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University of Edinburgh

Benthic oxygen exchange across soft and hard bottoms using the new Eddy Correlation technique: Case studies from the tropics to the Arctic

Abstract

dc:description.abstract

Marine sediments play an important role in the global carbon cycle, where they are ultimately important for recycling of carbon. At the sediment-water interface carbon is in constant movement both into and out of the sediment. However some environments are more important for the natural storage of carbon. Over long time scales this process has a role in climate regulation. Measuring the total O2 uptake represents a good proxy for the turnover of organic material at the sediment surface in oxygenated sediments, and equally the release of O2 represents benthic primary production. Many important biological processes are regulated by the availability of O2 at the seabed including: fauna composition and activity, phosphate exchange, nitrogen cycling and burial of organic material. Understanding of the rate and efficiency at which carbon turnover is occurring in marine sediments provides a valuable insight to the regulatory role they play in climate control.<br/>Investigation of marine sediments is best done in situ where possible, and the development of benthic “landers” has allowed measurements to be conducted at the sediment-water interface. Most recently, a novel approach known as “Eddy Correlation” (EC) has been developed. It allows quantification of the O2 exchange across any surface from simultaneous measurements of vertical velocity flow and oxygen concentration within the benthic boundary layer. The large sediment area accounted for; the high measuring frequency and the non-invasive nature are theoretical advantages over traditional methods such as benthic chamber incubations and O2 microprofiles. This study has shown that it is difficult to achieve consistent and improved measurements using EC compared to traditional methods due to the complex nature of the equipment and data analysis. Data does suggest that EC can be a strong complimentary tool for benthic carbon exchange studies.<br/>This project presents the first use of this technology across a range of benthic environments, from temperate coastal sediments and maerl beds to high-Arctic sediments and sea-ice. The method has allowed accurate quantification of the benthic remineralisation rates and carbon turnover efficiency in the coastal and maerl environments, but less so for the more complex under sea ice and cold Arctic environments. Rates presented agree well with other published studies documenting the use of this state-of-the-art technology.

Degree

thesis:*
Name dc:type.qualificationname
Doctor of Philosophy (awarded by OU/Aberdeen)
Level dc:type.qualificationlevel
Doctoral Thesis
Grantor dc:publisher.institution
University of Edinburgh
Year dc:date.issued
2014

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Turner, Gavin
Advisor dc:contributor.advisor
  • Berg, Peter

Rights

Language dc:language
eng

Identifiers

dc:identifier.*
Identifier
oai:pure.atira.dk:studenttheses/5335a5b3-7cf9-4913-9715-ab811f7e8a54
OAI identifier oai:identifier
oai:pure.atira.dk:studenttheses/5335a5b3-7cf9-4913-9715-ab811f7e8a54

Chain of custody

source
Harvested from
University of the Highlands and Islands
Base URL
pureadmin.uhi.ac.uk/ws/oai
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
related terms
citation

Turner, Gavin. Benthic oxygen exchange across soft and hard bottoms using the new Eddy Correlation technique: Case studies from the tropics to the Arctic. Doctoral Thesis thesis, University of Edinburgh, 2014. https://pure.uhi.ac.uk/en/studentTheses/5335a5b3-7cf9-4913-9715-ab811f7e8a54