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Detection of benzene and other gases with an open-path, static Fourier-transform UV spectrometer

机译:用开路静态傅里叶变换紫外光谱仪检测苯和其他气体

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摘要

Releases of benzene and other gases have been detected and quantified using a novel optical, open-path instrument based on a deuterium light source and a static Fourier-transform spectrometer. The spectrometer uses Wollaston prisms to form an interferogram in the spatial domain that is recorded by use of a detector array. The instrument is designed to operate in the ultraviolet region of the spectrum between 200 and 270 nm, which coincides with strong absorption features in the spectra of many gases of environmental and health interest. Using the instrument with a 5-s measurement period provides a path-integrated concentration sensitivity to benzene of 2 parts in 10~(6) times meter, which corresponds to a 20-parts in 10~(9) detection limit over a typical path length of 100 m.
机译:苯和其他气体的释放已使用基于氘光源和静态傅立叶变换光谱仪的新型光学开放路径仪器进行了检测和定量。光谱仪使用沃拉斯顿棱镜在空间域中形成干涉图,并通过使用探测器阵列进行记录。该仪器设计用于在200至270 nm的紫外光谱范围内工作,这与许多对环境和健康有益的气体的光谱具有很强的吸收特性。在5s的测量周期内使用该仪器可提供10〜(6)倍计中2份苯的路径积分浓度灵敏度,相当于典型路径中10〜(9)份中20份的检测限长度为100 m。

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