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首页> 外文期刊>Applied optics >Line-pair selections for remote sensing of atmospheric ammonia by use of a coherent CO_(2) differential absorption lidar system
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Line-pair selections for remote sensing of atmospheric ammonia by use of a coherent CO_(2) differential absorption lidar system

机译:通过使用相干CO_(2)差分吸收激光雷达系统遥感大气氨的线对选择

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摘要

Research on wavelength selection of CO_(2) laser lines for range-resolved remote sensing of atmospheric ammonia by use of a coherent differential absorption lidar system is described. Four laser line pairs are suggested for different levels of ammonia concentrations from approximately a few parts per billion to 1 part per million in a polluted atmosphere. The most suitable line for measuring ambient ammonia concentrations is 9R(30), because it has the highest absorption coefficient. 10R(14) has the lowest absorption coefficient, making it suitable for strong source mapping. 10R(8) and 10P(32) are best for intermediate levels of ammonia concentration. Absorption coefficients of ammonia calculated from the HITRAN96 database are in good agreement (mostly within ±10%) with other experimental results. Sensitivity of measurement, interference from water-vapor lines with typical humidity in the summer, and sensitivity of ammonia absorption cross section to temperature and pressure are analyzed and calculated for the four wavelength pairs. The results show that the interference from water-vapor lines is easily correctable to a negligible amount, and errors caused by uncertainties in temperature and pressure are insignificant.
机译:描述了通过使用相干差分吸收激光雷达系统对大气氨进行距离分辨遥感的CO_(2)激光线的波长选择的研究。建议在污染的环境中使用四对激光线,以检测不同浓度的氨,浓度范围从大约十亿分之几到百万分之一。最适合测量环境氨浓度的线是9R(30),因为它具有最高的吸收系数。 10R(14)的吸收系数最低,因此适合强信号源映射。 10R(8)和10P(32)最适合中等浓度的氨。从HITRAN96数据库计算出的氨吸收系数与其他实验结果吻合良好(大部分在±10%之内)。分析并计算了这四个波长对的测量灵敏度,夏季水汽管线对典型湿度的干扰以及氨吸收截面对温度和压力的灵敏度。结果表明,水蒸气管线的干扰很容易校正到可以忽略不计的量,并且温度和压力不确定性引起的误差也很小。

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