| Titel: |
Titel:
Harmonisation of methane isotope ratio measurements from different laboratories using atmospheric samples
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| Autoren: |
Autoren:
Dasgupta, Bibhasvata, Utrecht University, Utrecht, THE NETHERLANDS, ORCID: 0000-0002-9488-4518
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| Beitragende: |
Beitragende:
HostingInstitution: Physikalisch-Technische Bundesanstalt (PTB), ISNI: 0000 0001 2186 1887
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| Seiten: |
Seiten:
17
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| Sprachen: |
Sprachen:
en
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| DOI: |
DOI:
10.7795/120.20251126G
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| Art der Ressource: |
Art der Ressource:
PTB: Zeitschriftenartikel,
DINI: Article,
DataCite: JournalArticle
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| Verlag: |
Verlag:
Copernicus Publications
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| Rechte: |
Rechte:
https://creativecommons.org/licenses/by/4.0/CC BY 4.0 |
| Beziehungen: |
Beziehungen:
IsIdenticalTo: DOI 10.5194/amt-18-6591-2025IsPartOf: ISSN 1867-8548 |
| Datumsangaben: |
Datumsangaben:
Verfügbar:
2025-11-27
Herausgegeben: 2025-11-17 |
| Datei: |
Datei:
Datei herunterladen
(application/pdf)
4.1 MB
MD5 Prüfsumme: 0f02ffa938545ac86299f46a27566e60 SHA256 Prüfsumme: f9629cb9b572717e4ff4719135dee1c92a2a85cec61a63ff335851d36015635d |
| Stichwörter: |
Stichwörter:
Isotope Ratio ;
Methane ;
Isotopic Signature
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| Zusammenfassung: |
Zusammenfassung:
Establishing interlaboratory compatibility among measurements of stable isotope ratios of atmospheric methane (δ 13C-CH₄ and δD-CH4) is challenging. Significant offsets are common because laboratories have different ties to the VPDB or SMOW-SLAP scales. Umezawa et al. (2018) surveyed numerous comparison efforts for CH₄ isotope measurements conducted from 2003 to 2017 and found scale offsets of up to 0.5 ‰ for δ¹³C-CH₄ and 13 ‰ for δD-CH₄ between laboratories. This exceeds the World Meteorological Organisation Global Atmospheric Watch (WMO-GAW) network compatibility targets of 0.02 ‰ and 1 ‰ considerably. We employ a method to establish scale offsets between laboratories using their reported CH4 isotope measurements on atmospheric samples. Our study includes data from eight laboratories with experience in high-precision isotope ratio mass spectrometry (IRMS) measurements for atmospheric CH₄. The analysis relies exclusively on routine atmospheric measurements conducted by these laboratories at high-latitude stations in the Northern and Southern Hemispheres, where we assume each measurement represents sufficiently well-mixed air at the latitude for direct comparison. We use two methodologies for interlaboratory comparisons: (I) assessing differences between time-adjacent observation data and (II) smoothing the observed data using polynomial and harmonic functions before comparison. The results of both methods are consistent, and with a few exceptions, the overall average offsets between laboratories align well with those reported by Umezawa et al. (2018). This indicates that interlaboratory offsets remain robust over multi-year periods. The evaluation of routine measurements allows us to calculate the interlaboratory offsets from hundreds, in some cases thousands of measurements. Therefore, the uncertainty in the mean interlaboratory offset is not limited by the analytical error of a single analysis but by real atmospheric variability between the sampling dates and stations. Using the same method, we assess this uncertainty by investigating measurements from four high-latitude sites analysed by the INSTAAR laboratory. After applying the derived interlaboratory offsets, we present a harmonised time series for δ¹³C-CH₄ and δD-CH₄ at high northern and southern latitudes, covering the period from 1988 to 2023.
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| Zitat: |
Zitat:
Dasgupta, B., Menoud, M., van der Veen, C., Levin, I., Veidt, C., Moossen, H., Englund Michel, S., Sperlich, P., Morimoto, S., Fujita, R., Umezawa, T., Platt, S., Zwaaftink, C. G., Myhre, C. L., Fisher, R., Lowry, D., Nisbet, E. G., France, J., Woolley Maisch, C., Brailsford, G., Moss, R., Goto, D., Pandey, S., Houweling, S., Warwick, N., and Röckmann, T.: Harmonisation of methane isotope ratio measurements from different laboratories using atmospheric samples, Atmos. Meas. Tech., 18, 6591–6607, https://doi.org/10.5194/amt-18-6591-2025, 2025.
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| Förderung: |
Förderung:
European Commission (EC), ISNI: 0000 0001 2162 673X, Grant Title: Metrology for European emissions verification on methane isotopes (isoMET), Grant Number: EPM 21GRD04
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-OAR