Research on long-range hydrogen gas measurement for development of Raman lidar sensors

被引:2
|
作者
Jeon, Kil Song [1 ]
Sim, Jaeung [1 ]
Cho, Won Bo [2 ]
Park, Byoungjik [1 ]
机构
[1] Korea Inst Civil Engn & Bldg Technol KICT, Dept Fire Safety Res, 182 Beon Gil, Hwaseong Si 18544, Gyeonggi Do, South Korea
[2] Vimtech Co Ltd, 201 Songpa Daero, Seoul 05854, South Korea
关键词
Raman lidar; Hydrogen gas; Remote detection; Real-time measurement; GRAPHENE OXIDE; TEMPERATURE; SPECTROSCOPY; PHASE;
D O I
10.1016/j.ijhydene.2024.04.126
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This study explores the analysis of hydrogen gas from a distance using a Raman lidar spectrometer. Hydrogen gas is a flammable gas with risk of explosion, making accurate and quick detection crucial. In this study, we evaluated the performance of a Raman lidar spectrometer for detecting hydrogen gas from a distance. Experiments were conducted at distances of 1, 3, 5, 10, 20, and 30 m. To assess the long-range measurement capability at various hydrogen concentrations, we analyzed the accuracy and sensitivity. The findings suggest that the sensor can perform quick and accurate detection even at low concentrations, maintaining high sensitivity at a distance. Thus, Raman lidar spectrometers are promising for real-time remote detection of hydrogen gas. This study provides guidance for the effective utilization of Raman lidar sensors for hydrogen gas detection and monitoring in diverse application areas such as industrial fire prevention, safety management, environmental monitoring, and energy production.
引用
收藏
页码:119 / 126
页数:8
相关论文
共 50 条
  • [41] Research on hydrogen dispersion by Raman measurement
    Segawa, Yuta
    Inoue, Masahiro
    Nakamoto, Akihiro
    Umehara, Satoshi
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44 (17) : 8981 - 8987
  • [42] CONDENSATION OF CLASSICAL GAS WITH LONG-RANGE ATTRACTION
    VANKAMPEN, NG
    PHYSICAL REVIEW A-GENERAL PHYSICS, 1964, 135 (2A): : A362 - &
  • [43] Lidar Measurement of the Power of Raman Light Scattering by Hydrogen Molecules
    Privalov, V. E.
    Shemanin, V. G.
    MEASUREMENT TECHNIQUES, 2015, 57 (12) : 1356 - 1360
  • [44] Lidar Measurement of the Power of Raman Light Scattering by Hydrogen Molecules
    V. E. Privalov
    V. G. Shemanin
    Measurement Techniques, 2015, 57 : 1356 - 1360
  • [45] Lidar Measurement of the Raman Differential Cross Section by Hydrogen Molecules
    V. E. Privalov
    V. G. Shemanin
    Optical Memory and Neural Networks, 2023, 32 : 34 - 38
  • [46] Lidar Measurement of the Raman Differential Cross Section by Hydrogen Molecules
    Privalov, V. E.
    Shemanin, V. G.
    OPTICAL MEMORY AND NEURAL NETWORKS, 2023, 32 (01) : 34 - 38
  • [47] Remote sensing of hydrogen gas concentration distribution by Raman lidar
    Asahi, Ippei
    Sugimoto, Sachiyo
    Ninomiya, Hideki
    Fukuchi, Tetsuo
    Shiina, Tatsuo
    LIDAR REMOTE SENSING FOR ENVIRONMENTAL MONITORING XIII, 2012, 8526
  • [48] Aerosol content survey by mini N2-Raman lidar: Application to local and long-range transport aerosols
    Royer, Philippe
    Chazette, Patrick
    Lardier, Melody
    Sauvage, Laurent
    ATMOSPHERIC ENVIRONMENT, 2011, 45 (39) : 7487 - 7495
  • [49] Long-range hybrid double-bus network with point and distributed Brillouin sensors using Raman amplification
    Fernandez-Vallejo, M.
    Olier, D.
    Zornoza, A.
    Perez-Herrera, R. A.
    Diaz, S.
    Elosua, C.
    Bariain, C.
    Loayssa, Alayn
    Lopez-Amo, M.
    FOURTH EUROPEAN WORKSHOP ON OPTICAL FIBRE SENSORS, 2010, 7653
  • [50] CONTRIBUTIONS OF VACUUM METHODS TO THE EVOLUTION OF LONG-RANGE RESEARCH-AND-DEVELOPMENT IN INDUSTRY
    VANOOIJ, WJ
    VACUUM, 1987, 37 (1-2) : 189 - 189