Permafrost Organic Carbon Mobilization From the Watershed to the Colville River Delta: Evidence From 14 C Ramped Pyrolysis and Lignin Biomarkers

The deposition of terrestrial-derived permafrost particulate organic carbon (POC) has been recorded in major Arctic river deltas. However, associated transport pathways of permafrost POC from the watershed to the coast have not been well constrained. Here we utilized a combination of ramped pyrolysi...

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Bibliographic Details
Main Authors: Zhang, Xiaowen, Bianchi, Thomas S., Cui, Xingqian, Rosenheim, Brad E., Ping, Chien-Lu, Hanna, Andrea J. M., Kanevskiy, Mikhail, Schreiner, Kathryn M., Allison, Mead A.
Format: Article in Journal/Newspaper
Language:unknown
Published: Digital Commons @ University of South Florida 2017
Subjects:
Ice
Online Access:https://digitalcommons.usf.edu/msc_facpub/2428
https://digitalcommons.usf.edu/cgi/viewcontent.cgi?article=3462&context=msc_facpub
Description
Summary:The deposition of terrestrial-derived permafrost particulate organic carbon (POC) has been recorded in major Arctic river deltas. However, associated transport pathways of permafrost POC from the watershed to the coast have not been well constrained. Here we utilized a combination of ramped pyrolysis-oxidation radiocarbon analysis (RPO 14C) along with lignin biomarkers, to track the linkages between soils and river and delta sediments. Surface and deep soils showed distinct RPO thermographs which may be related to degradation and organo-mineral interaction. Soil material in the bed load of the river channel was mostly derived from deep old permafrost. Both surface and deep soils were transported and deposited to the coast. Hydrodynamic sorting and barrier island protection played important roles in terrestrial-derived permafrost POC deposition near the coast. On a large scale, ice processes (e.g., ice gauging and strudel scour) and ocean currents controlled the transport and distribution of permafrost POC on the Beaufort Shelf.