Global emissions and abundances of chemically and radiatively important trace gases from the AGAGE network

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ID: 311655
2025
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Abstract
Abstract. Measurements from the Advanced Global Atmospheric Gases Experiment (AGAGE) combined with a global 12-box model of the atmosphere have long been used to estimate global emissions and surface mean mole fraction trends of atmospheric trace gases. Here, we present annually updated estimates of these global emissions and mole fraction trends for 42 compounds through 2023 measured by the AGAGE network, including chlorofluorocarbons, hydrochlorofluorocarbons, hydrofluorocarbons, perfluorocarbons, sulfur hexafluoride, nitrogen trifluoride, methane, nitrous oxide, and selected other compounds. The data sets are available at https://doi.org/10.5281/zenodo.15372480 (Western et al., 2025). We describe the methodology to derive global mole fraction and emissions trends, which includes the calculation of semihemispheric monthly mean mole fractions, the mechanics of the 12-box model and the inverse method that is used to estimate emissions from the observations and model. Finally, we present examples of the emissions and mole fraction data sets for the 42 compounds.
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l2025globalemissionsandab Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors L. Western; M. Rigby; Jens Mühle; P. Krummel; C. Lunder; Simon O’Doherty; Stefan Reimann; M. Vollmer; D. Young; Ben Adam; P. Fraser; A. Ganesan; C. Harth; O. Hermansen; Jooil Kim; R. Langenfelds; Zoë M. Loh; B. Mitrevski; Joseph R. Pitt; P. Salameh; Roland Schmidt; Kieran M. Stanley; A. Stavert; H. Wang; Ray F. Weiss; Ronald G. Prinn
Journal earth system science data
Year 2025
DOI
10.5194/essd-17-6557-2025
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