Calcium carbonate production, growth, and spatial extent of Lithothamnion glaciale in a Newfoundland rhodolith bed along environmental gradients

Rhodolith beds are highly diverse benthic ecosystems that are distributed worldwide and contribute significantly to global carbon budgets. Discovery of rhodolith beds in Newfoundland has stimulated research on Northwest Atlantic rhodolith (Lithothamnion glaciale) CaCO₃ production and the factors tha...

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Main Author: Teed, Laura L.
Format: Thesis
Language:English
Published: Memorial University of Newfoundland 2019
Subjects:
Online Access:https://research.library.mun.ca/14153/
https://research.library.mun.ca/14153/1/thesis.pdf
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spelling ftmemorialuniv:oai:research.library.mun.ca:14153 2023-10-01T03:57:32+02:00 Calcium carbonate production, growth, and spatial extent of Lithothamnion glaciale in a Newfoundland rhodolith bed along environmental gradients Teed, Laura L. 2019-10 application/pdf https://research.library.mun.ca/14153/ https://research.library.mun.ca/14153/1/thesis.pdf en eng Memorial University of Newfoundland https://research.library.mun.ca/14153/1/thesis.pdf Teed, Laura L. <https://research.library.mun.ca/view/creator_az/Teed=3ALaura_L=2E=3A=3A.html> (2019) Calcium carbonate production, growth, and spatial extent of Lithothamnion glaciale in a Newfoundland rhodolith bed along environmental gradients. Masters thesis, Memorial University of Newfoundland. thesis_license Thesis NonPeerReviewed 2019 ftmemorialuniv 2023-09-03T06:49:35Z Rhodolith beds are highly diverse benthic ecosystems that are distributed worldwide and contribute significantly to global carbon budgets. Discovery of rhodolith beds in Newfoundland has stimulated research on Northwest Atlantic rhodolith (Lithothamnion glaciale) CaCO₃ production and the factors that influence rhodolith beds. The present study estimated CaCO₃ production rate in a rhodolith bed off the coast of St. Philip’s, Conception Bay, Newfoundland using compared methodological approaches of extension and weight change. This study also examined bioturbator influence on rhodolith extension and CaCO₃ production rate. Applying weight change to rhodolith densities yielded gross and net CaCO₃ production rates of approximately 806 and 196 g CaCO₃ m⁻² y⁻¹, respectively. Applying extension to rhodolith biomass yielded a net CaCO₃ production rate of 163 g CaCO₃ m⁻² y⁻¹. Bioturbator presence did not impact extension or CaCO₃ production. Regarding the spatial distribution and abundance of rhodoliths, one prevalent paradigm is that rhodoliths occur in areas where water motion is strong enough to prevent burial by sediments, but not so strong as to cause fragmentation. A drop camera survey estimated rhodolith abundance in a Newfoundland bed and estimated the influence of several environmental parameters, including water motion. Rhodoliths were found to occur further south in St. Philip’s than previously reported. Rhodolith abundance was highly influenced by slope, temperature, and light where abundance increased with light, temperature and decreasing slope. Flow acceleration (water motion) did not vary with depth and remained low, challenging the long-standing paradigm that water motion is a main factor determining rhodolith bed boundaries. Thesis Newfoundland Northwest Atlantic Memorial University of Newfoundland: Research Repository
institution Open Polar
collection Memorial University of Newfoundland: Research Repository
op_collection_id ftmemorialuniv
language English
description Rhodolith beds are highly diverse benthic ecosystems that are distributed worldwide and contribute significantly to global carbon budgets. Discovery of rhodolith beds in Newfoundland has stimulated research on Northwest Atlantic rhodolith (Lithothamnion glaciale) CaCO₃ production and the factors that influence rhodolith beds. The present study estimated CaCO₃ production rate in a rhodolith bed off the coast of St. Philip’s, Conception Bay, Newfoundland using compared methodological approaches of extension and weight change. This study also examined bioturbator influence on rhodolith extension and CaCO₃ production rate. Applying weight change to rhodolith densities yielded gross and net CaCO₃ production rates of approximately 806 and 196 g CaCO₃ m⁻² y⁻¹, respectively. Applying extension to rhodolith biomass yielded a net CaCO₃ production rate of 163 g CaCO₃ m⁻² y⁻¹. Bioturbator presence did not impact extension or CaCO₃ production. Regarding the spatial distribution and abundance of rhodoliths, one prevalent paradigm is that rhodoliths occur in areas where water motion is strong enough to prevent burial by sediments, but not so strong as to cause fragmentation. A drop camera survey estimated rhodolith abundance in a Newfoundland bed and estimated the influence of several environmental parameters, including water motion. Rhodoliths were found to occur further south in St. Philip’s than previously reported. Rhodolith abundance was highly influenced by slope, temperature, and light where abundance increased with light, temperature and decreasing slope. Flow acceleration (water motion) did not vary with depth and remained low, challenging the long-standing paradigm that water motion is a main factor determining rhodolith bed boundaries.
format Thesis
author Teed, Laura L.
spellingShingle Teed, Laura L.
Calcium carbonate production, growth, and spatial extent of Lithothamnion glaciale in a Newfoundland rhodolith bed along environmental gradients
author_facet Teed, Laura L.
author_sort Teed, Laura L.
title Calcium carbonate production, growth, and spatial extent of Lithothamnion glaciale in a Newfoundland rhodolith bed along environmental gradients
title_short Calcium carbonate production, growth, and spatial extent of Lithothamnion glaciale in a Newfoundland rhodolith bed along environmental gradients
title_full Calcium carbonate production, growth, and spatial extent of Lithothamnion glaciale in a Newfoundland rhodolith bed along environmental gradients
title_fullStr Calcium carbonate production, growth, and spatial extent of Lithothamnion glaciale in a Newfoundland rhodolith bed along environmental gradients
title_full_unstemmed Calcium carbonate production, growth, and spatial extent of Lithothamnion glaciale in a Newfoundland rhodolith bed along environmental gradients
title_sort calcium carbonate production, growth, and spatial extent of lithothamnion glaciale in a newfoundland rhodolith bed along environmental gradients
publisher Memorial University of Newfoundland
publishDate 2019
url https://research.library.mun.ca/14153/
https://research.library.mun.ca/14153/1/thesis.pdf
genre Newfoundland
Northwest Atlantic
genre_facet Newfoundland
Northwest Atlantic
op_relation https://research.library.mun.ca/14153/1/thesis.pdf
Teed, Laura L. <https://research.library.mun.ca/view/creator_az/Teed=3ALaura_L=2E=3A=3A.html> (2019) Calcium carbonate production, growth, and spatial extent of Lithothamnion glaciale in a Newfoundland rhodolith bed along environmental gradients. Masters thesis, Memorial University of Newfoundland.
op_rights thesis_license
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