Article
 

Storm-induced upwelling of high pCO2 waters onto the continental shelf of the western Arctic Ocean and implications for carbonate mineral saturation states

Public Deposited

Downloadable Content

Download PDF
https://ir.library.oregonstate.edu/concern/articles/0k225c71r

Descriptions

Attribute NameValues
Alternative Title
Creator
Abstract
  • The carbon system of the western Arctic Ocean is undergoing a rapid transition as sea ice extent and thickness decline. These processes are dynamically forcing the region, with unknown consequences for CO2 fluxes and carbonate mineral saturation states, particularly in the coastal regions where sensitive ecosystems are already under threat from multiple stressors. In October 2011, persistent wind-driven upwelling occurred in open water along the continental shelf of the Beaufort Sea in the western Arctic Ocean. During this time, cold (<-1.2 degrees C), salty (>32.4) halocline water-supersaturated with respect to atmospheric CO2 (pCO(2) > 550 mu atm) and undersaturated in aragonite (Omega(aragonite) < 1.0) was transported onto the Beaufort shelf. A single 10-day event led to the outgassing of 0.18-0.54 Tg-C and caused aragonite undersaturations throughout the water column over the shelf. If we assume a conservative estimate of four such upwelling events each year, then the annual flux to the atmosphere would be 0.72-2.16 Tg-C, which is approximately the total annual sink of CO2 in the Beaufort Sea from primary production. Although a natural process, these upwelling events have likely been exacerbated in recent years by declining sea ice cover and changing atmospheric conditions in the region, and could have significant impacts on regional carbon budgets. As sea ice retreat continues and storms increase in frequency and intensity, further outgassing events and the expansion of waters that are undersaturated in carbonate minerals over the shelf are probable. Citation: Mathis, J. T., et al. (2012), Storm-induced upwelling of high pCO(2) waters onto the continental shelf of the western Arctic Ocean and implications for carbonate mineral saturation states, Geophys. Res. Lett., 39, L07606, doi:10.1029/2012GL051574
  • Keywords: Circulation, Impact, Sea, Variability, Fluxes, Transport
Resource Type
DOI
Date Available
Date Issued
Citation
  • Jeremy T. Mathis, Matthew M. Elliot, Jessica N. Cross, Stacey C. Reisdorph, Frank Bahr, Jamie Morison, . . . . (2012). Storm-induced upwelling of high pCO2 waters onto the continental shelf of the western arctic ocean and implications for carbonate mineral saturation states. Geophysical Research Letters, 39(7) doi: 10.1029/2012GL051574
Journal Title
Journal Volume
  • 39
Journal Issue/Number
  • 7
Rights Statement
Funding Statement (additional comments about funding)
  • Funding for this work was provided by the National Science Foundation (ARC1041102 – JTM, OPP0856244-RSP, and ARC1040694- LWJ), the National Oceanic and Atmospheric Administration (CIFAR11021- RHB) and the West Coast & Polar Regions Undersea Research Center (POFP00983 – CLM and JM).
Publisher
Peer Reviewed
Language
Replaces

Relationships

Parents:

This work has no parents.

Items