Optics and Precision Engineering, Volume. 26, Issue 8, 1925(2018)
Application of laser absorption spectroscopy for identification gases in industrial production processes and early safety warning
[1] [1] XU S Q, XU X M. The determination of mercury with a catalytic procedure [J]. The Administration and Technique of Environmental Monitoring, 1997, 9(1): 46-47. (in Chinese)
[2] [2] YU Q K, ZHU Y L. The research and application trends for determination of chemical oxygen demand by means of electrochemical process [J]. Environmental Science and Management, 2010, 35(9): 116-118. (in Chinese)
[3] [3] SHI X J. The application of lectrochemical gas sensor in the flue gas monitoring [J]. China Instrumentation, 2009, 6: 90-92.
[4] [4] WANG W C, LUAN M S, YU T Y. Instrumentation for methane concentration detecting based on NDIR and the analysis of disturbances [J]. Infrared Technology, 2009, 8: 458-460. (in Chinese)
[5] [5] SI B. How to choose the right gas detection system [J]. China Instrumentation, 2005, 11: 30-35. (in Chinese)
[6] [6] REN X R, WU J. The advances in measurement of atmospheric oh radical using laser induced fluorescence technique [J]. Progress in Environmental Science, 1999, 7(6): 13-20. (in Chinese)
[7] [7] ZHANG Z R, YU R H, ZHANG S, et al.. Software design based on labview for online monitoring oxygen concentration system [J]. Journal of Atmospheric and Environmental Optics, 2008, 3(6): 454-460. (in Chinese)
[8] [8] ZHANG Z R, DONG F Z, WANG Y, et al.. On-line monitoring of industrial flue gases using tunable diode laser with a digital-control module[J]. SPIE,2010, 7853: 785313.
[9] [9] ZHANG Z R, DONG F ZH, WU B, et al.. In-situ measurement of HF gas in industrial situation based on TDLAS technology [J]. Journal of Optoelectronics Laser, 2011, 22(11): 1691-1694. (in Chinese)
[10] [10] XIA H, WU B, ZHANG ZH R, et al.. Stability study on high sensitive CO monitoring in near-infrared [J]. Acta Physica Sinica, 2013, 62(21): 214208. (in Chinese)
[11] [11] XIA H, DONG F Z, WU B, et al.. Sensitive absorption measurements of hydrogen sulfide at 1.578 μm using wavelength modulation spectroscopy[J]. Chinese Physics B, 2015, 24(3): 034204.
[12] [12] ZHANG Z R, PANG T, YANG Y, et al.. Development of a tunable diode laser absorption sensor for online monitoring of industrial gas total emissions based on optical scintillation cross-correlation technique[J]. Optics Express, 2016, 24(10): A943-A955.
[13] [13] SUN P S, ZHANG Z R, LI Z, et al.. A study of two dimensional tomography reconstruction of temperature and gas concentration in a combustion field using TDLAS[J]. Applied Sciences, 2017, 7(10): 990.
[14] [14] XIA H, DONG F ZH, HAN L, et al.. The study of atmospheric carbon isotope with laser absorption spectroscopy at the mid-infrared wavelength [J]. Spectroscopy and Spectral Analysis, 2017, 37(11): 3365-3369. (in Chinese)
[16] [16] ZHANG Z R, XIA H, DONG F Z, et al.. Simultaneous detection of multiple gas concentrations with multi-frequency wavelength modulation spectroscopy [J]. Europhysics Letters, 2013, 104(4): 44002.
[17] [17] REUD J, LABRIE D. Second harmonic detection with tunable diode laser: Comparison of experiment and theory [J]. Appllied Physics B, 1981, 26: 203-210.
[18] [18] TU G J, DONG F Z, et al.. Novel method for correcting light-intensity fluctuation in TDLAS system [J]. Chinese Optics Letter, 2012, 10(4): 042801.
[19] [19] SEYEDALI H S, ALIREZA K. Apodized 2f/1f wavelength modulation spectroscopy method for calibration-free trace detection of carbon monoxide in the near-infrared region: theory and experiment[J]. Applied Physics B, 2014, 116(3): 521-531.
[20] [20] ROTHMAN L, GORDON I, BABIKOV Y, et al.. The HITRAN2012 molecular spectroscopic database [J]. J. Quant. Spectrosc. Radiat. Transf., 2013, 130: 4-50.
[21] [21] PETER W. A review of recent advances in semiconductor laser based gas monitors [J]. Spectrochimica Acta Part A, 1998, 54: 197-236.
[22] [22] ZHANG ZH R, SUN P SH, XIA H, et al.. Modulation parameters influence and optimal selection of tunable diode laser absorption spectroscopy [J]. Acta Photonica Sinica, 2015, 44(1): 114002. (in Chinese)
[23] [23] LIU S, PANG T, SUN P S, et al.. Design of multi-gases on-line analysis system in coal-mining area based on TDLAS technology[J]. Journal of Atmospheric and Environmental Optics. (in Chinese)
[24] [24] PANG T, XIA H, WU B, et al.. Oxygen concentration detection system based on TDLAS and online elimination of background noise [J]. Journal of Optoelectronics · Laser, 2015, 26(3): 575-580. (in Chinese)
[25] [25] Mine safety rules formulated [S]. State Administration of work safety, 2016. (in Chinese)
[26] [26] ZHENG C T, HUANG J Q, YE W L, et al.. Demonstration of a portable near-infrared CH4 detection sensor based on tunable diode laser absorption spectroscopy [J]. Infrared Physics & Technology, 2013, 61: 306-312.
[27] [27] FAN S T. Full-range Methane Detection System Based on TDLAS Technology [D]. Beijing: University of Chinese Academy of Sciences, 2013. (in Chinese)
[28] [28] PANG T, WANG Y, XIA H, et al.. Full scale methane sensor based on TDLAS technology [J]. Acta Photonica Sinica, 2016, 45(9): 0912003. (in Chinese)
[29] [29] LI ZH, ZHANG ZH R, SUN P SH, et al.. Multi-point full range monitoring of methane based on TDLAS technology [J]. Infrared and Laser Engineering, 2017, 46(9): 0917009. (in Chinese)
[30] [30] CHAN T L, NING Z, LEUNG C W, et al.. On-road remote sensing of petrol vehicle emissions measurement and emission factors estimation in Hong Kong [J]. Atmospheric Environment, 2004, 38: 2055-2066.
[31] [31] NAOKI K, OSAMI W, RYUJI K. Measurement of water vapor fluctuation with a laser absorption spectrometry system having anti-scintillation performance[J]. SPIE, 2002, 4539: 116-124.
[32] [32] SUN P SH, ZHANG ZH R, LI J, et al.. Research on natural gas leakage monitoring technology based on the open-path measurement technique of methane [J]. Optics & Optoelectronic Technology, 2016, 14(5): 62-67. (in Chinese)
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ZHANG Zhi-rong, SUN Peng-shuai, PANG Tao, LI Zhe, XIA Hua, CUI Xiao-juan, WU bian, XU Qi-ming, DONG Feng-zhong. Application of laser absorption spectroscopy for identification gases in industrial production processes and early safety warning[J]. Optics and Precision Engineering, 2018, 26(8): 1925
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Received: Apr. 11, 2018
Accepted: --
Published Online: Oct. 2, 2018
The Author Email: Zhi-rong ZHANG (zhangzr@aiofm.ac.cn)