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首页> 外文期刊>Applied optics >Real-time monitoring of benzene, toluene, and p-xylene in a photoreaction chamber with a tunable mid-infrared laser and ultraviolet differential optical absorption spectroscopy
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Real-time monitoring of benzene, toluene, and p-xylene in a photoreaction chamber with a tunable mid-infrared laser and ultraviolet differential optical absorption spectroscopy

机译:可调谐中红外激光和紫外差分光学吸收光谱法实时监测光反应室内的苯,甲苯和对二甲苯

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摘要

We describe the implementation of a mid-infrared laser-based trace gas sensor with a photoreaction chamber, used for reproducing chemical transformations of benzene, toluene, and p-xylene (BTX) gases that may occur in the atmosphere. The system performance was assessed in the presence of photoreaction products including aerosol particles. A mid-infrared external cavity quantum cascade laser (EC-QCL)--tunable from 9.41-9.88 (mu)m (1012-1063 cm~(-1))--was used to monitor gas phase concentrations of BTX simultaneously and in real time during chemical processing of these compounds with hydroxyl radicals in a photoreaction chamber. Results are compared to concurrent measurements using ultraviolet differential optical absorption spectroscopy (UV DOAS). The EC-QCL based system provides quantitation limits of approximately 200, 200, and 600 parts in 10~(9) (ppb) for benzene, toluene, and p-xylene, respectively, which represents a significant improvement over our previous work with this laser system. Correspondingly, we observe the best agreement between the EC-QCL measurements and the UV DOAS measurements with benzene, followed by toluene, then p-xylene. Although BTX gas-detection limits are not as low for the EC-QCL system as for UV DOAS, an unidentified by-product of the photoreactions was observed with the EC-QCL, but not with the UV DOAS system.
机译:我们描述了具有光反应室的基于中红外激光的痕量气体传感器的实现,该传感器用于复制可能在大气中发生的苯,甲苯和对二甲苯(BTX)气体的化学转化。在存在包括气溶胶颗粒在内的光反应产物的情况下评估系统性能。可在9.41-9.88μm(1012-1063 cm〜(-1))范围内调节的中红外外腔量子级联激光器(EC-QCL)用于同时监测BTX的气相浓度在光反应室中对这些具有羟基自由基的化合物进行化学处理过程中实时将结果与使用紫外差分吸收光谱法(UV DOAS)进行的同时测量进行比较。基于EC-QCL的系统提供的苯,甲苯和对二甲苯的定量限分别为10〜(9)(ppb)的大约200、200和600份,这比我们以前的工作有了重大改进激光系统。相应地,我们观察到EC-QCL测量与先后用甲苯,然后是对二甲苯的UV DOAS测量之间的最佳一致性。尽管EC-QCL系统的BTX气体检测极限没有UV DOAS的低,但是EC-QCL观察到了未反应的光反应副产物,而UV DOAS系统却没有。

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