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Differential optical absorption spectroscopy instrument for stratospheric balloonborne trace-gas studies

机译:差分光学吸收光谱仪,用于平流层气球中的痕量气体研究

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摘要

A newly developed UV-visible instrument for differential optical absorption spectroscopic measurements of atmospheric trace gases from balloon platforms is described. Direct solar light at daytime in the near-ultraviolet (320.6-422.6-nm) and the visible (417.6-670.7-nm) spectral ranges can be simultaneously analyzed for the atmospheric column abundances or profiles of O_(3), NO_(2), NO_(3), BrO, OClO, O_(4), H_(2)O, and possibly other species (HNO_(2), IO, CH_(2)O). Compared with previously used balloonborne UV-visible spectrometers, the instrument has the superior properties of low mass (42 kg), low power consumption (30 W), decreased spectral drift that is caused by temperature and pressure changes, low detector dark current, and low spectrometer stray light. The three last-named characteristics are achieved by enclosure of the entire spectrometer in a pressurized and thermostated container and by inclusion of separately thermostated photodiode array detectors. The optical setup is simplified to reduce its weight. The spectral stray light is reduced by suppression of the higher-order and zero-order grating reflections by use of light traps and in the UV by addition of a dispersive prism preanalyzer. The major instrumental design characteristics and the instrumental performance as tested in the laboratory and during several stratospheric balloon flights are reported.
机译:描述了一种新开发的紫外可见仪器,用于差分光学吸收光谱法测量来自气球平台的大气痕量气体。可以同时分析白天在近紫外(320.6-422.6-nm)和可见(417.6-670.7-nm)光谱范围内的直接太阳光的大气柱丰度或O_(3),NO_(2)的分布,NO_(3),BrO,OClO,O_(4),H_(2)O和其他可能的物种(HNO_(2),IO,CH_(2)O)。与以前使用的气球型紫外可见光谱仪相比,该仪器具有以下优点:质量轻(42千克),功耗低(30瓦),由于温度和压力变化而导致的光谱漂移减少,检测器暗电流低以及低光谱仪杂散光。通过将整个光谱仪封装在加压和恒温的容器中,并包括单独的恒温光电二极管阵列检测器,可以实现三个最后的特性。简化了光学设置,以减轻其重量。通过使用光阱抑制高阶和零阶光栅反射,可减少光谱杂散光,而在紫外线中,通过添加色散棱镜预分析仪,可减少光谱杂散光。报告了在实验室以及几次平流层气球飞行过程中测试的主要仪器设计特征和仪器性能。

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