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首页> 外文期刊>Atmospheric chemistry and physics >Technical Note: Using a high finesse optical resonator to provide a long light path for differential optical absorption spectroscopy: CE-DOAS
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Technical Note: Using a high finesse optical resonator to provide a long light path for differential optical absorption spectroscopy: CE-DOAS

机译:技术说明:使用高精细光学谐振器为差分光学吸收光谱提供长光路:CE-DOAS

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Cavity enhanced methods in absorption spectroscopy have seen a considerable increase in popularity during the past decade. Especially Cavity Enhanced Absorption Spectroscopy (CEAS) established itself in atmospheric trace gas detection by providing tens of kilometers of effective light path length using a cavity as short as 1 m. In this paper we report on the construction and testing of a compact and power efficient light emitting diode based broadband Cavity Enhanced Differential Optical Absorption Spectrometer (CE-DOAS) for in situ observation of atmospheric NO3. This device combines the small size of the cavity with the advantages of the DOAS approach in terms of sensitivity, specificity and insensivity to intensity fluctuations of the light source. In particular, no selective removal of the analyte (here NO3) is necessary for calibration of the instrument if appropriate corrections are applied to the CEAS theory. Therefore the CE-DOAS technique can - in principle - measure any gas detectable by DOAS. We will discuss the advantages of using a light emitting diode (LED) as light source particularly the precautions which have to be considered for the use of LEDs with a broad wavelength range. The instrument was tested in the lab by detecting NO3 formed by mixing of NO2 and O-3 in air. It was then compared to other trace gas detection techniques in an intercomparison campaign in the atmosphere simulation chamber SAPHIR at Forschungszentrum Julich at NO3 concentrations as low as 6.3 ppt.
机译:在过去的十年中,吸收光谱法中的腔增强方法已大受欢迎。特别是腔增强吸收光谱法(CEAS)通过使用短至1 m的腔提供数十公里的有效光程长度而在大气痕量气体检测中确立了自己的地位。在本文中,我们报告了一种用于现场原位观测大气NO3的紧凑型,高效节能的基于发光二极管的宽带腔增强差分光吸收光谱仪(CE-DOAS)的构建和测试。该设备将腔体的小尺寸与DOAS方法的优势相结合,在灵敏度,特异性和对光源强度波动的敏感性方面都具有优势。特别是,如果对CEAS理论进行了适当的校正,则无需选择性去除分析物(此处为NO3)即可进行仪器校准。因此,CE-DOAS技术原则上可以测量DOAS可检测到的任何气体。我们将讨论使用发光二极管(LED)作为光源的优点,尤其是在使用宽波长范围的LED时必须考虑的预防措施。该仪器在实验室中通过检测空气中NO2和O-3混合形成的NO3进行了测试。然后在Forschungszentrum Julich大气模拟室SAPHIR中以低至6.3 ppt的NO3浓度将其与其他微量气体检测技术进行比对活动。

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