{"id":{"repo_id":"soton","oai_identifier":"oai:eprints.soton.ac.uk:66340"},"canonical_url":"https://search.dev.ndltd.org/etd/soton/oai:eprints.soton.ac.uk:66340","repository":{"repo_id":"soton","name":"University of Southampton","base_url":"https://eprints.soton.ac.uk/cgi/oai2"},"display":{"title":"An investigation of factors influencing the spatial and temporal distribution of surface phytoplankton in the English Channel and Bay of Biscay in 2003 and 2004","abstract":"Throughout 2003 and 2004 continuous autonomous observations of surface<br/>temperature, conductivity and chlorophyll fluorescence were recorded on the P&amp;O<br/>\"Pride of Bilbao\" ferry between Portsmouth, UK and Bilbao Spain. Different conditions<br/>over the shelf, slope and deep waters along the route were detected and studied - from<br/>eutrophic harbour waters to the southern Bay of Biscay, which is oligotrophic in<br/>summer. During the two years, 21 manned crossings on the ferry provided information<br/>on nutrients, phytoplankton biomass and speciation. Measurements include chlorophyll<br/>a concentrations (calibration of the fluorimeter is discussed), High Performance Liquid<br/>Chromatography (HPLC) determined pigments concentrations, phytoplankton species<br/>abundance (biomass and identification) and nutrients. Data was also available from<br/>satellite images for estimates of chlorophyll (SeaWIFS), zooplankton abundance from<br/>CPR (Continuous Plankton Recorder) tows, wind speed and direction and irradiance.<br/>This has enabled phytoplankton populations to be related to-: (1) nutrient supply (2)<br/>grazing pressure (3) fresh water influences, (4) hydrography and (5) climatic conditions.<br/>The distributions of hydrographic properties and of plankton were analysed on the basis<br/>of four generalised regions (i) well-mixed, (ii) northern summer stratified, and (iii)<br/>southern summer stratified on the shelf and (iv) oceanic region in the Bay of Biscay<br/>water. There were differences between the two years in the timing of seasonal changes<br/>and in the abundance of phytoplankton species. Chlorophyll a values were generally<br/>higher in shelf waters compared to oceanic water in both years.<br/>The spring phytoplankton bloom reached its peak during March 2003 in the Bay of<br/>Biscay and during April on the continental shelf with maximum chlorophyll values of 2-<br/>4 mg m-3. Whereas, the strong SW wind in Bay of Biscay in winter 2004 may have<br/>delayed growth in this region. In the shelf regions in 2004 low salinity values off<br/>western France and high solar irradiance in the north are likely to have led to earlier<br/>phytoplankton biomass than in 2003. During early summer, the coccolithophore,<br/>Emiliania huxlyei (&gt;1000 cells ml-1) was widespread in northern stratified regions, more<br/>so in 2003 than in 2004. In the summer of 2003 an exceptional dinoflagellate bloom<br/>occurred in the western English Channel. The bloom was composed of a monspecific<br/>surface population of Karenia mikimotoi, giving cell densities up to 8000 cells ml-1 and<br/>chlorophyll a concentrations up to 70 mg m-3. Development of this dinoflagellate bloom<br/>in the western English Channel could be explained in terms of physical stability, and<br/>ii<br/>low wind speed together with sufficient light and a supply of inorganic nutrients<br/>favouring growth of the cells. By contrast, in 2004, the abundance of diatoms was<br/>higher than 2003 and K. mikimotoi was common but not at bloom levels (chlorophyll a<br/>~4.0 mg m-3). A mixed diatom-dinoflagellate community was the dominant the final<br/>stage in the succession, as the summer thermocline was less well developed. The<br/>phytoplankton biomass and composition in 2003 matches the classical model of<br/>phytoplankton seasonal succession in temperate waters (Margalef, 1978; Smayda, 1980)<br/>but this was not obvious in 2004.<br/>In general, the FerryBox system on the Pride of Bilbao in 2003 and 2004 was successful<br/>and improved understanding of the relationship between the phytoplankton population<br/>and hydrographic regimes in 2003 and 2004 between Portsmouth and Bilbao.<br/>Improvements in future might include continuous observations of oxygen and nutrients<br/>and more work can be done to link FerryBox data, satellite and CPR based<br/>observations.","abstract_html":"Throughout 2003 and 2004 continuous autonomous observations of surface&lt;br/&gt;temperature, conductivity and chlorophyll fluorescence were recorded on the P&amp;amp;O&lt;br/&gt;&quot;Pride of Bilbao&quot; ferry between Portsmouth, UK and Bilbao Spain. Different conditions&lt;br/&gt;over the shelf, slope and deep waters along the route were detected and studied - from&lt;br/&gt;eutrophic harbour waters to the southern Bay of Biscay, which is oligotrophic in&lt;br/&gt;summer. During the two years, 21 manned crossings on the ferry provided information&lt;br/&gt;on nutrients, phytoplankton biomass and speciation. Measurements include chlorophyll&lt;br/&gt;a concentrations (calibration of the fluorimeter is discussed), High Performance Liquid&lt;br/&gt;Chromatography (HPLC) determined pigments concentrations, phytoplankton species&lt;br/&gt;abundance (biomass and identification) and nutrients. Data was also available from&lt;br/&gt;satellite images for estimates of chlorophyll (SeaWIFS), zooplankton abundance from&lt;br/&gt;CPR (Continuous Plankton Recorder) tows, wind speed and direction and irradiance.