Sources of Organic and Inorganic Halogens to the Polar and Temperate Marine Boundary Layer

Very short lived halogenated substances (VSLH) are of importance for the transport of reactive halogens to the troposphere and lower stratosphere, whereas molecular halogens are of specific importance to the Marine Boundary Layer (MBL). This thesis describes the field deployment of a ground based ga...

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Main Author: Shaw, M
Format: Thesis
Language:English
Published: University of York 2011
Subjects:
Online Access:https://etheses.whiterose.ac.uk/1999/
https://etheses.whiterose.ac.uk/1999/1/Marvin_Shaw_Thesis_2011_final.pdf
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spelling ftwhiterose:oai:etheses.whiterose.ac.uk:1999 2023-05-15T15:16:21+02:00 Sources of Organic and Inorganic Halogens to the Polar and Temperate Marine Boundary Layer Shaw, M 2011-08 text https://etheses.whiterose.ac.uk/1999/ https://etheses.whiterose.ac.uk/1999/1/Marvin_Shaw_Thesis_2011_final.pdf en eng University of York https://etheses.whiterose.ac.uk/1999/1/Marvin_Shaw_Thesis_2011_final.pdf Shaw, M (2011) Sources of Organic and Inorganic Halogens to the Polar and Temperate Marine Boundary Layer. PhD thesis, University of York. cc_by_nc_nd CC-BY-NC-ND Thesis NonPeerReviewed 2011 ftwhiterose 2023-01-30T21:18:20Z Very short lived halogenated substances (VSLH) are of importance for the transport of reactive halogens to the troposphere and lower stratosphere, whereas molecular halogens are of specific importance to the Marine Boundary Layer (MBL). This thesis describes the field deployment of a ground based gas chromatography mass spectrometry (GC/MS) in the Canadian sub-Arctic for the determination of VSLH in seawater/sea-ice and air with a view to identify dominant sources to the MBL in the region. MBL mixing ratios of VSLH were determined from a surface site (55.28°N, 77.77°W) on the south east of Hudson Bay,(Kuujjuarapik, Canada) during the 19th -27th of February. Elevated mixing ratios of the Volatile Organic Iodine Compounds (VOIC) coincided with airmasses reaching the ground site that had previously transected regions of open water in the Bay (between 10 – 200 km away), suggesting leads/polynyas are the dominant source of VOIC within the region. This observation is supported by laboratory experiments conducted with artificial sea ice in a cold chamber (School of Earth and Environment, Leeds University) in which physico-chemical properties of the hypersaline brine, sea-ice and the underlying seawater were measured to quantify the vertical transport of a comprehensive range of volatile organic iodinated compounds (VOICs) at air temperatures of -3 and -14 oC. The results suggest that VOIC gas transfer velocities from diffusion through the sea-ice alone are at least 60 times lower at -3 ºC than gas exchange from leads and polynas during the winter (assuming a sea-ice fractional coverage of 0.1). This has significant implications for in situ VOIC losses within the brine from chlorination, hydrolysis and photolysis processes and it is unlikely that measurable concentrations of VOICs would survive vertical transport from the underlying seawater to the surface sea ice quasi-liquid layer. Further laboratory work within this thesis suggests that gaseous I2 evolution from the oxidation of iodide in the world’s oceans by ... Thesis Arctic Hudson Bay Kuujjuarapik Sea ice White Rose eTheses Online (Universities Leeds, Sheffield, York) Arctic Canada Hudson Hudson Bay Kuujjuarapik ENVELOPE(-77.762,-77.762,55.276,55.276)
institution Open Polar
collection White Rose eTheses Online (Universities Leeds, Sheffield, York)
op_collection_id ftwhiterose
language English
description Very short lived halogenated substances (VSLH) are of importance for the transport of reactive halogens to the troposphere and lower stratosphere, whereas molecular halogens are of specific importance to the Marine Boundary Layer (MBL). This thesis describes the field deployment of a ground based gas chromatography mass spectrometry (GC/MS) in the Canadian sub-Arctic for the determination of VSLH in seawater/sea-ice and air with a view to identify dominant sources to the MBL in the region. MBL mixing ratios of VSLH were determined from a surface site (55.28°N, 77.77°W) on the south east of Hudson Bay,(Kuujjuarapik, Canada) during the 19th -27th of February. Elevated mixing ratios of the Volatile Organic Iodine Compounds (VOIC) coincided with airmasses reaching the ground site that had previously transected regions of open water in the Bay (between 10 – 200 km away), suggesting leads/polynyas are the dominant source of VOIC within the region. This observation is supported by laboratory experiments conducted with artificial sea ice in a cold chamber (School of Earth and Environment, Leeds University) in which physico-chemical properties of the hypersaline brine, sea-ice and the underlying seawater were measured to quantify the vertical transport of a comprehensive range of volatile organic iodinated compounds (VOICs) at air temperatures of -3 and -14 oC. The results suggest that VOIC gas transfer velocities from diffusion through the sea-ice alone are at least 60 times lower at -3 ºC than gas exchange from leads and polynas during the winter (assuming a sea-ice fractional coverage of 0.1). This has significant implications for in situ VOIC losses within the brine from chlorination, hydrolysis and photolysis processes and it is unlikely that measurable concentrations of VOICs would survive vertical transport from the underlying seawater to the surface sea ice quasi-liquid layer. Further laboratory work within this thesis suggests that gaseous I2 evolution from the oxidation of iodide in the world’s oceans by ...
format Thesis
author Shaw, M
spellingShingle Shaw, M
Sources of Organic and Inorganic Halogens to the Polar and Temperate Marine Boundary Layer
author_facet Shaw, M
author_sort Shaw, M
title Sources of Organic and Inorganic Halogens to the Polar and Temperate Marine Boundary Layer
title_short Sources of Organic and Inorganic Halogens to the Polar and Temperate Marine Boundary Layer
title_full Sources of Organic and Inorganic Halogens to the Polar and Temperate Marine Boundary Layer
title_fullStr Sources of Organic and Inorganic Halogens to the Polar and Temperate Marine Boundary Layer
title_full_unstemmed Sources of Organic and Inorganic Halogens to the Polar and Temperate Marine Boundary Layer
title_sort sources of organic and inorganic halogens to the polar and temperate marine boundary layer
publisher University of York
publishDate 2011
url https://etheses.whiterose.ac.uk/1999/
https://etheses.whiterose.ac.uk/1999/1/Marvin_Shaw_Thesis_2011_final.pdf
long_lat ENVELOPE(-77.762,-77.762,55.276,55.276)
geographic Arctic
Canada
Hudson
Hudson Bay
Kuujjuarapik
geographic_facet Arctic
Canada
Hudson
Hudson Bay
Kuujjuarapik
genre Arctic
Hudson Bay
Kuujjuarapik
Sea ice
genre_facet Arctic
Hudson Bay
Kuujjuarapik
Sea ice
op_relation https://etheses.whiterose.ac.uk/1999/1/Marvin_Shaw_Thesis_2011_final.pdf
Shaw, M (2011) Sources of Organic and Inorganic Halogens to the Polar and Temperate Marine Boundary Layer. PhD thesis, University of York.
op_rights cc_by_nc_nd
op_rightsnorm CC-BY-NC-ND
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