THE USE OF RADIUM ISOTOPES TO INVESTIGATE BOUNDARY EXCHANGES IN COASTAL OCEAN SYSTEMS

Coastal seas are of major economic and social importance for the majority of the human population, and are amongst the most biologically and geochemically active areas of the biosphere. Coastal systems are also highly dynamic and complex areas of the global oceans, due in part to the extensive inter...

Full description

Bibliographic Details
Main Author: Burt, William
Other Authors: Department of Oceanography, Doctor of Philosophy, Dr. Alfonso Mucci, Dr. Daniel Kelley, Dr. Markus Kienast, Dr. Katja Fennel, Dr. John Smith, Dr. Helmuth Thomas, Not Applicable, Yes
Language:English
Published: 2015
Subjects:
Online Access:http://hdl.handle.net/10222/56330
id ftdalhouse:oai:DalSpace.library.dal.ca:10222/56330
record_format openpolar
spelling ftdalhouse:oai:DalSpace.library.dal.ca:10222/56330 2023-05-15T17:36:41+02:00 THE USE OF RADIUM ISOTOPES TO INVESTIGATE BOUNDARY EXCHANGES IN COASTAL OCEAN SYSTEMS Burt, William Department of Oceanography Doctor of Philosophy Dr. Alfonso Mucci Dr. Daniel Kelley Dr. Markus Kienast Dr. Katja Fennel Dr. John Smith Dr. Helmuth Thomas Not Applicable Yes 2015-04-07T11:48:27Z http://hdl.handle.net/10222/56330 en eng http://hdl.handle.net/10222/56330 Biogeochemistry Radium isotopes Carbon cycling Coastal Oceanography 2015 ftdalhouse 2021-12-29T18:12:01Z Coastal seas are of major economic and social importance for the majority of the human population, and are amongst the most biologically and geochemically active areas of the biosphere. Coastal systems are also highly dynamic and complex areas of the global oceans, due in part to the extensive interactions that occur at the system boundaries. Carbon and nutrient fluxes across these boundaries at the seafloor, the atmosphere, the land, and the shelf-break, fuel intense biological activity and high spatial and temporal variability characteristic of coastal seas. Despite their importance, the magnitudes of dissolved material exchanges across these boundaries represent a significant area of uncertainty in coastal ocean biogeochemistry. This research utilizes naturally-occurring radium isotope tracers (224Ra, 223Ra, 228Ra), which have well defined land and seafloor sources, to quantify cross-boundary fluxes in various coastal regions of the North Atlantic ocean. This thesis presents flux measurements in a series of coastal regimes, throughout which a clear progression can be seen in the overall scope of the research. The initial study utilizes vertical radium profiles and a 1-D diffusion model to quantify benthic fluxes of carbon, nutrients and oxygen at a time-series station in a small enclosed basin (Bedford Basin, Nova Scotia). This work is then extended to transects of radium measurements across an open continental shelf (Scotian Shelf, northwestern Atlantic) which are combined with 2-D numerical simulations to yield estimates of cross-shelf carbon and nutrient transport from the adjacent deep ocean. Finally, a comprehensive basin-wide radium survey in a semi-enclosed shelf sea of the northeastern Atlantic (the North Sea) is used to provide detailed assessment of sediment-water column exchanges across the region and land-ocean interaction at the European continental coastline. Despite differences in the geometry and spatial scale of each region, significant boundary exchange in all the regimes provides the opportunity to quantify important carbon inputs using radium-based techniques. Overall, this research provides a greater understanding of both the magnitude and biogeochemical impact of boundary exchanges in coastal waters, while also encouraging and guiding future radium studies through novel methodology and detailed results. Other/Unknown Material North Atlantic Dalhousie University: DalSpace Institutional Repository Bedford ENVELOPE(-67.150,-67.150,-66.467,-66.467)
institution Open Polar
