Baseline benthic plastic debris assessment and intertidal survey in Iqaluit, Nunavut Canada for 2016 and 2017

Marine plastic pollution is a global issue affecting food webs, humans, and the natural environment. There is limited marine plastic pollution research in Iqaluit and the Arctic in general. This thesis focuses on Iqaluit, Nunavut targeting intertidal and marine benthic debris in areas with high huma...

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Main Author: Bradshaw, Hillary
Format: Thesis
Language:English
Published: Memorial University of Newfoundland 2024
Subjects:
Online Access:https://research.library.mun.ca/16393/
https://research.library.mun.ca/16393/1/Thesis.pdf
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spelling ftmemorialuniv:oai:research.library.mun.ca:16393 2024-09-15T18:07:10+00:00 Baseline benthic plastic debris assessment and intertidal survey in Iqaluit, Nunavut Canada for 2016 and 2017 Bradshaw, Hillary 2024-02 application/pdf https://research.library.mun.ca/16393/ https://research.library.mun.ca/16393/1/Thesis.pdf en eng Memorial University of Newfoundland https://research.library.mun.ca/16393/1/Thesis.pdf Bradshaw, Hillary <https://research.library.mun.ca/view/creator_az/Bradshaw=3AHillary=3A=3A.html> (2024) Baseline benthic plastic debris assessment and intertidal survey in Iqaluit, Nunavut Canada for 2016 and 2017. Masters thesis, Memorial University of Newfoundland. thesis_license Thesis NonPeerReviewed 2024 ftmemorialuniv 2024-07-10T03:16:01Z Marine plastic pollution is a global issue affecting food webs, humans, and the natural environment. There is limited marine plastic pollution research in Iqaluit and the Arctic in general. This thesis focuses on Iqaluit, Nunavut targeting intertidal and marine benthic debris in areas with high human activity such as fishing and hunting areas, shipping locations, and the proximity to the city. Data includes sampling from October 2017 as well as previously collected (2016) sediment grab samples and seafloor video collection. Benthic grab samples and seafloor video were examined for anthropogenic debris including microplastics (<5mm) and macroplastics (>5mm). An intertidal survey was conducted at low tide to determine the amount and types of land-derived plastic debris that may enter Frobisher Bay as a possible point source for marine plastic pollution. Determining the abundance of both microplastics and macroplastics will create a baseline for marine plastic pollution found in Frobisher Bay, NU. This thesis includes protocols for sampling in extreme environments and provides an analysis of methods that are replicable for monitoring benthic and terrestrial marine debris. No significant changes in benthic marine debris occurred during 2016 and 2017. The results indicate a baseline of 0.002 plastics/mL of benthic debris, 0.055 plastics/minute for benthic seafloor video, and 0.379 plastics/m2 of shoreline debris for marine debris in the Frobisher Bay area and Iqaluit, Nunavut. Thesis Frobisher Bay Iqaluit Nunavut Memorial University of Newfoundland: Research Repository
institution Open Polar
collection Memorial University of Newfoundland: Research Repository
op_collection_id ftmemorialuniv
language English
description Marine plastic pollution is a global issue affecting food webs, humans, and the natural environment. There is limited marine plastic pollution research in Iqaluit and the Arctic in general. This thesis focuses on Iqaluit, Nunavut targeting intertidal and marine benthic debris in areas with high human activity such as fishing and hunting areas, shipping locations, and the proximity to the city. Data includes sampling from October 2017 as well as previously collected (2016) sediment grab samples and seafloor video collection. Benthic grab samples and seafloor video were examined for anthropogenic debris including microplastics (<5mm) and macroplastics (>5mm). An intertidal survey was conducted at low tide to determine the amount and types of land-derived plastic debris that may enter Frobisher Bay as a possible point source for marine plastic pollution. Determining the abundance of both microplastics and macroplastics will create a baseline for marine plastic pollution found in Frobisher Bay, NU. This thesis includes protocols for sampling in extreme environments and provides an analysis of methods that are replicable for monitoring benthic and terrestrial marine debris. No significant changes in benthic marine debris occurred during 2016 and 2017. The results indicate a baseline of 0.002 plastics/mL of benthic debris, 0.055 plastics/minute for benthic seafloor video, and 0.379 plastics/m2 of shoreline debris for marine debris in the Frobisher Bay area and Iqaluit, Nunavut.
format Thesis
author Bradshaw, Hillary
spellingShingle Bradshaw, Hillary
Baseline benthic plastic debris assessment and intertidal survey in Iqaluit, Nunavut Canada for 2016 and 2017
author_facet Bradshaw, Hillary
author_sort Bradshaw, Hillary
title Baseline benthic plastic debris assessment and intertidal survey in Iqaluit, Nunavut Canada for 2016 and 2017
title_short Baseline benthic plastic debris assessment and intertidal survey in Iqaluit, Nunavut Canada for 2016 and 2017
title_full Baseline benthic plastic debris assessment and intertidal survey in Iqaluit, Nunavut Canada for 2016 and 2017
title_fullStr Baseline benthic plastic debris assessment and intertidal survey in Iqaluit, Nunavut Canada for 2016 and 2017
title_full_unstemmed Baseline benthic plastic debris assessment and intertidal survey in Iqaluit, Nunavut Canada for 2016 and 2017
title_sort baseline benthic plastic debris assessment and intertidal survey in iqaluit, nunavut canada for 2016 and 2017
publisher Memorial University of Newfoundland
publishDate 2024
url https://research.library.mun.ca/16393/
https://research.library.mun.ca/16393/1/Thesis.pdf
genre Frobisher Bay
Iqaluit
Nunavut
genre_facet Frobisher Bay
Iqaluit
Nunavut
op_relation https://research.library.mun.ca/16393/1/Thesis.pdf
Bradshaw, Hillary <https://research.library.mun.ca/view/creator_az/Bradshaw=3AHillary=3A=3A.html> (2024) Baseline benthic plastic debris assessment and intertidal survey in Iqaluit, Nunavut Canada for 2016 and 2017. Masters thesis, Memorial University of Newfoundland.
op_rights thesis_license
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