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光声光谱法检测化学毒剂模拟剂及毒害气体研究进展
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作者 傅文翔 董力强 杨柳 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2023年第12期3653-3658,共6页
光声光谱是一种新颖的气体探测技术,光声光谱检测是一种间接的吸收光谱技术,通过探测声波信号进行气体浓度反演,具有结构简单、响应速度快、系统体积小等优点,是目前正在发展一种可广泛使用的高灵敏度痕量气体传感手段之一,在检测毒害... 光声光谱是一种新颖的气体探测技术,光声光谱检测是一种间接的吸收光谱技术,通过探测声波信号进行气体浓度反演,具有结构简单、响应速度快、系统体积小等优点,是目前正在发展一种可广泛使用的高灵敏度痕量气体传感手段之一,在检测毒害气体、爆炸物及化学毒剂模拟剂领域正在成为研究的热点之一。重点介绍了光声光谱技术在化学毒剂模拟剂和有毒有害气体的快速检测方面的研究工作。光声光谱法使用了不同的激光系统,当激光发射的范围为中红外波段,在这些波段范围内化学毒剂会有特征吸收峰,因此也可适用于检测化学毒剂。介绍了国外光声光谱法检测化学毒剂及模拟剂的相关方法,介绍了方法中光路构成、激光光源等方法信息,以及新建气体吸收池的结构特点。分析了不同化学毒剂及模拟剂光声光谱检测的特征吸收波长范围等内容。除了传统的在气体吸收池中检测化学毒剂外,近年来不断发展了在几厘米到几十米距离范围内的光声光谱开放光路遥测探测毒害气体的方法和系统。对光声光谱技术在氨气、硫化氢、 HF、二氧化硫等有毒有害气体检测领域的方法进行了报道。分析了相关的光源及方法、声波换能元件、化学毒剂模拟剂的特征光谱、检测性能等方面的工作。报道了国外短距离遥测光声光谱样机,对光声光谱短距离谱遥测技术等潜在的发展进行了评述。 展开更多
关键词 光声光谱 化学毒剂 模拟剂 遥测探测 有毒有害气体
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FY-4 Meteorological Satellite 被引量:1
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作者 DONG Yaohai CHEN Xiaojie +4 位作者 CHEN Qiang LYU Wang SHEN Junfeng CHE Lamei JIANG Feng 《Aerospace China》 2017年第2期31-39,共9页
FY-4 is the second generation of Chinese geostationary satellite for quantitative remote sensing meteorological application. The detection efficiency, spectral bands, spatial and time resolution have been greatly impr... FY-4 is the second generation of Chinese geostationary satellite for quantitative remote sensing meteorological application. The detection efficiency, spectral bands, spatial and time resolution have been greatly improved with respect to those of first generation, as well as the radiometric calibration and sensitivity. The combination of multichannel detection and vertical sounding was first realized on FY-4, because both the Advanced Geostationary Radiation Imager(AGRI) and Geostationary Interferometric Infrared Sounder(GIIRS) are on the same spacecraft. The main performance of the payloads including AGRI, GIIRS and Lightning Mapping Imager, and the spacecraft bus are presented, the performance being equivalent to the level of the third generation meteorological satellites in Europe and USA. The acquiring methods of remote sensing data including multichannel and high precision quantitative observing, imaging collection of the ground and cloud, vertical observation of atmospheric temperature and moisture, lightning imaging observation and space environment detection are shown. Several innovative technologies including high accuracy rotation angle detection and scanning control, high precision calibration, micro vibration suppression, unified reference of platform and payload and on-orbit measurement, real-time image navigation and registration on-orbit were applied in FY-4. 展开更多
关键词 FY-4 GEO meteorological satellite three-axis stabilization quantitative remote sensing vertical highspectrum sounding real-time on-board image navigation and registration
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