collection Dalhousie University: DalSpace Institutional Repository
op_collection_id ftdalhouse
language English
topic Biogeochemistry
Radium isotopes
Carbon cycling
Coastal Oceanography
spellingShingle Biogeochemistry
Radium isotopes
Carbon cycling
Coastal Oceanography
Burt, William
THE USE OF RADIUM ISOTOPES TO INVESTIGATE BOUNDARY EXCHANGES IN COASTAL OCEAN SYSTEMS
topic_facet Biogeochemistry
Radium isotopes
Carbon cycling
Coastal Oceanography
description Coastal seas are of major economic and social importance for the majority of the human population, and are amongst the most biologically and geochemically active areas of the biosphere. Coastal systems are also highly dynamic and complex areas of the global oceans, due in part to the extensive interactions that occur at the system boundaries. Carbon and nutrient fluxes across these boundaries at the seafloor, the atmosphere, the land, and the shelf-break, fuel intense biological activity and high spatial and temporal variability characteristic of coastal seas. Despite their importance, the magnitudes of dissolved material exchanges across these boundaries represent a significant area of uncertainty in coastal ocean biogeochemistry. This research utilizes naturally-occurring radium isotope tracers (224Ra, 223Ra, 228Ra), which have well defined land and seafloor sources, to quantify cross-boundary fluxes in various coastal regions of the North Atlantic ocean. This thesis presents flux measurements in a series of coastal regimes, throughout which a clear progression can be seen in the overall scope of the research. The initial study utilizes vertical radium profiles and a 1-D diffusion model to quantify benthic fluxes of carbon, nutrients and oxygen at a time-series station in a small enclosed basin (Bedford Basin, Nova Scotia). This work is then extended to transects of radium measurements across an open continental shelf (Scotian Shelf, northwestern Atlantic) which are combined with 2-D numerical simulations to yield estimates of cross-shelf carbon and nutrient transport from the adjacent deep ocean. Finally, a comprehensive basin-wide radium survey in a semi-enclosed shelf sea of the northeastern Atlantic (the North Sea) is used to provide detailed assessment of sediment-water column exchanges across the region and land-ocean interaction at the European continental coastline. Despite differences in the geometry and spatial scale of each region, significant boundary exchange in all the regimes provides the opportunity to quantify important carbon inputs using radium-based techniques. Overall, this research provides a greater understanding of both the magnitude and biogeochemical impact of boundary exchanges in coastal waters, while also encouraging and guiding future radium studies through novel methodology and detailed results.
author2 Department of Oceanography
Doctor of Philosophy
Dr. Alfonso Mucci
Dr. Daniel Kelley
Dr. Markus Kienast
Dr. Katja Fennel
Dr. John Smith
Dr. Helmuth Thomas
Not Applicable
Yes
author Burt, William
author_facet Burt, William
author_sort Burt, William
title THE USE OF RADIUM ISOTOPES TO INVESTIGATE BOUNDARY EXCHANGES IN COASTAL OCEAN SYSTEMS
title_short THE USE OF RADIUM ISOTOPES TO INVESTIGATE BOUNDARY EXCHANGES IN COASTAL OCEAN SYSTEMS
title_full THE USE OF RADIUM ISOTOPES TO INVESTIGATE BOUNDARY EXCHANGES IN COASTAL OCEAN SYSTEMS
title_fullStr THE USE OF RADIUM ISOTOPES TO INVESTIGATE BOUNDARY EXCHANGES IN COASTAL OCEAN SYSTEMS
title_full_unstemmed THE USE OF RADIUM ISOTOPES TO INVESTIGATE BOUNDARY EXCHANGES IN COASTAL OCEAN SYSTEMS
title_sort use of radium isotopes to investigate boundary exchanges in coastal ocean systems
publishDate 2015
url http://hdl.handle.net/10222/56330
long_lat ENVELOPE(-67.150,-67.150,-66.467,-66.467)
geographic Bedford
geographic_facet Bedford
genre North Atlantic
genre_facet North Atlantic
op_relation http://hdl.handle.net/10222/56330
_version_ 1766136243109756928