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用于泄漏检测的高灵敏度光声微腔气体传感器。

Highly Sensitive Photoacoustic Microcavity Gas Sensor for Leak Detection.

作者信息

Chen Ke, Chen Yewei, Zhang Bo, Mei Liang, Guo Min, Deng Hong, Liu Shuai, Ma Fengxiang, Gong Zhenfeng, Yu Qingxu

机构信息

School of Optoelectronic Engineering and Instrumentation Science, Dalian University of Technology, Dalian 116024, China.

Electric Power Research Institute of State Grid Anhui Electric Power Co., Ltd., Hefei 230601, China.

出版信息

Sensors (Basel). 2020 Feb 20;20(4):1164. doi: 10.3390/s20041164.

Abstract

A highly sensitive photoacoustic (PA) microcavity gas sensor for leak detection is proposed. The miniature and low-cost gas sensor mainly consisted of a micro-electro-mechanical system (MEMS) microphone and a stainless-steel capillary with two small holes opened on the side wall. Different from traditional PA sensors, the designed low-power sensor had no gas valves and pumps. Gas could diffuse into the stainless-steel PA microcavity from two holes. The volume of the cavity in the sensor was only 7.9 μL. We use a 1650.96 nm distributed feedback (DFB) laser and the second-harmonic wavelength modulation spectroscopy (2-WMS) method to measure PA signals. The measurement result of diffused methane (CH) gas shows a response time of 5.8 s and a recovery time of 5.2 s. The detection limit was achieved at 1.7 ppm with a 1-s lock-in integral time. In addition, the calculated normalized noise equivalent absorption (NNEA) coefficient was 1.2 × 10 W·cm·Hz. The designed PA microcavity sensor can be used for the early warning of gas leakage.

摘要

提出了一种用于泄漏检测的高灵敏度光声(PA)微腔气体传感器。该微型低成本气体传感器主要由一个微机电系统(MEMS)麦克风和一个侧壁上开有两个小孔的不锈钢毛细管组成。与传统的PA传感器不同,所设计的低功耗传感器没有气阀和泵。气体可以从两个孔扩散到不锈钢PA微腔中。传感器中的腔体积仅为7.9μL。我们使用1650.96nm分布反馈(DFB)激光器和二次谐波波长调制光谱(2-WMS)方法来测量PA信号。扩散甲烷(CH)气体的测量结果显示响应时间为5.8s,恢复时间为5.2s。在1s锁定积分时间下,检测限达到1.7ppm。此外,计算得到的归一化噪声等效吸收(NNEA)系数为1.2×10W·cm·Hz。所设计的PA微腔传感器可用于气体泄漏的早期预警。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e403/7070655/a40e8d982799/sensors-20-01164-g001.jpg

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