Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research focused on Environmental science and Mineral dust, with related work in Atmospheric sciences, Aerosol, Atmosphere (unit). Notable publications include 'Global‐scale attribution of anthropogenic and natural dust sources and their emission rates based on MODIS Deep Blue aerosol products', 'Global air quality and climate', and 'AeroCom phase III multi-model evaluation of the aerosol life cycle and optical properties using ground- and space-based remote sensing as well as surface in situ observations'.
Fallowed agricultural lands dominate anthropogenic dust sources in California
On-orbit calibration and performance of the EMIT imaging spectrometer
Where Dust Comes From: Global Assessment of Dust Source Attributions With AeroCom Models
AeroCom phase III multi-model evaluation of the aerosol life cycle and optical properties using ground- and space-based remote sensing as well as surface in situ observations
Quantifying the range of the dust direct radiative effect due to source mineralogy uncertainty
Mineral dust cycle in the Multiscale Online Nonhydrostatic AtmospheRe CHemistry model (MONARCH) Version 2.0
Shutting down dust emission during the middle Holocene drought in the Sonoran Desert, Arizona, USA
The Earth Surface Mineral Dust Source Investigation: An Earth Science Imaging Spectroscopy Mission
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)
Disproving the Bodélé Depression as the Primary Source of Dust Fertilizing the Amazon Rainforest
Multi-model evaluation of aerosol optical properties in the AeroCom phase III Control experiment, using ground and space based columnar observations from AERONET, MODIS, AATSR and a merged satellite product as well as surface in-situ observations from GAW sites
Global‐scale attribution of anthropogenic and natural dust sources and their emission rates based on MODIS Deep Blue aerosol products
Global air quality and climate
Application of the CALIOP layer product to evaluate the vertical distribution of aerosols estimated by global models: AeroCom phase I results