A novel geostationary satellite, the H8/AHI (Himawari-8/Advanced Himawari Imager), greatly improved the scan times per day covering East Asia, and the operational products have been stably provided for a period of time. Currently, atmospheric aerosol pollution is a major concern in China. H8/AHI aerosol products with a high temporal resolution are helpful for real-time monitoring of subtle aerosol variation. However, the H8/AHI aerosol optical thickness (AOT) product has been updated three times since its launch, and the evaluation of this dataset is currently rare. In order to validate its accuracy, this study compared the H8/AHI Level-3 (L3) hourly AOT products of all versions with measurements obtained from eleven sunphotometer sites loc...
This paper presents a new algorithm to retrieve the aerosol optical depth (AOD) from a Himawari-8 Ad...
Aerosols, particulate matters and air pollution are significant atmospheric issues in the Southeast ...
Persistent high aerosol loadings together with extremely high population densities have raised seri...
The geostationary earth orbit satellite—Himawari-8 loaded with the Advanced Himawari Imager (A...
This study conducted the first comprehensive assessment of the aerosol optical depth (AOD) product r...
A provisional surface reflectance (SR) product from the Advanced Himawari Imager (AHI) on-board the ...
Satellite cloud detection is essential for the downstream cloud and aerosol retrievals. However, the...
Monitoring fine particulate matter with diameters of less than 2.5 μm (PM2.5) is a critical endeavor...
Persistent high aerosol loadings together with extremely high population densities have raised serio...
In this study, we use sunphotometer (AERONET) data as reference to evaluate MODIS, Himawari-08, and ...
Himawari-8, a next-generation geostationary meteorological satellite, was successfully launched by t...
In this study, simple dust detection and intensity estimation methods using Himawari-8 Advanced Hima...
In this study, simple dust detection and intensity estimation methods using Himawari-8 Advanced Hima...
For nearly 2 decades we have been quantitatively observing the Earth's aerosol system from space at ...
Satellite-derived aerosol products provide long-term and large-scale observations for analysing aero...
This paper presents a new algorithm to retrieve the aerosol optical depth (AOD) from a Himawari-8 Ad...
Aerosols, particulate matters and air pollution are significant atmospheric issues in the Southeast ...
Persistent high aerosol loadings together with extremely high population densities have raised seri...
The geostationary earth orbit satellite—Himawari-8 loaded with the Advanced Himawari Imager (A...
This study conducted the first comprehensive assessment of the aerosol optical depth (AOD) product r...
A provisional surface reflectance (SR) product from the Advanced Himawari Imager (AHI) on-board the ...
Satellite cloud detection is essential for the downstream cloud and aerosol retrievals. However, the...
Monitoring fine particulate matter with diameters of less than 2.5 μm (PM2.5) is a critical endeavor...
Persistent high aerosol loadings together with extremely high population densities have raised serio...
In this study, we use sunphotometer (AERONET) data as reference to evaluate MODIS, Himawari-08, and ...
Himawari-8, a next-generation geostationary meteorological satellite, was successfully launched by t...
In this study, simple dust detection and intensity estimation methods using Himawari-8 Advanced Hima...
In this study, simple dust detection and intensity estimation methods using Himawari-8 Advanced Hima...
For nearly 2 decades we have been quantitatively observing the Earth's aerosol system from space at ...
Satellite-derived aerosol products provide long-term and large-scale observations for analysing aero...
This paper presents a new algorithm to retrieve the aerosol optical depth (AOD) from a Himawari-8 Ad...
Aerosols, particulate matters and air pollution are significant atmospheric issues in the Southeast ...
Persistent high aerosol loadings together with extremely high population densities have raised seri...