Gao Min-quang, Liu Wen-qing, Zhang Tian-shu, Liu Jian-guo, Lu Yi-huai, Wang Ya-ping, Xu Liang, Zhu Jun, Chen Jun
Key Lab of Environmental Optics and Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei 230031, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2006 Dec;26(12):2203-6.
The present article describes the details of aviatic measurement for remote sensing trace gases in atmosphere under various surface backgrounds with airborne passive FTIR. The passive down viewing and remote sensing technique used in the experiment is discussed. The method of acquiring atmospheric trace gases infrared characteristic spectra in complicated background and the algorithm of concentration retrieval are discussed. The concentrations of CO and N2O of boundary-layer atmosphere in experimental region below 1000 m are analyzed quantitatively. This measurement technique and the data analysis method, which does not require a previously measured background spectrum, allow fast and mobile remote detection and identification of atmosphere trace gas in large area, and also can be used for urgent monitoring of pollution accidental breakout.
本文介绍了利用机载被动式傅里叶变换红外光谱仪在不同地表背景下对大气中遥感痕量气体进行航空测量的详细情况。讨论了实验中使用的被动式下视遥感技术。探讨了在复杂背景下获取大气痕量气体红外特征光谱的方法以及浓度反演算法。对试验区1000米以下边界层大气中的一氧化碳和一氧化二氮浓度进行了定量分析。这种测量技术和数据分析方法无需预先测量背景光谱,可实现大面积大气痕量气体的快速移动遥感探测与识别,还可用于污染事故突发的应急监测。