Fiber-Coupled Quartz-Enhanced Photoacoustic Spectroscopy System for Methane and Ethane Monitoring in the Near-Infrared Spectral Range

被引:30
|
作者
Menduni, Giansergio [1 ,2 ,3 ]
Sgobba, Fabrizio [1 ,2 ]
Dello Russo, Stefano [1 ,2 ]
Ranieri, Ada Cristina [1 ,2 ,4 ]
Sampaolo, Angelo [1 ,2 ]
Patimisco, Pietro [1 ,2 ]
Giglio, Marilena [1 ,2 ]
Passaro, Vittorio M. N. [3 ]
Csutak, Sebastian [5 ]
Assante, Dario [4 ]
Ranieri, Ezio [6 ]
Geoffrion, Eric [7 ]
Spagnolo, Vincenzo [1 ,2 ]
机构
[1] Univ Bari, PolySense Lab, Dipartimento Interateneo Fis, Via Amendola 173, I-70126 Bari, Italy
[2] Politecn Bari, CNR IFN, Via Amendola 173, I-70126 Bari, Italy
[3] Politecn Bari, Photon Res Grp, Dipartimento Ingn Elettr & Informaz, Via Orabona 4, I-70126 Bari, Italy
[4] Uninettuno Univ, Fac Engn, I-00186 Rome, Italy
[5] 16300 Pk Row Dr, Houston, TX 77084 USA
[6] Univ Bari, Dipartimento Biol, Via Orabona 4, I-70126 Bari, Italy
[7] Thorlabs Canada ULC, 361 Blvd Montpellier, St Laurent, PQ H4N 2G6, Canada
来源
MOLECULES | 2020年 / 25卷 / 23期
基金
欧盟地平线“2020”;
关键词
quartz enhanced photoacoustic spectroscopy; near-IR fiber combiner; methane; ethane; GAS; EMISSIONS; SENSOR;
D O I
10.3390/molecules25235607
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We report on a fiber-coupled, quartz-enhanced photoacoustic spectroscopy (QEPAS) near-IR sensor for sequential detection of methane (CH4 or C1) and ethane (C2H6 or C2) in air. With the aim of developing a lightweight, compact, low-power-consumption sensor suitable for unmanned aerial vehicles (UAVs)-empowered environmental monitoring, an all-fiber configuration was designed and realized. Two laser diodes emitting at 1653.7 nm and 1684 nm for CH4 and C2H6 detection, respectively, were fiber-combined and fiber-coupled to the collimator port of the acoustic detection module. No cross talk between methane and ethane QEPAS signal was observed, and the related peak signals were well resolved. The QEPAS sensor was calibrated using gas samples generated from certified concentrations of 1% CH4 in N-2 and 1% C2H6 in N-2. At a lock-in integration time of 100 ms, minimum detection limits of 0.76 ppm and 34 ppm for methane and ethane were achieved, respectively. The relaxation rate of CH4 in standard air has been investigated considering the effects of H2O, N-2 and O-2 molecules. No influence on the CH4 QEPAS signal is expected when the water vapor concentration level present in air varies in the range 0.6-3%.
引用
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页数:12
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