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Phase-sensitive method for background-compensated photoacoustic detection of NO2 using high-power LEDs

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Title: Phase-sensitive method for background-compensated photoacoustic detection of NO2 using high-power LEDs
Author: Saarela, Jaakko; Sorvajärvi, Tapio; Laurila, Toni; Toivonen, Juha
Abstract: A photoacoustic (PA) sensor has been developed for the detection of nitrogen dioxide (NO2). Ten amplitude-modulated high-power light emitting diodes (LEDs), emitting a total optical power of 9W at 453 nm, are used to excite the photoacoustic signal in NO2. The LEDs are attached to the circumference of a cylindrical PA cell. The induced longitudinal acoustics waves are detected using two electromechanical film stacks, located at the ends of the cell. Background signal cancelation is achieved by using phase-sensitive detection of the difference signal of the two pressure transducers. The phase-sensitive approach allows for improved dynamic range and sensitivity. A detection limit of 10 parts per billion by volume was achieved for flowing NO2 gas sample in an acquisition time of 2.1 s, corresponding to a minimum detectable absorption coefficient of 1.6 x 10−7 cm−1Hz−1/2. The developed sensor has potential for compact, light-weight, and low-cost measurement of NO2.
Issue date: 2011
ISSN: 1094-4087
Citation: Saarela, Jaakko; Sorvajärvi, Tapio; Laurila, Toni; Toivonen, Juha 2011. Phase-sensitive method for background-compensated photoacoustic detection of NO2 using high-power LEDs . Optics Express vol. 19, num. S4, OSA . A725-A732.
DOI: http://dx.doi.org/10.1364/OE.19.00A725
Peer review status: Peer-reviewed
Description: Copyright 2011 The Optical Society
Belongs to: Optics Express
URN: http://URN.fi/URN:NBN:fi:tty-2011121214928
Publication type: Artikkeli - Article
Language: en
Pages: A725-A732
University: Tampereen teknillinen yliopisto - Tampere University of Technology
Faculty: Luonnontieteiden ja ympäristötekniikan tiedekunta – Faculty of Science and Environmental Engineering
Department: Fysiikan laitos – Department of Physics
Copyright: This publication is copyrighted. You may download, display and print it for Your own personal use. Commercial use is prohibited.

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