气溶胶
高原(数学)
大气科学
环境科学
辐射压力
日出
吸收(声学)
生物质燃烧
气候学
东亚季风
季风
气象学
材料科学
地质学
物理
复合材料
数学分析
数学
作者
Qiyuan Wang,Yongming Han,Jianhuai Ye,Suixin Liu,Siwatt Pongpiachan,Ningning Zhang,Yuemei Han,Jie Tian,Cheng Wu,Xin Long,Qian Zhang,Wenyan Zhang,Zhuzi Zhao,Junji Cao
摘要
Abstract The optical properties of atmospheric secondary brown carbon (BrC) aerosol are poorly understood because of its chemical complexity, and this has hampered quantitative assessments of the impacts of this light‐absorbing material on glaciers on the Tibetan Plateau. For this study, a statistical approach was developed to investigate BrC light absorption over the southeastern margin of the Tibetan Plateau. Secondary sources for BrC were more important for absorption than primary ones. A diurnal cycle in secondary BrC absorption was explained by the formation of light‐absorbing chromophores by photochemical oxidation after sunrise followed by photobleaching of the chromophores under the more oxidizing conditions as the day progressed. Multimethod analyses showed that biomass burning in northern Burma and along the Sino‐Burmese border was the most important source for the secondary BrC. The mean integrated simple forcing efficiency was 79 W/g, indicating that secondary BrC can cause substantial radiative effects.
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