Liang Zhenxing, Gu Dasa, Li Rui, Liu Jian, Zhai Chengxing, Su Hui, Lau Alexis K H
Division of Environment and Sustainability, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong SAR 999077, China.
Guangdong-Hongkong-Macau Joint Laboratory of Collaborative Innovation for Environmental Quality, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong SAR 999077, China.
Environ Sci Technol Lett. 2025 Jun 24;12(7):848-855. doi: 10.1021/acs.estlett.5c00501. eCollection 2025 Jul 8.
Weakly absorbing reactive trace gases play important roles in the atmospheric environment and usually have short lifetimes ranging from seconds to days. HIRAS-II, the second hyperspectral infrared atmospheric sounder aboard the world's first civilian meteorological satellite in dawn-dusk orbit, FengYun-3E (FY-3E), can theoretically detect more than a dozen weakly absorbing reactive trace gases and make important contributions to global trace gas mapping by filling the gap for diurnal variation. This study uses state-of-the-art weak absorber thermal infrared spectral feature quantification and identification methods to detect weak absorbers from FY-3E/HIRAS-II and successfully capture 14 species from 35.4 million FY-3E/HIRAS-II clear-sky measurements in July 2023. We map the reliable global distribution of spectral features from nine routine reactive gases and find that these gases originate from scenes that are usually of special concern, including densely populated areas, vegetation, and biomass burning. This study confirms the capability of FY-3E/HIRAS-II in detecting weak absorbers and serves as a stepping stone for subsequent research in concentration retrieval. The case of the ammonia column over wildfires retrieved using neural network technology initially demonstrates that FY-3E/HIRAS-II can improve our understanding of the diurnal variation of trace gases by complementing measurements at dawn and dusk.
弱吸收性反应性痕量气体在大气环境中起着重要作用,其寿命通常较短,从几秒到几天不等。风云三号E星(FY-3E)是世界上第一颗运行在晨昏轨道的民用气象卫星搭载的第二代高光谱红外大气探测器(HIRAS-II),理论上可以探测十几种弱吸收性反应性痕量气体,并通过填补日变化的空白为全球痕量气体测绘做出重要贡献。本研究使用最先进的弱吸收体热红外光谱特征量化和识别方法,从FY-3E/HIRAS-II数据中检测弱吸收体,并在2023年7月的3540万次FY-3E/HIRAS-II晴空观测中成功捕获了14种气体。我们绘制了9种常规反应性气体光谱特征的可靠全球分布图,发现这些气体源自通常特别受关注的场景,包括人口密集地区、植被和生物质燃烧区域。本研究证实了FY-3E/HIRAS-II检测弱吸收体的能力,并为后续浓度反演研究奠定了基础。利用神经网络技术反演野火上空氨柱含量的案例初步表明,FY-3E/HIRAS-II可以通过补充晨昏时刻的观测,增进我们对痕量气体日变化的理解。