Wang Xuan, Tian Linbo, Xu Yufu, Wu Jiacheng, Guo Xiangyu, Chen Ke, Sun Liqun
Department of Precision Instruments, State Key Laboratory of Precision Measurement Technology and Instruments, Tsinghua University, Beijing 100084, China.
School of Optoelectronic Engineering and Instrumentation Science, Dalian University of Technology, Dalian, Liaoning 116024, China.
Anal Chem. 2024 Oct 22;96(42):16543-16550. doi: 10.1021/acs.analchem.4c01527. Epub 2024 Oct 8.
To overcome the light power fluctuation and frequency mismatch in photoacoustic spectroscopy (PAS), we proposed a self-corrected 1-only resonant cell-based PAS (1-RCPAS) gas analyzer. Based on the theoretical analysis of the 1 signal, a signal processing algorithm considering laser power-current nonlinearity is proposed. The 1-only algorithm is well-tailored for the resonant systems, requiring no time-division multiplexing. The algorithm is further improved to extend the dynamic range. The T-type resonant cell incorporating a graphene sticker is utilized for effectively amplifying the acoustic signals from both the gas and solid to achieve normalization. No optical path alignment is needed. For the low resonance frequency, a digital orthogonal-vector lock-in amplifier is used, further simplifying the system setup. The gas analyzer is used to measure methane (CH) with the near-infrared absorption peak at 1651 nm. The experiments demonstrated immunity to fiber coupling loss, laser power drift over time, and frequency mismatch caused by property differences between air and standard gases. The value in the concentration calibration reaches 0.99995, and the minimum detection limit given by the Allan variance reaches 3.5 ppb at an average time of 105 s.
为克服光声光谱法(PAS)中的光功率波动和频率失配问题,我们提出了一种基于单谐振腔自校正的光声光谱气体分析仪(1-RCPAS)。基于对1信号的理论分析,提出了一种考虑激光功率-电流非线性的信号处理算法。单1算法针对谐振系统进行了优化,无需时分复用。该算法进一步改进以扩展动态范围。采用带有石墨烯贴纸的T型谐振腔,有效放大气体和固体产生的声信号以实现归一化。无需光路对准。对于低谐振频率,使用数字正交矢量锁相放大器,进一步简化了系统设置。该气体分析仪用于测量甲烷(CH),其近红外吸收峰位于1651nm。实验证明该分析仪对光纤耦合损耗、激光功率随时间的漂移以及空气与标准气体特性差异引起的频率失配具有免疫能力。浓度校准中的 值达到0.99995,在平均时间为105s时,由阿伦方差给出的最小检测限达到3.5ppb。