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Applicability of light-emitting diodes as light sources for active differential optical absorption spectroscopy measurements

机译:发光二极管作为有源差分光学吸收光谱测量的光源的适用性

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We present what is to our knowledge the first use of light-emitting diodes (LEDs) as light sources for long-path differential optical absorption spectroscopy (LP-DOAS) measurements of trace gases in the open atmosphere. Modern LEDs represent a potentially advantageous alternative to thermal light sources, in particular to xenon arc lamps, which are the most common active DOAS light sources. The radiative properties of a variety of LEDs were characterized, and parameters such as spectral shape, spectral range, spectral stability, and ways in which they can be influenced by environmental factors were analyzed. The spectra of several LEDs were found to contain Fabry-Perot etalon-induced spectral structures that interfered with the DOAS evaluation, in particular when a constant temperature was not maintained. It was shown that LEDs can be used successfully as light sources in active DOAS experiments that measure NO_(2) and NO_(3) near 450 and 630 nm, respectively. Average detection limits of 0.3 parts in 10~(9) and 16 parts in 10~(12) respectively, were obtained by use of a 6 km light path in the open atmosphere.
机译:我们介绍了我们所知,首次将发光二极管(LED)用作开放气体在大气中对痕量气体进行长径差分光学吸收光谱(LP-DOAS)测量的光源。现代LED代表了热光源,特别是氙弧灯的潜在有利替代方案,后者是最常见的有源DOAS光源。对各种LED的辐射特性进行了表征,并分析了诸如光谱形状,光谱范围,光谱稳定性以及它们受环境因素影响的方式等参数。发现几个LED的光谱包含Fabry-Perot标准具诱导的光谱结构,这些结构会干扰DOAS评估,特别是在未保持恒定温度的情况下。结果表明,LED可以成功地用作主动DOAS实验中的光源,该实验分别测量450和630 nm附近的NO_(2)和NO_(3)。通过在露天环境中使用6 km的光路,分别获得10〜(9)中0.3份和10〜(12)中16份的平均检出限。

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