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首页> 外文期刊>Geophysical Research Letters >THE MEASUREMENT OF TROPOSPHERIC OH RADICALS BY LASER-INDUCED FLUORESCENCE SPECTROSCOPY DURING THE POPCORN FIELD CAMPAIGN
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THE MEASUREMENT OF TROPOSPHERIC OH RADICALS BY LASER-INDUCED FLUORESCENCE SPECTROSCOPY DURING THE POPCORN FIELD CAMPAIGN

机译:在爆米花场活动中用激光诱导的荧光光谱法测量对流OH自由基

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摘要

A highly sensitive OH measurement instrument has been developed. It is based on laser-induced fluorescence (LIF) detection of OH using the A(2) Sigma(+) v'=0 - X(2) Pi v ''=0 transition at 308.15 nm at low pressure. The LIF instrument detects OH directly and with high specificity, a fact that was demonstrated by recording laser excitation spectra (Q(1)(3), Q(21)(3) and P-1(1) lines) of ambient OH. For high time resolution (typ. 60-100 s), the laser wavelength was modulated on- / off- resonance with the P-1(1) line. Here, we report some of the OH measurements obtained by this technique during its first application in a tropospheric field campaign (''POPCORN''), which was conducted in August 1994 in a rural environment in the North-East of Germany. These include diurnal OH concentration profiles with maximum OH concentrations up to 1.4 x 10(7) cm(-3) at noon. Minimum OH concentrations were measured in the morning and evening down to the detection limit of (3-6) x 10(5) cm(-3) (SNR = 2, measurement time 1 min.). During the day, OK fluctuations were observed on a time scale of minutes and hours. These were highly correlated to the flux of the solar UV radiation which is responsible for the primary OH production by photolysis. [References: 11]
机译:已经开发出一种高灵敏度的OH测量仪器。它基于在308.15 nm低压下使用A(2)Sigma(+)v'= 0-X(2)Pi v''= 0跃迁的OH的激光诱导荧光(LIF)检测。 LIF仪器可直接且高特异性地检测OH,这一事实已通过记录环境OH的激光激发光谱(Q(1)(3),Q(21)(3)和P-1(1)线)得到证明。为了获得较高的时间分辨率(典型值60-100 s),激光波长通过P-1(1)线进行开/关共振调制。在这里,我们报告了在1994年8月在德国东北部的一个农村环境中进行的对流层野战(“ POPCORN”)中首次使用该技术获得的一些OH测量值。这些包括每日OH浓度分布图,中午时最大OH浓度高达1.4 x 10(7)cm(-3)。在早上和晚上测量最低OH浓度,直至检测极限为(3-6)x 10(5)cm(-3)(SNR = 2,测量时间1分钟)。白天,在几分钟和几小时的时间尺度上观察到正常波动。这些与太阳紫外线辐射的通量高度相关,后者通过光解作用产生主要的OH。 [参考:11]

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