The Tibetan Plateau (TP) plays an essential role in modulating regional and global climate, and its influence on climate is also affected by human-related processes, including changes in atmospheric composition. However, observations of atmospheric composition, especially vertical profile observations, remain sparse and rare on the TP, due to extremely high altitude, topographical heterogeneity and the grinding environment. Accordingly, the forcing and feedback of atmospheric composition from rapidly changing surrounding regions to regional environmental and climate change in the TP remains poorly understood. This paper introduces a high-time-resolution (∼15 min) vertical profile observational dataset of atmospheric composition (aerosols, N...
The Qinghai – Tibet Plateau is characterized by a significant intra-annual variability and spatial h...
Cloud vertical structures and precipitation over the Tibetan Plateau (TP) are analyzed and compared ...
are compared with ground-based remote sensing data. The result shows that 27 out of 32 MISR AODs fal...
The Tibetan Plateau (TP) plays an essential role in modulating regional and global climate, and its ...
We introduce a long-term (2017-2019) vertical observational dataset of atmospheric composition in th...
The Tibetan Plateau (TP) is representative of typical clean atmospheric conditions. Aerosol optical ...
The characteristics of aerosol optical depth (AOD) over the Tibetan Plateau (TP) were analyzed using...
The Tibetan Plateau (TP) is the largest and highest plateau on Earth. Due to its elevation, it recei...
Analysis of long-term, ground-based observation data on the Tibetan Plateau help to enhance our unde...
As a unique and high gigantic plateau, the Tibetan Plateau (TP) is sensitive and vulnerable to globa...
The tropospheric concentrations of nitrogen dioxide (NO2) and formaldehyde (HCHO) have high spatio-t...
An unmanned aerial vehicle (UAV) observation platform obtained the first vertical profiles of partic...
Water vapour in the upper troposphere is the dominant greenhouse gas and provides a large feedback m...
To investigate the atmospheric aerosols of the Himalayas and Tibetan Plateau (HTP), an observation n...
The Tibetan Plateau (TP) is one of the world's most sensitive areas for climate change. Previous stu...
The Qinghai – Tibet Plateau is characterized by a significant intra-annual variability and spatial h...
Cloud vertical structures and precipitation over the Tibetan Plateau (TP) are analyzed and compared ...
are compared with ground-based remote sensing data. The result shows that 27 out of 32 MISR AODs fal...
The Tibetan Plateau (TP) plays an essential role in modulating regional and global climate, and its ...
We introduce a long-term (2017-2019) vertical observational dataset of atmospheric composition in th...
The Tibetan Plateau (TP) is representative of typical clean atmospheric conditions. Aerosol optical ...
The characteristics of aerosol optical depth (AOD) over the Tibetan Plateau (TP) were analyzed using...
The Tibetan Plateau (TP) is the largest and highest plateau on Earth. Due to its elevation, it recei...
Analysis of long-term, ground-based observation data on the Tibetan Plateau help to enhance our unde...
As a unique and high gigantic plateau, the Tibetan Plateau (TP) is sensitive and vulnerable to globa...
The tropospheric concentrations of nitrogen dioxide (NO2) and formaldehyde (HCHO) have high spatio-t...
An unmanned aerial vehicle (UAV) observation platform obtained the first vertical profiles of partic...
Water vapour in the upper troposphere is the dominant greenhouse gas and provides a large feedback m...
To investigate the atmospheric aerosols of the Himalayas and Tibetan Plateau (HTP), an observation n...
The Tibetan Plateau (TP) is one of the world's most sensitive areas for climate change. Previous stu...
The Qinghai – Tibet Plateau is characterized by a significant intra-annual variability and spatial h...
Cloud vertical structures and precipitation over the Tibetan Plateau (TP) are analyzed and compared ...
are compared with ground-based remote sensing data. The result shows that 27 out of 32 MISR AODs fal...