Articles | Volume 18, issue 12
https://doi.org/10.5194/amt-18-2701-2025
https://doi.org/10.5194/amt-18-2701-2025
Research article
 | 
25 Jun 2025
Research article |  | 25 Jun 2025

Triple oxygen isotope composition of CO2 in the upper troposphere and stratosphere

Getachew Agmuas Adnew, Gerbrand Koren, Neha Mehendale, Sergey Gromov, Maarten Krol, and Thomas Röckmann

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Cited articles

Adcock, K. E., Fraser, P. J., Hall, B. D., Langenfelds, R. L., Lee, G., Montzka, S. A., Oram, D. E., Röckmann, T., Stroh, F., Sturges, W. T., Vogel, B., and Laube, J. C.: Aircraft-based observations of ozone-depleting substances in the upper troposphere and lower stratosphere in and above the Asian summer monsoon, J. Geophys. Res.-Atmos., 126, e2020JD033137, https://doi.org/10.1029/2020JD033137, 2021. a, b, c, d
Adnew, G. A.: The effect of photosynthetic gas exchange on Δ17O of atmospheric CO2, PhD thesis, Utrecht University, 1–174, https://doi.org/10.33540/412, ISBN: 978-90-393-7344-6, 2020. a
Adnew, G. A.: Triple oxygen isotope composition of CO2 in the upper troposphere and stratosphere, Version v1, Zenodo [data set], https://doi.org/10.5281/zenodo.15665058, 2025. a
Adnew, G. A. and Röckmann, T.: Urgent need for Δ17O (CO2) standardization, in: the 21st expert meeting on Greenhouse gas measurement techniques (GGMT), Wageningen, The Netherlands, 19–21 September 2022, ICOS ERIC – Carbon Portal, https://doi.org/10.18160/JCR1-2EBQ, 2023. a, b
Adnew, G. A., Hofmann, M. E. G., Paul, D., Laskar, A., Surma, J., Albrecht, N., Pack, A., Schwieters, J., Koren, G., Peters, W., and Röckmann, T.: Determination of the triple oxygen and carbon isotopic composition of CO2 from atomic ion fragments formed in the ion source of the 253 Ultra High‐Resolution Isotope Ratio Mass Spectrometer, Rapid Commun. Mass Sp., 33, 1363–1380, 2019. a, b, c
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Short summary
This study presents high-precision measurements of ∆′17O(CO2). Key findings include the extension of the N2O–∆′17O correlation to the upper troposphere and the identification of significant differences in the N2O–∆′17O slope in StratoClim samples. Additionally, the ∆′17O measurements are used to estimate global stratospheric production and surface removal of ∆′17O, providing an independent estimate of global vegetation CO2 exchange.
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