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Sulfur dioxide measurements by correlation spectroscopy using an ultraviolet light-emitting diode

机译:使用紫外光二极管的相关光谱法测量二氧化硫测量

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Gas sensing by optical methods employs traditionally conventional broadband radiation sources or narrowband lasers to take advantage of the specific absorption spectra of the studied gas. The gas correlation spectroscopy (COSPEC) technique is particularly simple and immune to spectral interference because it utilizes a reference gas cell to recognize and quantify the amount of the same gas in the sample volume. This technique can be used in monitoring industrial and volcanic emissions by employing various light sources, including thermal background radiation, broadband lasers, light emitting diodes (LED) and multi-mode diode lasers. Recently, LEDs with structureless emission in the UV region have become available. This paper demonstrates that LEDs can be ideal sources for gas absorption measurements combined with the gas correlation technique, especially suitable for industrial emission monitoring.The LED employed is centered around 300 nm and has an emission band width of about 12 nm covering about 8 prominent absorption peaks of SO2.By using a 19-cm long sample gas cell, an Allan variance analysis predicted a sensitivity of 0.4 ppm (1.1 mg/m3) with an integration time of one minute. The obtained sensitivity is sufficient for industrial emissions monitoring where typical SO2 concentrations range from tens to thousands of ppm. For atmospheric monitoring applications at ppb level long path absorption or a multi-pass cell can be employed. The system is immune from interfering gases, such as NO2, and it is also largely insensitive to total pressure variations and light intensity fluctuations.
机译:光学方法的气体感应采用传统的宽带辐射源或窄带激光器,以利用所研究的气体的特定吸收光谱。气体相关光谱(COSPEC)技术特别简单和免受光谱干扰,因为它利用参考气体电池识别和量化样品体积中相同气体的量。该技术可用于通过采用各种光源监测工业和火山排放,包括热背景辐射,宽带激光器,发光二极管(LED)和多模二极管激光器。最近,UV地区的结构无结构排放的LED可用。本文表明,LED可以是气体吸收测量与气体相关技术相结合的理想源,特别适用于工业排放监测。采用的LED为300nm,发射带宽约为12nm覆盖约8个突出吸收SO 2 的峰值使用19厘米长的样品气体电池,ALLAN方差分析预测了具有集成0.4ppm(1.1mg / m 3 )的灵敏度一分钟的时间。获得的敏感性足以用于工业排放监测,其中典型的所以 2 浓度范围从数万个ppm。对于PPB水平的大气监测应用,可以采用长路径吸收或多通电池。该系统免受干扰气体,例如No 2 ,并且对总压力变化和光强度波动也很敏感。

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