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Trace detection of volatile organic compounds by diode laser cavity ring-down spectroscopy

机译:二极管激光腔衰荡光谱法检测挥发性有机化合物

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The use of continuous wave cavity ring-down spectroscopy (cw CRDS) with near infra-red diode lasers is demonstrated for quantitative detection of trace levels of unsaturated volatile organic compounds (VOCs) at wavelengths that avoid overlapping absorptions by more abundant atmospheric constituents such as H2O and CO2. The current detection limit, with due allowance for pressure broadening by 1 atmosphere of air, is 6 parts per billion by volume (ppbv) for ethyne at an air wavelength of 1519.670 nm, and is sufficient for direct atmospheric detection of this molecule in many urban environments. Detection limits for alkenes are inferior, and, without incorporating the consequences of pressure broadening, include 78 ppbv for ethene and 900 ppbv for 1,3-butadiene. While the CRDS detection method offers several advantages over established gas chromatographic techniques for monitoring of small VOCs such as ethyne, it appears to be less well suited to study of larger organic compounds. Methods are discussed for improving the instrument to reach the sensitivities required to monitor the various alkenes and other C - H containing molecules in the troposphere. [References: 32]
机译:已证明将连续波腔衰荡光谱(cw CRDS)与近红外二极管激光器配合使用可定量检测痕量水平的不饱和挥发性有机化合物(VOC)的波长,该波长可避免更丰富的大气成分(如H2O和CO2。当前的检测极限,加上适当的允许在1个大气压下扩大压力的空间,在1519.670 nm的空气波长下,乙炔的体积分数为十亿分之6(ppbv),足以在许多城市中直接对该分子进行大气检测环境。烯烃的检出限较差,在不考虑压力扩大后果的情况下,乙烯的检测限为78 ppbv,1,3-丁二烯的检测限为900 ppbv。尽管CRDS检测方法相对于用于监测诸如乙炔之类的小型VOC的现有气相色谱技术具有多个优势,但它似乎不太适合研究较大的有机化合物。讨论了改进仪器以达到监测对流层中各种烯烃和其他含C H的分子所需的灵敏度的方法。 [参考:32]

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