Leakage of old carbon dioxide from a major river system in the Canadian Arctic

Author:

Dasari Sanjeev1ORCID,Garnett Mark H2ORCID,Hilton Robert G1ORCID

Affiliation:

1. Department of Earth Sciences, University of Oxford , Oxford OX1 3AN , UK

2. NEIF Radiocarbon Laboratory, SUERC , Rankine Avenue , East Kilbride G75 0QF, UK

Abstract

Abstract The Canadian Arctic is warming at an unprecedented rate. Warming-induced permafrost thaw can lead to mobilization of aged carbon from stores in soils and rocks. Tracking the carbon pools supplied to surrounding river networks provides insight on pathways and processes of greenhouse gas release. Here, we investigated the dual-carbon isotopic characteristics of the dissolved inorganic carbon (DIC) pool in the main stem and tributaries of the Mackenzie River system. The radiocarbon (14C) activity of DIC shows export of “old” carbon (2,380 ± 1,040 14C years BP on average) occurred during summer in sampling years. The stable isotope composition of river DIC implicates degassing of aged carbon as CO2 from riverine tributaries during transport to the delta; however, information on potential drivers and fluxes are still lacking. Accounting for stable isotope fractionation during CO2 loss, we show that a large proportion of this aged carbon (60 ± 10%) may have been sourced from biospheric organic carbon oxidation, with other inputs from carbonate weathering pathways and atmospheric exchange. The findings highlight hydrologically connected waters as viable pathways for mobilization of aged carbon pools from Arctic permafrost soils.

Funder

Aurora Research Institute

Inuvik

Gwich’in Tribal Council

Publisher

Oxford University Press (OUP)

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