The versatility and enhancement of the limit of detection at sub-ppm levels are investigated by monitoring specific lines of hydrogen sulfide (H2S). The noise-equivalent absorption normalized to laser-beam power and detection bandwidth is 1.07×10-8?W?cm-1?Hz-1/2 for H2S targeting the absorption line at 1247.2?cm?1. These properties make the sensor suitable for various practical sensors for water quality applications.
机译:报道了用于痕量气体检测的快速可靠的光声(PA)传感器。该传感器基于3D打印的谐振电池,与连续波模式无远的外腔量子级联激光器组合在一起,以便在中小型范围内快速获取气体吸收数据。设计该电池以最小化所选择的声学谐振的窗口PA背景。该目标是谐振PA电池,其能够使用激光源的波长调制和第二谐波检测来检测气体痕迹。通过监测特定硫化氢(H 2 S)来研究亚pPM水平下检测极限的多功能性和增强。用于激光束功率和检测带宽的噪声等效吸收是1.07×10-8?W?CM-1?HZ-1/2,用于靶向在1247.2℃的吸收管线α1。这些性能使传感器适用于各种实用传感器,用于水质应用。

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