Carbon Cycling in Canadian Coastal Waters: Process Studies of the Scotian Shelf and the Southeastern Beaufort Sea

PhD Thesis Much research has been devoted to understanding the ocean carbon cycle because of its prominent role in controlling global climate. Coastal oceans remain a source of uncertainty in global ocean carbon budgets due to their individual characteristics and their high spatial and temporal vari...

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Main Author: Shadwick, Elizabeth Henderson
Other Authors: Department of Oceanography, Doctor of Philosophy, Dr. Nicholas R. Bates, Dr. Daniel E. Kelley, Dr. Kumiko Azetsu-Scott, Dr. Katja Fennel, Dr. Jonathan Grant, Dr. Jinyu Sheng, Dr. Helmuth Thomas, Not Applicable, Yes
Language:English
Published: 2010
Subjects:
Online Access:http://hdl.handle.net/10222/13107
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spelling ftdalhouse:oai:DalSpace.library.dal.ca:10222/13107 2024-06-02T07:54:58+00:00 Carbon Cycling in Canadian Coastal Waters: Process Studies of the Scotian Shelf and the Southeastern Beaufort Sea Shadwick, Elizabeth Henderson Department of Oceanography Doctor of Philosophy Dr. Nicholas R. Bates Dr. Daniel E. Kelley Dr. Kumiko Azetsu-Scott Dr. Katja Fennel Dr. Jonathan Grant Dr. Jinyu Sheng Dr. Helmuth Thomas Not Applicable Yes 2010-10-14T12:11:05Z http://hdl.handle.net/10222/13107 en_US eng http://hdl.handle.net/10222/13107 Inorganic carbon marine biogeochemistry air-sea CO2 flux ocean carbon cycle 2010 ftdalhouse 2024-05-06T11:40:24Z PhD Thesis Much research has been devoted to understanding the ocean carbon cycle because of its prominent role in controlling global climate. Coastal oceans remain a source of uncertainty in global ocean carbon budgets due to their individual characteristics and their high spatial and temporal variability. Recent attempts to establish general patterns suggest that temperate and high-latitude coastal oceans act as sinks for atmospheric carbon dioxide (CO2). In this thesis, carbon cycling in two Canadian coastal ocean regions is investigated, and the uptake of atmospheric CO2 is quantified. A combination of ship-board measurements and highly temporally resolved data from an autonomous mooring was used to quantify the seasonal to multi-annual variability in the inorganic carbon system in the Scotian Shelf region of the northwestern Atlantic for the first time. The Scotian Shelf, unlike other shelf seas at similar latitude, acts as a source of CO2 to the atmosphere, with fluxes varying over two orders of magnitude in space and time between 1999 and 2008. The first observations of the inorganic carbon system in the Amundsen Gulf region of the southern Beaufort Sea, covering the full annual cycle, are also presented. Air-sea CO2 fluxes are computed and a carbon budget is balanced. The Amundsen Gulf system acts as a moderate sink for atmospheric CO2; seasonal ice-cover limits winter CO2 uptake despite the continued undersaturation of the surface waters. Biological production precedes the ice break-up, and the growth of under-ice algae constitutes nearly 40% of the annual net community production. The Scotian Shelf may be described as an estuarine system with an outflow of surface water, and intrusion of carbon-rich subsurface water by a combination of wind-driven mixing, upwelling and convection, which fuels the CO2 release to the atmosphere. In contrast, Amundsen Gulf may be described as an anti-estuarine, or downwelling, system, with an inflow of surface waters and an outflow of subsurface waters. Wind-driven and ... Other/Unknown Material Amundsen Gulf Beaufort Sea ice algae Dalhousie University: DalSpace Institutional Repository
institution Open Polar
collection Dalhousie University: DalSpace Institutional Repository
op_collection_id ftdalhouse
language English
topic Inorganic carbon
marine biogeochemistry
air-sea CO2 flux
ocean carbon cycle
spellingShingle Inorganic carbon
marine biogeochemistry
air-sea CO2 flux
ocean carbon cycle
Shadwick, Elizabeth Henderson
Carbon Cycling in Canadian Coastal Waters: Process Studies of the Scotian Shelf and the Southeastern Beaufort Sea
topic_facet Inorganic carbon
marine biogeochemistry
air-sea CO2 flux
ocean carbon cycle
description PhD Thesis Much research has been devoted to understanding the ocean carbon cycle because of its prominent role in controlling global climate. Coastal oceans remain a source of uncertainty in global ocean carbon budgets due to their individual characteristics and their high spatial and temporal variability. Recent attempts to establish general patterns suggest that temperate and high-latitude coastal oceans act as sinks for atmospheric carbon dioxide (CO2). In this thesis, carbon cycling in two Canadian coastal ocean regions is investigated, and the uptake of atmospheric CO2 is quantified. A combination of ship-board measurements and highly temporally resolved data from an autonomous mooring was used to quantify the seasonal to multi-annual variability in the inorganic carbon system in the Scotian Shelf region of the northwestern Atlantic for the first time. The Scotian Shelf, unlike other shelf seas at similar latitude, acts as a source of CO2 to the atmosphere, with fluxes varying over two orders of magnitude in space and time between 1999 and 2008. The first observations of the inorganic carbon system in the Amundsen Gulf region of the southern Beaufort Sea, covering the full annual cycle, are also presented. Air-sea CO2 fluxes are computed and a carbon budget is balanced. The Amundsen Gulf system acts as a moderate sink for atmospheric CO2; seasonal ice-cover limits winter CO2 uptake despite the continued undersaturation of the surface waters. Biological production precedes the ice break-up, and the growth of under-ice algae constitutes nearly 40% of the annual net community production. The Scotian Shelf may be described as an estuarine system with an outflow of surface water, and intrusion of carbon-rich subsurface water by a combination of wind-driven mixing, upwelling and convection, which fuels the CO2 release to the atmosphere. In contrast, Amundsen Gulf may be described as an anti-estuarine, or downwelling, system, with an inflow of surface waters and an outflow of subsurface waters. Wind-driven and ...
author2 Department of Oceanography
Doctor of Philosophy
Dr. Nicholas R. Bates
Dr. Daniel E. Kelley
Dr. Kumiko Azetsu-Scott
Dr. Katja Fennel
Dr. Jonathan Grant
Dr. Jinyu Sheng
Dr. Helmuth Thomas
Not Applicable
Yes
author Shadwick, Elizabeth Henderson
author_facet Shadwick, Elizabeth Henderson
author_sort Shadwick, Elizabeth Henderson
title Carbon Cycling in Canadian Coastal Waters: Process Studies of the Scotian Shelf and the Southeastern Beaufort Sea
title_short Carbon Cycling in Canadian Coastal Waters: Process Studies of the Scotian Shelf and the Southeastern Beaufort Sea
title_full Carbon Cycling in Canadian Coastal Waters: Process Studies of the Scotian Shelf and the Southeastern Beaufort Sea
title_fullStr Carbon Cycling in Canadian Coastal Waters: Process Studies of the Scotian Shelf and the Southeastern Beaufort Sea
title_full_unstemmed Carbon Cycling in Canadian Coastal Waters: Process Studies of the Scotian Shelf and the Southeastern Beaufort Sea
title_sort carbon cycling in canadian coastal waters: process studies of the scotian shelf and the southeastern beaufort sea
publishDate 2010
url http://hdl.handle.net/10222/13107
genre Amundsen Gulf
Beaufort Sea
ice algae
genre_facet Amundsen Gulf
Beaufort Sea
ice algae
op_relation http://hdl.handle.net/10222/13107
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