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Iron Redistribution Upon Thermokarst Processes in the Yedoma Domain
- Source :
- EPIC3Frontiers in Earth Science, 9, ISSN: 2296-6463, Frontiers in Earth Science, Vol 9 (2021), Frontiers in Earth Science, Vol. 9 (2021), Frontiers in Earth Science
- Publication Year :
- 2021
-
Abstract
- Ice-rich permafrost has been subject to abrupt thaw and thermokarst formation in the past and is vulnerable to current global warming. The ice-rich permafrost domain includes Yedoma sediments that have never thawed since deposition during the late Pleistocene and Alas sediments that were formed by previous thermokarst processes during the Lateglacial and Holocene warming. Permafrost thaw unlocks organic carbon (OC) and minerals from these deposits and exposes OC to mineralization. A portion of the OC can be associated with iron (Fe), a redox-sensitive element acting as a trap for OC. Post-depositional thaw processes may have induced changes in redox conditions in these deposits and thereby affected Fe distribution and interactions between OC and Fe, with knock-on effects on the role that Fe plays in mediating present day OC mineralization. To test this hypothesis, we measured Fe concentrations and proportion of Fe oxides and Fe complexed with OC in unthawed Yedoma and previously thawed Alas deposits. Total Fe concentrations were determined on 1,292 sediment samples from the Yedoma domain using portable X-ray fluorescence; these concentrations were corrected for trueness using a calibration based on a subset of 144 samples measured by inductively coupled plasma optical emission spectrometry after alkaline fusion (R2 = 0.95). The total Fe concentration is stable with depth in Yedoma deposits, but we observe a depletion or accumulation of total Fe in Alas deposits, which experienced previous thaw and/or flooding events. Selective Fe extractions targeting reactive forms of Fe on unthawed and previously thawed deposits highlight that about 25% of the total Fe is present as reactive species, either as crystalline or amorphous oxides, or complexed with OC, with no significant difference in proportions of reactive Fe between Yedoma and Alas deposits. These results suggest that redox driven processes during past thermokarst formation impact the present-day distribution of total Fe, and thereby the total amount of reactive Fe in Alas versus Yedoma deposits. This study highlights that ongoing thermokarst lake formation and drainage dynamics in the Arctic influences reactive Fe distribution and thereby interactions between Fe and OC, OC mineralization rates, and greenhouse gas emissions.
- Subjects :
- 010504 meteorology & atmospheric sciences
Science
Yedoma
010502 geochemistry & geophysics
Permafrost
01 natural sciences
Redox
Mineralization (biology)
Thermokarst
arctic
0105 earth and related environmental sciences
Total organic carbon
geography
geography.geographical_feature_category
Chemistry
Sediment
subarctic
carbon stabilization
Deposition (aerosol physics)
redox processes
13. Climate action
Environmental chemistry
General Earth and Planetary Sciences
thaw
permafrost
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- EPIC3Frontiers in Earth Science, 9, ISSN: 2296-6463, Frontiers in Earth Science, Vol 9 (2021), Frontiers in Earth Science, Vol. 9 (2021), Frontiers in Earth Science
- Accession number :
- edsair.doi.dedup.....a7ceb9e97e7eed0a7066c0d490375662