Jordan L. Schnell
- ORCiD
- https://orcid.org/0000-0002-4072-4033
- OpenAlex ID
- https://openalex.org/A5036721762 (API record)
Associated Concepts [?]
- Geography
- Physics
- Environmental science
- Meteorology
- Geology
- Biology
- Ecology
- Chemistry
- Organic chemistry
- Atmospheric sciences
- Climatology
- Ozone
- Oceanography
- Air quality index
- Climate change
- Quantum mechanics
- Engineering
- Air pollution
- Computer science
Authored Works
sorted by decreasing year, and then by display-name
- Towards the next generation of air quality forecast models with NOAA's High-Resolution Rapid-Refresh model coupled to chemistry (HRRR-Chem)
- Neighborhood-Scale Air Quality and Health Impacts from EV Adoption in the U.S. Midwest
- Neighborhood-Scale Air Quality and Health Impacts Associated with Electrifying Heavy-Duty Vehicles in the U.S. Midwest
- MELODIES MONET - A New Community Diagnostic Tool for Evaluating Air Quality and Atmospheric Chemistry Models Against Observations
- High-Resolution Smoke Simulation within NOAA's Rapid-Refresh Forecasting System: Verification for the 2019 Fire Season Using the FIREX-AQ Data
- Forecasting Smoke Transport and Smoke-Weather Interactions using NOAA's High-Resolution Coupled Numerical Weather Prediction Models
- Spatial Variation of Surface O3 Responses to Drought over the Contiguous United States During Summertime: Role of Precursor Emissions and Ozone Chemistry
- Impact of FireLab/FIREX-AQ Fuel Burned Amounts and Emission Factors on Pyrogenic Ozone and Fine Particulate Matter Simulated by a Regional Chemical Model
- Experimental air quality forecasting with the Rapid-Refresh model coupled to chemistry (RAP-Chem)
- Evaluation of High Resolution Rapid Refresh-Smoke (HRRR-Smoke) Aerosol Optical Depth forecasts with AERONET Observations during the 2020 US Fire Season
- Constraining the Climate and Air Quality Co-benefits of an LED Lighting Transition
- Assessing Air Quality Co-Benefits and Tradeoffs of Sustainable Climate Solutions
- Air Quality Benefits and Tradeoffs from 30% Light-Duty Vehicle Electrification over the Midwest-Great Lakes Region
- A Multi-platform Approach to Characterizing and Mitigating Urban Air Quality in Chicago
Linked Co-Authors
- A. J. Soja
- A. M. Middlebrook
- Anastasia Montgomery
- Barry Baker
- Brian McDonald
- C. Warneke
- Chelsea E. Stockwell
- Christine Wiedinmyer
- Daniel E. Horton
- Elizabeth B. Wiggins
- Emily Grubert
- Emily M. Gargulinski
- Eric James
- Fangjun Li
- G. J. Frost
- Georgios I. Gkatzelis
- J. M. Roberts
- Joseph B. Olson
- L. K. Emmons
- Laura H. Thapa
- M. Béla
- Matthew M. Coggon
- Meng Ling
- Patrick Campbell
- Pedro Campuzano‐Jost
- Rebecca R. Buchholz
- Siyuan Wang
- Susan C. Anenberg
- W. M. Angevine
- Xiaoyang Zhang
- Yuxuan Wang
Linked Collaborating Institutions
- California Institute of Technology
- Colorado State University
- George Washington University, Washington DC
- NASA Langley Research Center
- NOAA Center for Satellite Applications and Research
- NOAA Office of Oceanic and Atmospheric Research
- National Center for Atmospheric Research, Colorado
- National Oceanic and Atmospheric Administration, Boulder
- National Oceanic and Atmospheric Administration, Washington
- Northwestern University
- Rice University, Texas
- South Dakota State University
- Stanford University, California
- U.S. Department of Agriculture
- University of California, Berkeley
- University of California, Irvine
- University of California, Los Angeles
- University of Colorado, Boulder
- University of Houston, Texas
- University of Notre Dame, Indiana
- University of Wisconsin, Madison
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