Journal of Applied Optics, Volume. 46, Issue 3, 589(2025)
Design of spectroscopy-based detector for SO2 concentration in SF6 decomposition products
[1] CUI Fangxiao, ZHAO Yue, MA Fengxiang et al. Optimi-zation of FTIR passive remote sensing signal-to-noise ratio and its application in SF6 leak detection in transform substation[J]. Spectroscopy and Spectral Analysis, 41, 1436-1440(2021).
[2] CHEN Xiuzhen, GUO Wei, GAO Fanfu et al. Analysis of SF6 electrical equipment discharge defects found based on gas decomposition product detection technology[J]. High Voltage Apparatus, 55, 87-92(2019).
[3] MAHDI A, ABDUL-MALEK Z, ARSHAD R. SF6 decomposed component analysis for partial discharge diagnosis in GIS: a review[J]. IEEE Access, 27270-27288(2022).
[4] DOU Xiaojing, YE Rixin, FU Jihua et al. Research status of SF6 gas decomposition product detection technology and its application[J]. Power Grid and Clean Energy, 35, 24-31(2019).
[5] DONG M, ZHANG C X, REN M et al. Electrochemical and infrared absorption spectroscopy detection of SF6 decomposition products[J]. Sensors, 17, 2627(2017).
[6] LIU Haibo, YANG Yuxin, ZHANG Ying et al. On site SF6 gas comprehensive detection technology based on infrared and ultraviolet spectroscopy[J]. Industrial Safety and Environmental Protection, 45, 67-74(2019).
[7] CHEN Y T, ZHANG S L, YAO Q. Research and development of NDIR sensor and its application in on-line detection of CF4 gas[J]. Journal of Physics: Conference Series, 1634, 012109(2020).
[8] MA Fengxiang, ZHAO Yue, WANG Nan et al. High-sensitivity detection technology of SF6 decomposition product H2S based on multi-pass photoacoustic cell[J]. Acta Photonica Sinica, 52, 258-267(2023).
[9] LI Jinyi, FAN Hongqing, YU Ziwei et al. Indoor CO2 telemetering of non cooperative target TDLAS[J]. Journal of Instrumentation, 41, 229-236(2020).
[10] XU Yeming, PANG Shufeng, ZHANG Yunhong. Detection of SO2 by the compact-FTIR spectrometer[J]. Spectroscopy and Spectral Analysis, 53-54(2020).
[11] LIU Haibo, YANG Yuxin, ZHANG Ying et al. Quantita-tive analysis of SF6 decomposition products SO2 and H2S by UV differential absorption spectroscopy[J]. Industrial Safety and Environmental Protection, 45, 21-27(2019).
[12] YANG Yuling, GUO Xinliang, CUI Zhaolun et al. Determination of H2S in SF6 decomposition products by ultraviolet absorption method[J]. High Voltage Technolo-gy, 44, 2573-2579(2018).
[13] ZHANG Y G, WANG Y D, LIU Y J et al. Optical H2S and SO2 sensor based on chemical conversion and partition differential optical absorption spectroscopy[J]. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 210, 120-125(2019).
[14] ZENG Yingjie, ZHI Yuliang, FAN Xianguang et al. Design and evaluation of integrated tip-enhanced Raman spectrometer[J]. Chinese Journal of Analytical Chemical, 50, 39-46(2022).
[15] CUI Z, ZHANG X, CHENG Z et al. Quantitative analysis of SO2, H2S and CS2 mixed gases based on ultraviolet differential absorption spectrometry[J]. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 215, 187-195(2019).
[16] ZHANG X X, ZHANG Y, TANG J et al. Optical technology for detecting the decomposition products of SF6: a review[J]. Optical Engineering, 57, 110901(2018).
[17] MA Yong, XIAO Hanyan, DING Ran et al. Quantitative detection of SO2, H2S and CS2 gas mixture based on UV absorption spectrometry and least squares algorithm[J]. High Voltage Apparatus, 57, 157-165(2021).
[18] ZHOU Hong, XIAO Song, ZHANG Xiaoxing et al. Quantitative determination of trace SO2 based on ultraviolet differential absorption spectroscopy[J]. Chinese Journal of Electrical Engineering, 37, 5812-5820(2017).
[19] CUI Z L, ZHANG X X, CHEN D C et al. Real-time measurement of SO2, H2S, and CS2 mixed gases using ultraviolet spectroscopy and a least squares algorithm[J]. Applied Spectroscopy, 75, 265-273(2021).
Get Citation
Copy Citation Text
Wei LIU, Yifan MAO, Sijia HUO, Shuai YANG. Design of spectroscopy-based detector for SO2 concentration in SF6 decomposition products[J]. Journal of Applied Optics, 2025, 46(3): 589
Category:
Received: Mar. 20, 2024
Accepted: --
Published Online: May. 28, 2025
The Author Email: Wei LIU (liuwei@xaut.edu.cn)