&lt;br/&gt;This has enabled phytoplankton populations to be related to-: (1) nutrient supply (2)&lt;br/&gt;grazing pressure (3) fresh water influences, (4) hydrography and (5) climatic conditions.&lt;br/&gt;The distributions of hydrographic properties and of plankton were analysed on the basis&lt;br/&gt;of four generalised regions (i) well-mixed, (ii) northern summer stratified, and (iii)&lt;br/&gt;southern summer stratified on the shelf and (iv) oceanic region in the Bay of Biscay&lt;br/&gt;water. There were differences between the two years in the timing of seasonal changes&lt;br/&gt;and in the abundance of phytoplankton species. Chlorophyll a values were generally&lt;br/&gt;higher in shelf waters compared to oceanic water in both years.&lt;br/&gt;The spring phytoplankton bloom reached its peak during March 2003 in the Bay of&lt;br/&gt;Biscay and during April on the continental shelf with maximum chlorophyll values of 2-&lt;br/&gt;4 mg m-3. Whereas, the strong SW wind in Bay of Biscay in winter 2004 may have&lt;br/&gt;delayed growth in this region. In the shelf regions in 2004 low salinity values off&lt;br/&gt;western France and high solar irradiance in the north are likely to have led to earlier&lt;br/&gt;phytoplankton biomass than in 2003. During early summer, the coccolithophore,&lt;br/&gt;Emiliania huxlyei (&amp;gt;1000 cells ml-1) was widespread in northern stratified regions, more&lt;br/&gt;so in 2003 than in 2004. In the summer of 2003 an exceptional dinoflagellate bloom&lt;br/&gt;occurred in the western English Channel. The bloom was composed of a monspecific&lt;br/&gt;surface population of Karenia mikimotoi, giving cell densities up to 8000 cells ml-1 and&lt;br/&gt;chlorophyll a concentrations up to 70 mg m-3. Development of this dinoflagellate bloom&lt;br/&gt;in the western English Channel could be explained in terms of physical stability, and&lt;br/&gt;ii&lt;br/&gt;low wind speed together with sufficient light and a supply of inorganic nutrients&lt;br/&gt;favouring growth of the cells. By contrast, in 2004, the abundance of diatoms was&lt;br/&gt;higher than 2003 and K. mikimotoi was common but not at bloom levels (chlorophyll a&lt;br/&gt;~4.0 mg m-3). A mixed diatom-dinoflagellate community was the dominant the final&lt;br/&gt;stage in the succession, as the summer thermocline was less well developed. The&lt;br/&gt;phytoplankton biomass and composition in 2003 matches the classical model of&lt;br/&gt;phytoplankton seasonal succession in temperate waters (Margalef, 1978; Smayda, 1980)&lt;br/&gt;but this was not obvious in 2004.&lt;br/&gt;In general, the FerryBox system on the Pride of Bilbao in 2003 and 2004 was successful&lt;br/&gt;and improved understanding of the relationship between the phytoplankton population&lt;br/&gt;and hydrographic regimes in 2003 and 2004 between Portsmouth and Bilbao.&lt;br/&gt;Improvements in future might include continuous observations of oxygen and nutrients&lt;br/&gt;and more work can be done to link FerryBox data, satellite and CPR based&lt;br/&gt;observations.","abstract_has_math":false,"creators":["Qurban, Mohammed Ali B."],"institution":"University of Southampton","degree_name":"Ph.D.","degree_level":"doctoral","degree_discipline":null,"degree_department":null,"school":null,"contributors":[],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2009,"date_issued":"2009-02","date_published":"2009-02","updated_at":"2026-07-24T04:36:02Z","subjects":[],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":null,"outbound_label":null,"outbound_source":null},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:creator","label":"Author","values":["Qurban, Mohammed Ali B."]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:date","label":"Dc Date","values":["2009-02"]},{"key":"dc:date.issued","label":"Date","values":["2009-02"]},{"key":"dc:publisher.department","label":"Dc Publisher Department","values":["Ocean and Earth Science (pre 2011 reorg)","School of Ocean and Earth Science"]},{"key":"dc:publisher.institution","label":"Dc Publisher Institution","values":["University of Southampton"]},{"key":"dc:relation.isreferencedby","label":"Dc Relation Isreferencedby","values":["https://eprints.soton.ac.uk/66340/"]},{"key":"dc:type","label":"Dc Type","values":["Thesis"]},{"key":"dc:type.qualificationlevel","label":"Dc Type Qualificationlevel","values":["doctoral"]},{"key":"dc:type.qualificationname","label":"Dc Type Qualificationname","values":["Ph.D."]