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首页> 外文期刊>Applied optics >Measurement of atmospheric carbon dioxide and water vapor in built-up urban areas in the Gandhinagar-Ahmedabad region in India using a portable tunable diode laser spectroscopy system
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Measurement of atmospheric carbon dioxide and water vapor in built-up urban areas in the Gandhinagar-Ahmedabad region in India using a portable tunable diode laser spectroscopy system

机译:使用便携式可调谐二极管激光光谱系统测量印度甘尼加尔 - 艾哈迈达巴德地区建筑城市地区大气二氧化碳和水蒸气

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摘要

This paper reports open-path in situ measurements of atmospheric carbon dioxide at Gandhinagar (23.2156 degrees N, 72.6369 degrees E) and Ahmedabad (23.0225 degrees N, 72.5714 degrees E) in the heavily industrialized state of Gujarat in western India. Calibration-free second harmonic wavelength modulation spectroscopy (2f WMS) is used to carry out accurate and fully automated measurements. The mean values of the mole fraction of carbon dioxide at four locations were 438 ppm, 495 ppm, 550 ppm, and 740 ppm, respectively. These values are much higher than the current global average of 406.67 ppm. A 1 mW, 2004-nm vertical cavity surface-emitting laser is used to selectively interrogate the R16 transition of carbon dioxide at 2003.5 nm (4991.2585 cm(-1)). The 2f WMS signal corresponding to the gas absorption line shape is simulated using spectroscopic parameters available in the HITRAN database and relevant laser parameters that are extracted in situ from non-absorbing spectral wings of the harmonic signals. The mole fraction of carbon dioxide is extracted in real-time by a MATLAB program from least-squares fit of the simulated 2f WMS signal to the corresponding experimentally obtained signal. A 10-mW, 1392.54-nm distributed feedback laser is used at two of the locations to carry out water vapor measurements using direct absorption spectroscopy. This is the first instance of a portable tunable diode laser spectroscopy system being deployed in an urban location in India to measure atmospheric carbon dioxide and water vapor under varying traffic conditions. The measurements clearly demonstrate the need to adopt tunable diode laser spectroscopy for precise long-term monitoring of greenhouse gases in the Indian subcontinent. (C) 2017 Optical Society of America
机译:本文报道了印度西部古吉拉特邦古吉拉特邦的大型工业化国家的古吉拉特州大气二氧化碳的开放式路径无需校准的二次谐波波长调制光谱(2F WMS)用于进行准确和全自动测量。四个位置在四个位置的二氧化碳的平均值分别为438ppm,495ppm,550ppm和740ppm。这些值远高于目前的全局平均值406.67ppm。使用1mW,2004nm垂直腔表面发射激光器在2003.5nm(4991.2585cm(-1))中选择性地询问二氧化碳的R16转变。使用HITRAN数据库中可用的光谱参数和与谐波信号的非吸收光谱翼提取的光谱参数来模拟对应于气体吸收线形状的2F WMS信号。通过MATLAB程序从模拟的2FWMS信号的最小二乘拟合到相应的实验所获得的信号实时提取二氧化碳的摩尔分数。在两个位置使用10mW,1392.54-nm分布式反馈激光器,以使用直接吸收光谱进行水蒸气测量。这是一个便携式可调二极管激光光谱系统的第一个实例,该系统部署在印度的城市位置,以测量不同交通条件下的大气二氧化碳和水蒸气。测量清楚地表明需要采用可调谐二极管激光光谱,以便在印度次大陆的温室气体进行精确监测。 (c)2017年光学学会

著录项

  • 来源
    《Applied optics》 |2017年第31期|共10页
  • 作者单位

    Indian Inst Technol Gandhinagar Elect Engn Gandhinagar 382355 Gujarat India;

    Indian Inst Technol Gandhinagar Elect Engn Gandhinagar 382355 Gujarat India;

    Indian Inst Technol Gandhinagar Elect Engn Gandhinagar 382355 Gujarat India;

    Univ Strathclyde Dept Elect &

    Elect Engn Glasgow G1 1XW Lanark Scotland;

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  • 正文语种 eng
  • 中图分类 应用;
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