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Development of a cavity ringdown laser absorption spectrometer for detection of trace levels of mercury

机译:开发用于检测痕量汞的腔衰荡激光吸收光谱仪

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摘要

A potential new laser-based air pollution measurement technique, capable of measuring ultralow concentrations of urban air toxins in the field and in real time, is examined. Cavity ringdown laser absorption spectroscopy (CRLAS) holds promise as an air pollution monitor because it is a highly sensitive species detection technique that uses either pulsed or continuous tunable laser sources. The sensitivity results from an extremely long absorption path length and the fact that the quantity measured, the cavity decay time, is unaffected by fluctuations in the laser source. In laboratory experiments, we reach detection limits for mercury of the order of 0.50 parts per trillion. We developed a CRLAS system in our laboratory and measured Hg with the system, investigating issues such as background interference. We report experimental results for mercury detection limits, the dynamic range of the sensor, detection of Hg in an absorbing background of ozone and SO_(2), and detection of a mercury-containing compound (HgCl_(2) in this case).
机译:研究了一种潜在的基于激光的新型空气污染测量技术,该技术能够在野外实时测量超低浓度的城市空气毒素。腔衰荡激光吸收光谱法(CRLAS)有望成为一种空气污染监测仪,因为它是一种高度灵敏的物种检测技术,可使用脉冲或连续可调激光源。灵敏度来自极长的吸收路径长度,并且所测量的量(腔衰变时间)不受激光源波动的影响。在实验室实验中,我们达到的汞检出限为0.5万亿分之几。我们在实验室中开发了CRLAS系统,并使用该系统测量了汞,调查了背景干扰等问题。我们报告了汞检测极限,传感器的动态范围,在臭氧和SO_(2)的吸收背景下检测Hg以及检测含汞化合物(在这种情况下为HgCl_(2))的实验结果。

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