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Development and Measurements of a Mid-Infrared Multi-Gas Sensor System for CO CO2 and CH4 Detection

机译:用于COCO2和CH4检测的中红外多气体传感器系统的开发和测量

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摘要

A multi-gas sensor system was developed that uses a single broadband light source and multiple carbon monoxide (CO), carbon dioxide (CO2) and methane (CH4) pyroelectric detectors by use of the time division multiplexing (TDM) technique. A stepper motor-based rotating system and a single-reflection spherical optical mirror were designed and adopted to realize and enhance multi-gas detection. Detailed measurements under static detection mode (without rotation) and dynamic mode (with rotation) were performed to study the performance of the sensor system for the three gas species. Effects of the motor rotating period on sensor performances were also investigated and a rotation speed of 0.4π rad/s was required to obtain a stable sensing performance, corresponding to a detection period of ~10 s to realize one round of detection. Based on an Allan deviation analysis, the 1σ detection limits under static operation are 2.96, 4.54 and 2.84 parts per million in volume (ppmv) for CO, CO2 and CH4, respectively and the 1σ detection limits under dynamic operations are 8.83, 8.69 and 10.29 ppmv for the three gas species, respectively. The reported sensor has potential applications in various fields requiring CO, CO2 and CH4 detection such as in coal mines.
机译:通过使用时分复用(TDM)技术,开发了使用单一宽带光源和多个一氧化碳(CO),二氧化碳(CO2)和甲烷(CH4)热释电探测器的多气体传感器系统。设计并采用了基于步进电机的旋转系统和单反射球面光学镜,以实现和增强对多种气体的检测。在静态检测模式(无旋转)和动态模式(有旋转)下进行了详细的测量,以研究三种气体种类的传感器系统的性能。还研究了电机旋转周期对传感器性能的影响,并且需要0.4πrad / s的转速才能获得稳定的传感性能,相当于〜10 s的检测周期才能实现一轮检测。根据Allan偏差分析,CO,CO2和CH4的静态操作下1σ检测极限分别为2.96、4.54和2.84百万分之体积(ppmv),动态操作下1σ检测极限为8.83、8.69和10.29三种气体的ppmv分别。报告的传感器在需要CO,CO2和CH4检测的各个领域(如煤矿)中都有潜在的应用。

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