DocumentCode :
2210321
Title :
Compact Quantum Cascade Laser Instrument for Rapid, High Sensitivity Measurements of Trace Gases in Air
Author :
McManus, J. Barry ; Shorter, J.H. ; Nelson, David D. ; Zahniser, Mark S.
Author_Institution :
Aerodyne Res. Inc., Billerica
fYear :
2007
fDate :
28-31 Oct. 2007
Firstpage :
1341
Lastpage :
1344
Abstract :
We have developed a compact instrument for sensitive, rapid and continuous measurement of trace gases in air, with the focus here on ammonia. This instrument takes advantage of recent technology in quantum cascade (QC) lasers and infrared detectors, which allows high sensitivity to ammonia, 0.2 ppb (0.2times10-9) of NH3 in air in 1 s without cryogenic liquids. One may substitute a QC laser operating at a different wavelength to measure other gases. The instrument operates continuously, requiring little operator attention, and web-based remote access is provided for instrument control, calibration and data retrieval. The instrument design includes a thermoelectrically (TE) cooled pulsed QC laser operating at 967 cm-1, a low volume (0.5 l) multi-pass cell offering 76 meter absorption path length and a TE cooled detector. Integrated software for laser control and data analysis using direct absorption provides quantitative trace gas measurements without calibration gases. The instrument may be applied to field measurements of gases of environmental concern.
Keywords :
computerised instrumentation; gas sensors; infrared detectors; infrared spectroscopy; measurement by laser beam; quantum cascade lasers; spectrochemical analysis; spectrometers; NH3; Web-based remote access; ammonia; compact quantum cascade laser instrument; high sensitivity gas measurement; infrared detector; thermoelectrically cooled pulsed laser; trace gas; Absorption; Calibration; Cryogenics; Gas lasers; Gases; Infrared detectors; Instruments; Liquids; Quantum cascade lasers; Tellurium;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Sensors, 2007 IEEE
Conference_Location :
Atlanta, GA
ISSN :
1930-0395
Print_ISBN :
978-1-4244-1261-7
Electronic_ISBN :
1930-0395
Type :
conf
DOI :
10.1109/ICSENS.2007.4388659
Filename :
4388659
Link To Document :
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