首页> 外文会议>Conference on application of tunable diode and other infrared sources for atmospheric studies and industrial processing monitoring >Development of a tunable diode laser instrument for airborne in-situ measurements of carbon monoxide (CO) and nitrous oxide (N2O)
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Development of a tunable diode laser instrument for airborne in-situ measurements of carbon monoxide (CO) and nitrous oxide (N2O)

机译:开发可调谐二极管激光仪,用于空气传播的一氧化碳(CO)和氧化亚氮(N2O)

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We have developed an instrument to fly on the NASA WB-57F aircraft which measures simultaneously two atmospheric tracers, CO and N$-2$/O. These gases have lifetimes which make them appropriate dynamical tracers in the upper troposphere and lower stratosphere. To measure these species for studies of current interest we need a continuous record with a sensitivity of about 1 ppbv, and an absolute accuracy of about 1 percent. To trace the effect of small scale features requires a response time around 1 second. We describe the details of a tunable diode laser-based instrument designed for automatic operation aboard the WB- 57F aircraft at altitudes between the surface and 65,000 feet. A single diode laser, cooled by liquid nitrogen, is used to provide radiation at absorption lines of CO (2190.018 cm$+$MIN@1$/) and N$-2$/O (2190.350 cm$+$MIN@1$/). Fully reflective optics directs the infrared beam through a long pass cell (36 m path length) of small volume (0.3 l) operated at relatively low pressure (40 mb). The instrument operates autonomously for up to 8 hours. Calibration is achieved by the introduction of standard, calibrated mixtures into the inlet sample flow.
机译:我们开发了一种在NASA WB-57F飞机上飞行的乐器,这些飞机同时衡量了两个大气描绘的,CO和N $ -2 $ / O。这些气体具有寿命,这使得它们在上层和较低的平流层中具有适当的动态示踪剂。为了测量目前利益研究的这些物种,我们需要一种敏感性的连续记录,敏感性约为1 ppbv,绝对精度约为1%。追踪小规模特征的效果需要响应时间左右1秒。我们描述了可调谐二极管激光的仪器设计,该仪器设计用于自动操作,在表面和65,000英尺之间的高度上乘坐WB-57F飞机。由液氮冷却的单二极管激光器,用于在CO的吸收管线(2190.018 cm $ + $ min @ 1 $ /)和N $ -2 $ /)提供辐射(2190.350 cm $ + $ min @ 1 $ /)。完全反射光学器件通过在相对低压(40mb)下操作的小体积(0.3L)的长通电池(36 m路径长度)引导红外光束。仪器自主运行长达8小时。通过将标准校准的混合物引入入口样品流动来实现校准。

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