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Tropical tropospheric ozone trends (1998 to 2023): New perspectives from SHADOZ, IAGOS and OMI/MLS observations

  • Anne M. Thompson*
  • , Ryan M. Stauffer
  • , Debra E. Kollonige
  • , Jerald R. Ziemke
  • , Bryan J. Johnson
  • , Gary A. Morris
  • , Patrick Cullis
  • , María Cazorla
  • , Jorge Andres Diaz
  • , Ankie Piters
  • , Igor Nedeljkovic
  • , Truus Warsodikromo
  • , Francisco Raimundo Silva
  • , E. Thomas Northam
  • , Patrick Benjamin
  • , Thumeka Mkololo
  • , Tshidi Machinini
  • , Christian Félix
  • , Gonzague Romanens
  • , Syprose Nyadida
  • Jérôme Brioude, Stéphanie Evan, Jean Marc Metzger, Ambun Dindang, Yuzaimi B. Mahat, Mohan Kumar Sammathuria, Norazura Binti Zakaria, Ninong Komala, Shin Ya Ogino, Nguyen Thi Quyen, Francis S. Mani, Miriama Vuiyasawa, David Nardini, Matthew Martinsen, Darryl T. Kuniyuki, Katrin Müller, Pawel Wolff, Bastien Sauvage
*Autor correspondiente de este trabajo
  • NASA Goddard Space Flight Center
  • University of Maryland, Baltimore County
  • Science Systems and Applications, Inc.
  • Morgan State University
  • National Oceanic and Atmospheric Administration
  • University of Costa Rica
  • Royal Netherlands Meteorological Institute
  • Meteorological Service of Suriname
  • Brazilian National Institute of Space Research (INPE)
  • Inc.
  • South African Weather Service
  • MeteoSwiss
  • Kenya Meteorological Department
  • Université de La Réunion
  • Malaysian Meteorological Department
  • National Research and Innovation Agency Republic of Indonesia
  • Japan Agency for Marine-Earth Science and Technology
  • Viet Nam Meteorological and Hydrological Administration
  • University of the South Pacific
  • University of Hawaiʻi at Mānoa
  • University of Colorado at Boulder
  • Alfred Wegener Institute Helmholtz Centre for Polar and Marine Research
  • CNRS and Université Paul Sabatier
  • ECMWF
  • Laboratoire d'Aérologie Observatoire Midi-Pyrénées

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

4 Citas (Scopus)

Resumen

Tropospheric ozone trends are important indicators of climate forcing and surface pollution, yet relevant satellite observations are too uncertain for assessments. The assessment project TOAR-II has used multi-instrument, ground-based data for global trends over 2000-2022 (Van Malderen et al., 2025a, b). For the tropics, trends are derived from SHADOZ ozonesonde profiles (Thompson et al., 2021, "T21"; Stauffer et al., 2024) or combinations of satellite, SHADOZ and IAGOS aircraft measurements (Gaudel et al., 2024). We extend T21 that covered 1998-2019, analyzing SHADOZ data at five sites with a Multiple Linear Regression (MLR) model for 1998-2023 and reporting trends for two free-tropospheric (FT) segments, the lowermost stratosphere and the total tropospheric column (TrCOsonde). Trends for the Aura period, 2005-2023, are computed from OMI/MLS TrCOsatellite. We find the following: Extending SHADOZ analyses 4 years shows little change from T21; TrCOsonde trends are small (0.5-1 DU/decade) except over SE Asia. Annual trends for TrCOsonde and OMI/MLS TrCOsatellite agree within uncertainties at four of five sites, with the largest differences at Samoa. Sensitivity tests show the following: (a) Adding thousands of FT IAGOS profiles to SHADOZ yields little change in trends; SHADOZ sampling is sufficient. (b) Quantile Regression (QR) and MLR median trends are both near zero, but QR captures extremes (5th percentile, 95th percentile) with changes up to ±1 DU/decade (p< 0.10). (c) Twelve-year analyses for trends lead to uncertainty changes too large for an assessment. This study and Van Malderen et al. (2025a, b) provide the most reliable TOAR-II trends to date: over the past ∼ 25 years, tropical FT ozone changes have been modest, ∼ (-3-+3) %/decade, except over SE Asia.

Idioma originalInglés
Páginas (desde-hasta)18475-18507
Número de páginas33
PublicaciónAtmospheric Chemistry and Physics
Volumen25
N.º24
DOI
EstadoPublicada - 19 dic 2025

ODS de las Naciones Unidas

Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

  1. ODS 13: Acción por el clima
    ODS 13: Acción por el clima

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