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Global Model Estimates of Atmospheric Al, Ca, Fe, Si, and Ti from Dust and Non-Dust Aerosols Informed by EMIT Surface Mineralogy and Evaluated Against ObservationsAtmospheric deposition of micro-nutrients like Fe has been shown to be important for ocean biogeochemistry. The largest source of atmospheric Fe and other elements (e.g., Ca, Al, Si, and Ti) is desert dust, although there are significant non-dust sources in some regions. However, past estimates of these elements have been substantially uncertain due to limited information about the composition of the desert source regions. Here we use elemental distributions estimated from new Earth Surface Mineral Dust Source Investigation (EMIT) observations, which provide mineralogical composition at the surface of the Earth based on imaging spectroscopy measurements from the International Space Station. We add in other sources of these elements (anthropogenic and natural) and compare to a compilation of available surface concentration data from stations over land and from shipborne observations. Our results suggest that the modeled distribution is similar to available observations, but discrepancies still exist in both natural desert dust regions as well as regions dominated by anthropogenic sources. Global budgets for the elements Ca, Al, Fe, Si, and Ti suggest that desert dust remains the dominant source for these elements but anthropogenic or volcanic sources are also important for these elements. Changes in elemental distributions since preindustrial times were also estimated.
Document ID
20260000023
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Natalie Mahowald ORCID
(Cornell University Ithaca, United States)
Longlei Li ORCID
(Cornell University Ithaca, United States)
María Gonçalves Ageitos ORCID
(Barcelona Supercomputing Center Barcelona, Spain)
Ron L Miller ORCID
(Goddard Institute for Space Studies New York, United States)
Carlos Pérez García‐Pando ORCID
(Barcelona Supercomputing Center Barcelona, Spain)
Paul Ginoux ORCID
(NOAA Geophysical Fluid Dynamics Laboratory Princeton, United States)
Vincenzo Obiso ORCID
(Barcelona Supercomputing Center Barcelona, Spain)
Philip G Brodrick ORCID
(Jet Propulsion Laboratory Pasadena, United States)
Roger N. Clark
(Planetary Science Institute Tucson, United States)
Karine Desboeufs
(Université Paris Cité Paris, France)
Robert O. Green ORCID
(Jet Propulsion Laboratory Pasadena, United States)
Gregory Okin ORCID
(University of California, Los Angeles Los Angeles, United States)
David R Thompson ORCID
(Jet Propulsion Laboratory Pasadena, United States)
Sagar Rathod
(University of Wisconsin-Madison Madison, WI, United States)
Esteban Gazel ORCID
(Cornell University Ithaca, United States)
Adrian Hornby
(Cornell University Ithaca, United States)
Emile Journet
(Université Paris-Est Créteil Créteil, France)
Maria Grazia Alaimo ORCID
(University of Palermo Palermo, Italy)
Célia Alves
(University of Aveiro Aveiro, Portugal)
Andres Alastuey ORCID
(Institute of Environmental Assessment and Water Research Barcelona, Spain)
Paulo Artaxo ORCID
(Universidade de São Paulo São Paulo, Brazil)
Alex R. Baker ORCID
(University of East Anglia Norwich, United Kingdom)
Francisco Barraza ORCID
(Saw Science)
Silvia Becagli ORCID
(University of Florence Florence, Italy)
Clifton S. Buck
(University of Georgia Tbilisi, Georgia)
Giulia Calzolai
(Istituto Nazionale di Fisica Nucleare Rome, Italy)
Shankararaman Chellam
(Texas A&M University - College Station College Station, TX, United States)
Ying Chen
(Fudan University Shanghai, China)
Patrick Chuang ORCID
(University of California, Santa Cruz Santa Cruz, United States)
David D. Cohen
(Australian Nuclear Science and Technology Organisation Sydney, Australia)
Cristina Colombi
(Azienda Regionale per la protezione dell'ambiente Lombardia Milan, Italy)
Evangelia Diapouli ORCID
(National Centre of Scientific Research "Demokritos" Athens, Greece)
Gaetano Dongarra
(University of Palermo Palermo, Italy)
Konstantinos Eleftheriadis ORCID
(National Centre of Scientific Research "Demokritos" Athens, Greece)
Johann Engelbrecht ORCID
(Desert Research Institute Reno, United States)
Corinne Galy-Lacaux
(University of Toulouse)
Cassandra J. Gaston ORCID
(University of Miami Coral Gables, United States)
Dario Gomez
(Comisión Nacional de Energía Atómica Buenos Aires, Argentina)
Yenny González Ramos
(Agencia Estatal de Meteorología Madrid, Spain)
Jenny Hand ORCID
(Colorado State University Fort Collins, United States)
Roy M. Harrison ORCID
(University of Birmingham Birmingham, United Kingdom)
Barak Herut
(Israel Oceanographic and Limnological Research Haifa, Israel)
Philip K. Hopke
(Clarkson University Potsdam, United States)
Zsofia Kertesz
(HUN-REN Institute for Nuclear Research Debrecen, Hungary)
Katriina Kyllönen
(Finnish Meteorological Institute Helsinki, Finland)
Fabrice Lambert
(Pontificia Universidad Católica de Chile Santiago, Chile)
Willam M. Landing
(Florida State University Tallahassee, United States)
Remi Losno ORCID
(Institut de physique du globe de Paris Paris, France)
Franco Lucarelli
(Istituto Nazionale di Fisica Nucleare Rome, Italy)
Willy Maenhaut ORCID
(Ghent University Ghent, Belgium)
Date Acquired
January 4, 2026
Publication Date
May 22, 2026
Publication Information
Publication: Global Biogeochemical Cycles
Publisher: American Geophysical Union
Volume: 40
Issue: 5
Issue Publication Date: May 1, 2026
ISSN: 0886-6236
e-ISSN: 1944-9224
Subject Category
Meteorology and Climatology
Funding Number(s)
WBS: 354554.04.02
CONTRACT_GRANT: N0NSSC20K1674
WBS: 510937.05.80.01.02
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
External Peer Committee
Keywords
aerosols
biogeochemistry