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基于量子级联激光器的温室气体测量方法研究 被引量:14

Study on Detection of Greenhouse Gases Based on Quantum Cascade Laser
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摘要 中红外为分子的基频吸收波段,可被用于痕量气体的高灵敏度检测。介绍了基于中红外室温连续量子级联激光器(CW-QCL)结合波长调制技术(WMS)的光谱检测方法,研究了消除气体间交叉干扰的方法,并进行了相关的验证实验。利用中心波长在1274cm-1波段附近的量子级联激光器搭建了一套开放光路温室气体探测实验系统,进行101m开放式测量实验,实现了对大气中CH4、N2O的同步在线测量,检测限分别为3.87×10-9和1.28×10-9,验证了实验系统和实验方法的可行性,为实现区域高灵敏温室气体监测奠定了基础。 The mid-infrared spectrum region, which corresponds to the fundamental absorption of molecules, can be applied to high-sensitivity trace gas measurement. A method using a mid-infrared continuous-wave quantum cascade laser (CW-QCL) operated in room temperature with wavelength modulation spectroscope (WMS) is demonstrated. A method of eliminating influence of cross interference between different gases is studied and related verification experiment is performed. An open path greenhouse gas detection system using a quantum cascade laser with central wavelength around 1274 cm-1 is constructed and utilized to monitor CH4 and N2 0 in atmsphere simultaneously with a 101 m open optical path measurement test, which achieves detection limits of 3. 87 × 10^-9 and 1. 28 × 10^-9 respectively. The feasibility of the experiment system and the method is verified, which lays a foundation for highsensitivity detection of greenhouse gases in regional environment.
出处 《光学学报》 EI CAS CSCD 北大核心 2014年第12期333-339,共7页 Acta Optica Sinica
基金 国家973计划(2013CB632803) 中国科学院战略性先导科技专项(XDA05040102)
关键词 光谱学 红外吸收光谱 量子级联激光器 温室气体监测 波长调制 开放光路 spectroscopy infrared absorption spectroscope quantum cascade lasers monitoring of greenhouse gas wavelength modulation open path
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  • 1李小银,林兆祥,刘煜炎,陈扬锓,龚顺生.激光大气等离子体光谱特性实验研究[J].光学学报,2004,24(8):1051-1056. 被引量:26
  • 2阚瑞峰,刘文清,张玉钧,刘建国,董凤忠,王敏,高山虎,陈军,王晓梅.可调谐二极管激光吸收光谱法监测环境空气中甲烷的浓度变化[J].中国激光,2005,32(9):1217-1220. 被引量:32
  • 3陈东,刘文清,张玉钧,刘建国,魏庆农,陈玖英,阚瑞峰,王敏,崔益本,方武,张永明,祝玉泉.可调谐半导体激光光谱火灾气体探测系统[J].中国激光,2006,33(11):1552-1556. 被引量:26
  • 4D.Bomse.Diode lasers finding trace gases in the lab and the plant[J].Photonics Spectra,1995,29(6): 88-94.
  • 5I.Linnerud,P.Kaspersen,T.Jaeger.Gas monitoring in the process industry using diode laser spectroscopy[J].Appl.Phys.B,1998,67(3): 297-305.
  • 6P.Werle.A review of recent advances in semiconductor laser based gas monitors[J].Spectrochim Acta A,1998,54: 197-236.
  • 7尚盈 魏玉宾 王昌等.基于吸收光谱技术的两种气体浓度的在线检测.中国激光,2010,37(1):248-251.
  • 8D.M.Sonnefroh,M.G.Allen.Absorption measurements of the second overtone band of NO in ambient air and combustion gases with a 1.8-μm room-temperature diode laser[J].Appl.Opt.,1997,36(30): 7970-7977.
  • 9R.M.Mihalcea,D.S.Bear,R.K.Hanson.Diode laser sensor for measurements of CO,CO2,and CH4 in combustion flows[J].Appl.Opt.,1997,36(33): 8745-8752.
  • 10J.Shao,X.M.Gao,L.H.Deng et al..Highly sensitivity tunable diode laser absorption spectroscopy of CO2 around 1.31 μm[J].Chin.Phys.Lett.,2004,21(10): 1908-1910.

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