化学
光声光谱学
共振(粒子物理)
生物医学中的光声成像
检出限
谐振器
微量气体
光声效应
分析化学(期刊)
管(容器)
乙炔
气体分析
吸收(声学)
悬臂梁
灵敏度(控制系统)
光谱学
体积热力学
光电子学
吸收光谱法
有限元法
声共振
光学
多变过程
波长
跟踪(心理语言学)
气体探测器
双金属
作者
Tianli Gao,Xiuxin Guo,Pengyuan Yin,Zhenfeng Gong,Guojie Wu,Linsong Zhang,Liang Mei
标识
DOI:10.1021/acs.analchem.6c01196
摘要
This study introduces a novel spiral-resonant photoacoustic cell (SR-PAC) for high-sensitivity trace gas detection. This SR-PAC consists of a cylindrical photoacoustic cell (PAC) coupled with a helical resonator tube coiled around its exterior, with a compact total volume of 1.4 cm 3 . This design ensures the compact size of the cylindrical PAC while retaining the high sensitivity characteristics of a resonant PAC. The resonance frequency of the SR-PAC was calculated theoretically and verified through finite element analysis and experiments, with the results showing high consistency. By matching the acoustic resonance of the SR-PAC with the mechanical resonance of the cantilevered microphone, dual-resonance enhancement detection is achieved, amplifying the photoacoustic (PA) signals. Using acetylene (C 2 H 2 ) as the target gas, the system demonstrated a minimum detection limit (MDL) of 3.6 ppb, corresponding to a normalized noise-equivalent absorption (NNEA) of 2.8 × 10 –9 W·cm –1 ·Hz –1/2 . These results show that the system has significant potential for real-time monitoring of ultrasensitive trace gases in confined spaces.
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