D. K. Henze
- ORCiD
- https://orcid.org/0000-0001-6431-4963
- OpenAlex ID
- https://openalex.org/A5058462310 (API record)
Associated Concepts [?]
- Environmental science
- Physics
- Geography
- Geology
- Meteorology
- Chemistry
- Organic chemistry
- Biology
- Ecology
- Atmospheric sciences
- Climatology
- Engineering
- Air quality index
- Ozone
- Aerosol
- Troposphere
- Oceanography
- Mathematics
- Astronomy
- Aerospace engineering
- Air pollution
- Quantum mechanics
- Satellite
- Computer science
Authored Works
sorted by decreasing year, and then by display-name
- The Impact of Local vs Regional Sources on Air Quality in Northern Thailand
- Sources of PM2.5-associated Health Risks in Europe and Emission-induced Changes during 2005-2015
- Simultaneous optimization of methane emissions and its oxidation chain with satellite and in-situ measurements
- Leveraging satellite-derived data and air quality modeling to characterize source profiles of climate co-benefits at the urban- and country- scale
- Joint inversion of formaldehyde and isoprene satellite observations to constrain non-methane VOC emissions: a case study during the KORUS-AQ field campaign
- How well can assimilation of geostationary trace-gas observations constrain NOx emissions in the US?
- Enhanced Integration of Health, Climate, and Air Quality Management Planning at the Urban Scale
- Trends, emissions, and characteristics of atmospheric ammonia in Korea
- Surrogates of the Adjoint and Tangent Linear Models of the Gas-Phase Chemistry in GEOS-Chem for 4D-Var Data Assimilation
- Refining Ammonia Emissions Estimates with Satellite-based Observations Using a Novel Framework and an Air Quality Model
- Modeling Methane and Ozone Precursor Emissions from Oil and Gas Production Regions during SONGNEX
- How well can inverse analyses of high-resolution satellite data resolve heterogenous methane fluxes?
- High Resolution Assimilation of Multiple Satellite Retrievals with Emissions Adjustment to Improve Air Quality Forecasting with WRF-Chem/DART
- Global methane emissions derived from two years of TROPOMI observations: Sensitivity to OH and missing sources
- Developing Near Real-time Emissions over the US during the COVID-19 Pandemic
- Comparing Domestic and Extra-Regional Contributions to Pollutant Exposures and Health Impacts in G20 Countries Through a Novel Adjoint Modeling Approach
- Assimilating remote sensing NO2 observations with WRF-Chem/DART for constraining NOx emissions and improving air quality forecasting over Colorado
- AQACF: A Platform for Air Quality Analysis, Visualization, and Prediction
Linked Co-Authors
- A. Anthony Bloom
- Brian McDonald
- Christopher W. Tessum
- Colby Francoeur
- Dylan B. Millet
- G. J. Frost
- Gabriele Pfister
- Gary Kleiman
- H. M. Worden
- J. A. de Gouw
- J. B. Gilman
- J. Peischl
- Jinkyul Choi
- Julian Marshall
- K. R. Verhulst
- Kelley C. Wells
- Laura Gallardo
- Liam Bindle
- M. C. Barth
- Matthew S. Johnson
- Meng Ling
- Muhammad Nawaz
- P. J. Rayner
- Prabir K. Patra
- Rajesh Kumar
- Shannon L. Capps
- Susan C. Anenberg
- Xueying Yu
- Yixuan Gu
Linked Collaborating Institutions
- Belgian Institute for Space Aeronomy
- Boston University, Massachusetts
- California State University, Los Angeles
- Carleton University, Canada
- Chiba University, Japan
- Drexel University, Pennsylvania
- Environment Canada
- George Washington University, Washington DC
- Jet Propulsion Laboratory
- Johns Hopkins University, Maryland
- Massachusetts Institute of Technology
- Middlebury College, Vermont
- NASA Ames Research Center
- National Center for Atmospheric Research, Colorado
- National Oceanic and Atmospheric Administration, Boulder
- Netherlands Institute for Space Research
- Stanford University, California
- University of Alabama, Huntsville
- University of Chile
- University of Colorado, Boulder
- University of Illinois, Urbana-Champaign
- University of Melbourne, Australia
- University of Minnesota, Twin Cities
- University of Washington, Seattle
- University of York, UK
- Washington University in Saint Louis, Missouri
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