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首页> 外文期刊>Sensors and Actuators, A. Physical >Miniaturized multi-pass cell based photoacoustic gas sensor for parts-per-billion level acetylene detection
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Miniaturized multi-pass cell based photoacoustic gas sensor for parts-per-billion level acetylene detection

机译:基于小型化的多通电池基光声气体传感器,用于零件 - 每亿水平乙炔检测

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摘要

A highly sensitive photoacoustic (PA) gas sensor using a miniaturized Herriott-type multi-pass cell is reported. A cylindrical concave mirror and a cylindrical planar mirror are utilized as the two reflectors of the Herriott cell. The total length of optical path is optimized to be 0.609 m with 29 reflections. To eliminate the effect of the cell wall absorption, we employ the second-harmonic (2f) wavelength modulation spectroscopy (2f-WMS) method. Trace acetylene (C2H2) was introduced into the PA cell to investigate the performance of the sensor. Experimental results show that this gas sensor has an excellent linear characteristic and a long-term stability. Allan-Werle deviation analysis results show that the minimum detection concentration (MDC) is calculated as 12.2 ppb with a 400-s average time. Moreover, a normalized noise-equivalent absorption (NNEA) coefficient was achieved to be 3.3 x 10(-9) W. cm(-1) Hz(-1/2). (C) 2020 Elsevier B.V. All rights reserved.
机译:报道了一种高敏感的光声(PA)气体传感器,使用小型化的Heriot型多通池。 圆柱形凹面镜和圆柱形平面镜被用作Herriott细胞的两个反射器。 光路的总长度优化为0.609米,具有29个反射。 为了消除细胞壁吸收的效果,我们采用第二次谐波(2F)波长调制光谱(2F-WMS)方法。 将痕量乙炔(C2H2)引入PA电池中以研究传感器的性能。 实验结果表明,该气体传感器具有出色的线性特性和长期稳定性。 Allan-Werle偏差分析结果表明,最小检测浓度(MDC)计算为12.2ppb,平均时间为400秒。 此外,实现了归一化的噪声量度吸收(NNEA)系数为3.3×10(-9)W.cm(-1)Hz(-1/2)。 (c)2020 Elsevier B.v.保留所有权利。

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