Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research focused on Environmental science and Aerosol, with related work in AERONET, Particulates, Satellite. Notable publications include 'Global‐scale attribution of anthropogenic and natural dust sources and their emission rates based on MODIS Deep Blue aerosol products', 'Global Estimates of Fine Particulate Matter using a Combined Geophysical-Statistical Method with Information from Satellites, Models, and Monitors', and 'Global Estimates and Long-Term Trends of Fine Particulate Matter Concentrations (1998–2018)'.
Uncertainty in aerosol–cloud radiative forcing is driven by clean conditions
Monthly Global Estimates of Fine Particulate Matter and Their Uncertainty
Global Estimates and Long-Term Trends of Fine Particulate Matter Concentrations (1998–2018)
Merging regional and global aerosol optical depth records from major available satellite products
Retrieving the global distribution of the threshold of wind erosion from satellite data and implementing it into the Geophysical Fluid Dynamics Laboratory land–atmosphere model (GFDL AM4.0/LM4.0)
AERONET Remotely Sensed Measurements and Retrievals of Biomass Burning Aerosol Optical Properties During the 2015 Indonesian Burning Season
Merging regional and global AOD records from 15 available satellite products
Global Estimates of Fine Particulate Matter using a Combined Geophysical-Statistical Method with Information from Satellites, Models, and Monitors
Multi-decadal aerosol variations from 1980 to 2009: a perspective from observations and a global model
Global‐scale attribution of anthropogenic and natural dust sources and their emission rates based on MODIS Deep Blue aerosol products
Typical types and formation mechanisms of haze in an Eastern Asia megacity, Shanghai