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A Trace Carbon Monoxide Sensor Based on Differential Absorption Spectroscopy Using Mid-Infrared Quantum Cascade Laser

机译:差示吸收光谱的中红外量子级联激光痕量一氧化碳传感器

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Carbon monoxide (CO), as a dangerous emission gas, is easy to accumulate in the complex underground environment and poses a serious threat to the safety of miners. In this paper, a sensor using a quantum cascade laser with an excitation wavelength of 4.65 μm as the light source, and a compact multiple reflection cell with a light path length of 12 m is introduced to detect trace CO gas. The sensor adopts the long optical path differential absorption spectroscopy technique (LOP-DAST) and obtains minimum detection limit (MDL) of 108 ppbv by comparing the residual difference between the measured spectrum and the Voigt theoretical spectrum. As a comparison, the MDL of the proposed sensor was also estimated by Allan deviation; the minimum value of 61 ppbv is achieved while integration time is 40 s. The stability of the sensor can reach 2.1 × 10 ?3 during the 2 h experimental test and stability of 1.7 × 10 ?2 can still be achieved in a longer 12 h experimental test.
机译:一氧化碳(CO)作为危险的排放气体,很容易在复杂的地下环境中积聚,严重威胁着矿工的安全。在本文中,引入了一种传感器,该传感器使用激发波长为4.65μm的量子级联激光器作为光源,并使用光程长度为12 m的紧凑型多重反射池来检测痕量CO气体。该传感器采用长光程差分吸收光谱技术(LOP-DAST),并通过比较测得的光谱和Voigt理论光谱之间的残留差异,获得108 ppbv的最小检测限(MDL)。作为比较,建议传感器的MDL也由Allan偏差估算;积分时间为40 s时,最小值为61 ppbv。在2小时的实验测试中,传感器的稳定性可以达到2.1×10?3,而在更长的12小时的实验测试中仍可以达到1.7×10?2的稳定性。

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