Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research focused on Environmental science and Aerosol, with related work in Particulates, AERONET, Satellite. Notable publications include 'Global Estimates of Fine Particulate Matter using a Combined Geophysical-Statistical Method with Information from Satellites, Models, and Monitors', 'Improving our fundamental understanding of the role of aerosol−cloud interactions in the climate system', and 'Global Estimates and Long-Term Trends of Fine Particulate Matter Concentrations (1998–2018)'.
Multifaceted aerosol effects on precipitation
Health and Safety Effects of Airborne Soil Dust in the Americas and Beyond
An analysis of degradation in low-cost particulate matter sensors
A review of coarse mineral dust in the Earth system
Opportunistic experiments to constrain aerosol effective radiative forcing
Calibrating networks of low-cost air quality sensors
A review of coarse mineral dust in the Earth system
Monthly Global Estimates of Fine Particulate Matter and Their Uncertainty
Potential impact of aerosols on convective clouds revealed by Himawari-8 observations over different terrain types in eastern China
Spatial variation of fine particulate matter levels in Nairobi before and during the COVID-19 curfew: implications for environmental justice
Health and Safety Effects of Airborne Soil Dust in the Americas and Beyond
Opportunistic Experiments to Constrain Aerosol Effective Radiative Forcing
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
Introducing the 4.4 km spatial resolution Multi-Angle Imaging SpectroRadiometer (MISR) aerosol product
Air quality monitoring using mobile low-cost sensors mounted on trash-trucks: Methods development and lessons learned
Large global variations in measured airborne metal concentrations driven by anthropogenic sources
Combining low-cost, surface-based aerosol monitors with size-resolved satellite data for air quality applications
Potential impact of aerosols on convective clouds revealed by Himawari-8 observations over different terrain types in eastern China
Merging regional and global AOD records from 15 available satellite products
Global Sources of Fine Particulate Matter: Interpretation of PM<sub>2.5</sub> Chemical Composition Observed by SPARTAN using a Global Chemical Transport Model
Daily ambient air pollution metrics for five cities: Evaluation of data-fusion-based estimates and uncertainties
Global Estimates of Fine Particulate Matter using a Combined Geophysical-Statistical Method with Information from Satellites, Models, and Monitors
Improving our fundamental understanding of the role of aerosol−cloud interactions in the climate system
Variation in global chemical composition of PM <sub>2.5</sub> :emerging results from SPARTAN
SPARTAN: a global network to evaluate and enhance satellite-based estimates of ground-level particulate matter for global health applications
Improving satellite-retrieved aerosol microphysical properties using GOCART data
Global observations of aerosol-cloud-precipitation-climate interactions
Multi-decadal aerosol variations from 1980 to 2009: a perspective from observations and a global model
Satellite data of atmospheric pollution for U.S. air quality applications: Examples of applications, summary of data end-user resources, answers to FAQs, and common mistakes to avoid