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Cantilever enhanced based photoacoustic detection of SF6 decomposition component SO2 using UV LED

Tunan Chen (Institute of Electrical Engineering Chinese Academy of Sciences, Beijing, China, and University of Chinese Academy of Sciences, Beijing, China)
Fengxiang Ma (Electrical Power Research Institute, Anhui Electrical Power Company, Ltd, State Grid, Anhui, China)
Yue Zhao (Electrical Power Research Institute, Anhui Electrical Power Company, Ltd, State Grid, Anhui, China)
Zhenghai Liao (Institute of Electrical Engineering Chinese Academy of Sciences, Beijing, China, and University of Chinese Academy of Sciences, Beijing, China)
Zongjia Qiu (Institute of Electrical Engineering Chinese Academy of Sciences, Beijing, China)
Guoqiang Zhang (Institute of Electrical Engineering Chinese Academy of Sciences, Beijing, China and University of Chinese Academy of Sciences, Beijing, China)

Sensor Review

ISSN: 0260-2288

Article publication date: 7 December 2022

Issue publication date: 13 January 2022

443

Abstract

Purpose

This paper aims to establish a photoacoustic detection system for SO2 using UV-LED and testify its feasibility for sensitive measurement. The work in this paper can avoid potential crossover interference in infrared (IR) range and also balance the capability and cost of feasible excitation for photoacoustic detection system.

Design/methodology/approach

In this experimental work, a cantilever-enhanced–based photoacoustic SO2 detection system using an ultraviolet (UV) LED light source with a light power of 4 mW as the excitation was established.

Findings

A feasible photoacoustic detection system for SO2 using UV-LED was established. Experimental results demonstrate that the detection limit of the system can reach the level of 0.667 ppm, which can serve as a reference for the application of PAS in insulation fault diagnosis.

Originality/value

This work investigated the potential of using ultraviolet photoacoustic spectroscopy to detect trace SO2, which provided an ideal replacement of infrared-laser-based detection system. In this paper, a photoacoustic detection system using LED with a low light power was established. Low light power requirement can expand the options of light sources accordingly. In this paper, the absorption characteristics of SO2 in the presented detection system and ultraviolet range were studied. And the detection limit of the presented system was given. Both of which can provide reference to SO2 detection in ambient SF6.

Keywords

Acknowledgements

Science and Technology Project of State Grid Corporation of China.

521205190014.

Citation

Chen, T., Ma, F., Zhao, Y., Liao, Z., Qiu, Z. and Zhang, G. (2022), "Cantilever enhanced based photoacoustic detection of SF6 decomposition component SO2 using UV LED", Sensor Review, Vol. 42 No. 1, pp. 70-75. https://doi.org/10.1108/SR-12-2020-0292

Publisher

:

Emerald Publishing Limited

Copyright © 2022, Emerald Publishing Limited

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