Sun Xiaorong, Sun Haiyue, He Ying, Qiao Shunda, Ma Yufei
National Key Laboratory of Laser Spatial Information, Harbin Institute of Technology, Harbin 150001, China.
Zhengzhou Research Institute, Harbin Institute of Technology, Zhengzhou 450008, China.
Anal Chem. 2025 May 27;97(20):10886-10892. doi: 10.1021/acs.analchem.5c01773. Epub 2025 May 14.
In this paper, we present an ultrahighly sensitive methane (CH) sensor based on tunable diode laser absorption spectroscopy (TDLAS), utilizing an 80-m optical path length (OPL) multipass cell (MPC) with 15 independent circles pattern. The designed MPC achieved an actual OPL of 81.58 m within a compact volume of 361 cm, resulting in an exceptional ratio of optical path length to volume (RLV) of 22.6 cm. Wavelength modulation spectroscopy (WMS) was employed to minimize background noise and enhance detection performance. The CH-TDLAS sensor demonstrated excellent linear response to CH concentrations. The minimum detection limit (MDL) of the sensor was determined to be 13.46 ppb. Further analysis using Allan deviation revealed that the MDL improved to 1.36 ppb at an average time of 400 s, highlighting the sensor's exceptional long-term stability and ultrahigh sensitivity. Finally, to further validate the sensor's performance, an experiment simulating laboratory CH leakage was conducted. The results demonstrated that the CH-TDLAS sensor exhibits ultrahigh sensitivity, effectively detecting and tracking changes in CH concentration in real time.
在本文中,我们展示了一种基于可调谐二极管激光吸收光谱(TDLAS)的超高灵敏度甲烷(CH)传感器,它采用了具有15个独立圆形图案的80米光程长度(OPL)多程池(MPC)。所设计的多程池在361立方厘米的紧凑体积内实现了81.58米的实际光程长度,从而得到了22.6厘米的出色光程长度与体积比(RLV)。采用波长调制光谱(WMS)来最小化背景噪声并提高检测性能。CH - TDLAS传感器对CH浓度表现出出色的线性响应。该传感器的最低检测限(MDL)被确定为13.46 ppb。使用阿伦偏差的进一步分析表明,在平均时间为400秒时,最低检测限提高到了1.36 ppb,突出了该传感器卓越的长期稳定性和超高灵敏度。最后,为了进一步验证该传感器的性能,进行了模拟实验室CH泄漏的实验。结果表明,CH - TDLAS传感器具有超高灵敏度,能够实时有效地检测和跟踪CH浓度的变化。