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  3. On the interference of Kr during carbon isotope analysis of methane using continuous-flow combustion–isotope ratio mass spectrometry
 

On the interference of Kr during carbon isotope analysis of methane using continuous-flow combustion–isotope ratio mass spectrometry

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BORIS DOI
10.7892/boris.58938
Publisher DOI
10.5194/amt-6-1425-2013
Description
Stable carbon isotope analysis of methane (delta C-13 of CH4) on atmospheric samples is one key method to constrain the current and past atmospheric CH4 budget. A frequently applied measurement technique is gas chromatography (GC) isotope ratio mass spectrometry (IRMS) coupled to a combustion-preconcentration unit. This report shows that the atmospheric trace gas krypton (Kr) can severely interfere during the mass spectrometric measurement, leading to significant biases in delta C-13 of CH4, if krypton is not sufficiently separated during the analysis. According to our experiments, the krypton interference is likely composed of two individual effects, with the lateral tailing of the doubly charged Kr-86 peak affecting the neighbouring m/z 44 and partially the m/z 45 Faraday cups. Additionally, a broad signal affecting m/z 45 and especially m/z 46 is assumed to result from scattered ions of singly charged krypton. The introduced bias in the measured isotope ratios is dependent on the chromatographic separation, the krypton-to-CH4 mixing ratio in the sample, the focusing of the mass spectrometer as well as the detector configuration and can amount to up to several per mil in delta C-13. Apart from technical solutions to avoid this interference, we present correction routines to a posteriori remove the bias.
Date of Publication
2013
Publication Type
Article
Subject(s)
500 Science > 530 Physics
Language(s)
en
Contributor(s)
Schmitt, Jochenorcid-logo
Physikalisches Institut, Klima- und Umweltphysik (KUP)
Seth, Barbara
Physikalisches Institut, Klima- und Umweltphysik (KUP)
Bock, Michael
Physikalisches Institut, Klima- und Umweltphysik (KUP)
van der Veen, C.
Möller, L.
Sapart, C. J.
Prokopiou, M.
Sowers, T.
Röckmann, T.
Fischer, Hubertusorcid-logo
Physikalisches Institut, Klima- und Umweltphysik (KUP)
Additional Credits
Physikalisches Institut, Klima- und Umweltphysik (KUP)
Series
Atmospheric Measurement Techniques (AMT)
Publisher
Copernicus Publications
ISSN
1867-1381
Access(Rights)
open.access
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