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首页> 外文期刊>Atmospheric Measurement Techniques >A compact incoherent broadband cavity-enhanced absorption spectrometer for trace detection of nitrogen oxides, iodine oxide and glyoxal at levels below parts per billion for field applications
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A compact incoherent broadband cavity-enhanced absorption spectrometer for trace detection of nitrogen oxides, iodine oxide and glyoxal at levels below parts per billion for field applications

机译:一种紧凑的宽带腔腔增强型吸收光谱仪,用于追踪氮氧化物,碘氧化物和血甘油的水平低于截至百亿的实地应用

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We present a compact, affordable and robust instrument based on incoherent broadband cavity-enhanced absorption spectroscopy (IBBCEAS) for simultaneous detection of NOx, IO, CHOCHO and O3 in the 400–475 nm wavelength region. The instrument relies on the injection of a high-power LED source in a high-finesse cavity (F~33?100), with the transmission signal being detected by a compact spectrometer based on a high-order diffraction grating and a charge-coupled device (CCD) camera. A minimum detectable absorption of 2.0×10-10 cm?1 was achieved within ~22 min of total acquisition, corresponding to a figure of merit of 1.8×10-10 cm?1 Hz-1/2 per spectral element. Due to the multiplexing broadband feature of the setup, multi-species detection can be performed with simultaneous detection of NO2, IO, CHOCHO and O3 achieving detection limits of 11, 0.3, 10 ppt (parts per trillion) and 47 ppb (parts per billion) (1σ) within 22 min of measurement, respectively (half of the time is spent on the acquisition of the reference spectrum in the absence of the absorber, and the other half is spent on the absorption spectrum). The implementation on the inlet gas line of a compact ozone generator based on electrolysis of water allows for the measurement of NOx (NO+NO2) and therefore an indirect detection of NO with detection limits for NOx and NO of 10 and 21 ppt (1σ), respectively. The device has been designed to fit in a 19 in., 3U (5.25 in.) rack-mount case; weighs 15 kg; and has a total electrical power consumption of 300 W. The instrument can be employed to address different scientific objectives such as better constraining the oxidative capacity of the atmosphere, studying the chemistry of highly reactive species in atmospheric chambers as well as in the field and looking at the sources of glyoxal in the marine boundary layer to study possible implications on the formation of secondary aerosol particles.
机译:我们介绍了一种基于非相干宽带腔增强的吸收光谱(IBBCEAS)的紧凑,实惠且强大的仪器,用于同时检测400-475nm波长区域中的NOx,IO,CHOCHO和O3。该仪器依赖于在高智腔(F〜33≤100)中注入高功率LED源,通过基于高阶衍射光栅和电荷耦合的光谱仪检测传输信号设备(CCD)相机。在总采集的〜22分钟内实现最小可检测的吸收2.0×10-10cm = 1,对应于每光谱元件的1.8×10-10cm≤1Hz-1/2的优点。由于设置的多路复用宽带特征,可以通过同时检测No2,IO,Chocho和O3的多种检测来执行多种检测,从而实现11,0.3,10 ppt(每万亿分别)和47 ppb(亿分的零件) )(1σ)分别在测量的22分钟内(在没有吸收器的情况下花在收购参考光谱上的一半,而另一半在吸收光谱上花费)。基于水的电解的紧凑型臭氧发生器的入口气体线路的实施允许测量NOx(无+ NO2),因此间接检测NO的检测限制和NOX和21 PPT(1σ) , 分别。该装置设计成适合19英寸,3U(5.25英寸)的机架盒;重15千克;并且具有<300 W的总电力消耗。该仪器可以用于解决不同的科学目标,例如更好地限制大气的氧化能力,研究高度反应性物种在大气腔室中的化学和现场在海边层中观察甘草的来源,以研究二次气溶胶颗粒的形成可能影响。

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