Abstract

Assessing changes in the marine carbon cycle arising from anthropogenic CO2 emissions requires a detailed understanding of the carbonate system's natural variability. Coastal ecosystems vary over short spatial and temporal scales, so their dynamics are not well described by long-term and broad regional averages. A year-long time series of pCO2, temperature, salinity, and currents is used to quantify the high-frequency variability of the carbonate system at the mouth of the Bay of Fundy, Nova Scotia. The seasonal cycle of pCO2 is modulated by a diel cycle that is larger in summer than in winter and a tidal contribution that is primarily M2, with amplitude roughly half that of the diel cycle throughout the year. The interaction between tidal currents and carbonate system variables leads to lateral transport by tidal pumping, which moves alkalinity and dissolved inorganic carbon (DIC) out of the bay, opposite to the mean flow in the region, and constitutes a new feature of how this strongly tidal region connects to the larger Gulf of Maine and northwest Atlantic carbon system. These results suggest that tidal pumping could substantially modulate the coastal ocean's response to global ocean acidification in any region with large tides and spatial variation in biological activity, requiring that high-frequency variability be accounted for in assessments of carbon budgets of coastal regions.

Details

Title
High-frequency variability of CO2 in Grand Passage, Bay of Fundy, Nova Scotia
Author
Horwitz, Rachel M 1 ; Hay, Alex E 2 ; Burt, William J 3 ; Cheel, Richard A 2 ; Salisbury, Joseph 4 ; Helmuth, Thomas 5 

 Dalhousie University, Department of Oceanography, Halifax, Nova Scotia, Canada; currently at: Bedford Institute of Oceanography, Fisheries and Oceans Canada, Dartmouth, Nova Scotia, Canada 
 Dalhousie University, Department of Oceanography, Halifax, Nova Scotia, Canada 
 Dalhousie University, Department of Oceanography, Halifax, Nova Scotia, Canada; currently at: University of British Columbia, Department of Earth, Ocean and Atmospheric Sciences, Vancouver, British Columbia, Canada 
 University of New Hampshire, Institute for the Study of Earth, Oceans, and Space, Durham, New Hampshire, USA 
 Dalhousie University, Department of Oceanography, Halifax, Nova Scotia, Canada; currently at: Helmholtz Centre Geesthacht, Institute of Coastal Research, Gessthacht, Germany 
Pages
605-616
Publication year
2019
Publication date
2019
Publisher
Copernicus GmbH
ISSN
17264170
e-ISSN
17264189
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2174197999
Copyright
© 2019. This work is published under https://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.