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Stable Isotope Tracer & Methodology

Using 13C enriched acetate in isotope labelling incubation experiments: a note of caution

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Pages 66-73 | Received 26 Mar 2023, Accepted 09 Nov 2023, Published online: 14 Dec 2023
 

ABSTRACT

Vapour-phase fumigation with HCl is routinely used to remove inorganic carbon in preparation for the measurement of the concentration and δ13C value of organic carbon in a sample using elemental analysis coupled to an isotope ratio mass spectrometer. Acidification of the sample to be analyzed can lead to the loss of low molecular weight conjugate bases as volatile organic acids during the acidification and/or the drying steps following fumigation, through protonation of the conjugate base and volatilization. Such loss could lead to a severe bias in incubation experiments where 13C-enriched compounds such as acetate are used to trace reaction pathways or metabolites in a cultivation medium or a mesocosm for example. In this work, we enriched a carbonate-free freshwater sediment with 1-13C sodium acetate by 5, 10 and 20 ‰ relative to the δ13C value of the natural organic carbon of the sediment, and then tested the effects of HCl fumigation, drying at 50 °C and drying at room temperature, alone or in combination, on the measured δ13C values. We found that fumigation and drying at 50 °C, alone or in combination, both lead to the loss of the majority of the 13C-enriched acetate spike.

GRAPHICAL ABSTRACT

Disclosure statement

No potential conflict of interest was reported by the author(s).

Additional information

Funding

This research was made possible thanks to financial support provided by Natural Science and Engineering Research Council of Canada (Grant Number RGPIN-2018-05080), the Canadian Foundation for Innovation (Grant Number 7548), the Fonds de Recherche du Québec – Nature and Technologies through a strategic network grant to Geotop research centre, and Concordia University.

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