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier.uri","label":"Identifier URI","values":["https://eprints.soton.ac.uk/66340/1/Qurban_2009_PhD.pdf"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["Throughout 2003 and 2004 continuous autonomous observations of surface<br/>temperature, conductivity and chlorophyll fluorescence were recorded on the P&amp;O<br/>\"Pride of Bilbao\" ferry between Portsmouth, UK and Bilbao Spain. Different conditions<br/>over the shelf, slope and deep waters along the route were detected and studied - from<br/>eutrophic harbour waters to the southern Bay of Biscay, which is oligotrophic in<br/>summer. During the two years, 21 manned crossings on the ferry provided information<br/>on nutrients, phytoplankton biomass and speciation. Measurements include chlorophyll<br/>a concentrations (calibration of the fluorimeter is discussed), High Performance Liquid<br/>Chromatography (HPLC) determined pigments concentrations, phytoplankton species<br/>abundance (biomass and identification) and nutrients. Data was also available from<br/>satellite images for estimates of chlorophyll (SeaWIFS), zooplankton abundance from<br/>CPR (Continuous Plankton Recorder) tows, wind speed and direction and irradiance.<br/>This has enabled phytoplankton populations to be related to-: (1) nutrient supply (2)<br/>grazing pressure (3) fresh water influences, (4) hydrography and (5) climatic conditions.<br/>The distributions of hydrographic properties and of plankton were analysed on the basis<br/>of four generalised regions (i) well-mixed, (ii) northern summer stratified, and (iii)<br/>southern summer stratified on the shelf and (iv) oceanic region in the Bay of Biscay<br/>water. There were differences between the two years in the timing of seasonal changes<br/>and in the abundance of phytoplankton species. Chlorophyll a values were generally<br/>higher in shelf waters compared to oceanic water in both years.<br/>The spring phytoplankton bloom reached its peak during March 2003 in the Bay of<br/>Biscay and during April on the continental shelf with maximum chlorophyll values of 2-<br/>4 mg m-3. Whereas, the strong SW wind in Bay of Biscay in winter 2004 may have<br/>delayed growth in this region. In the shelf regions in 2004 low salinity values off<br/>western France and high solar irradiance in the north are likely to have led to earlier<br/>phytoplankton biomass than in 2003. During early summer, the coccolithophore,<br/>Emiliania huxlyei (&gt;1000 cells ml-1) was widespread in northern stratified regions, more<br/>so in 2003 than in 2004. In the summer of 2003 an exceptional dinoflagellate bloom<br/>occurred in the western English Channel. The bloom was composed of a monspecific<br/>surface population of Karenia mikimotoi, giving cell densities up to 8000 cells ml-1 and<br/>chlorophyll a concentrations up to 70 mg m-3. Development of this dinoflagellate bloom<br/>in the western English Channel could be explained in terms of physical stability, and<br/>ii<br/>low wind speed together with sufficient light and a supply of inorganic nutrients<br/>favouring growth of the cells. By contrast, in 2004, the abundance of diatoms was<br/>higher than 2003 and K. mikimotoi was common but not at bloom levels (chlorophyll a<br/>~4.0 mg m-3). A mixed diatom-dinoflagellate community was the dominant the final<br/>stage in the succession, as the summer thermocline was less well developed. The<br/>phytoplankton biomass and composition in 2003 matches the classical model of<br/>phytoplankton seasonal succession in temperate waters (Margalef, 1978; Smayda, 1980)<br/>but this was not obvious in 2004.<br/>In general, the FerryBox system on the Pride of Bilbao in 2003 and 2004 was successful<br/>and improved understanding of the relationship between the phytoplankton population<br/>and hydrographic regimes in 2003 and 2004 between Portsmouth and Bilbao.<br/>Improvements in future might include continuous observations of oxygen and nutrients<br/>and more work can be done to link FerryBox data, satellite and CPR based<br/>observations."]},{"key":"dc:format","label":"Dc Format","values":["text"]},{"key":"dc:title","label":"Title","values":["An investigation of factors influencing the spatial and temporal distribution of surface phytoplankton in the English Channel and Bay of Biscay in 2003 and 2004"]}]}],"canonical_facts":{"dc:creator":["Qurban, Mohammed Ali B."],"dc:date":["2009-02"],"dc:date.issued":["2009-02"],"dc:description.abstract":["Throughout 2003 and 2004 continuous autonomous observations of surface<br/>temperature, conductivity and chlorophyll fluorescence were recorded on the P&amp;O<br/>\"Pride of Bilbao\" ferry between Portsmouth, UK and Bilbao Spain. Different conditions<br/>over the shelf, slope and deep waters along the route were detected and studied - from<br/>eutrophic harbour waters to the southern Bay of Biscay, which is oligotrophic in<br/>summer. During the two years, 21 manned crossings on the ferry provided information<br/>on nutrients, phytoplankton biomass and speciation. Measurements include chlorophyll<br/>a concentrations (calibration of the fluorimeter is discussed), High Performance Liquid<br/>Chromatography (HPLC) determined pigments concentrations, phytoplankton species<br/>abundance (biomass and identification) and nutrients. Data was also available from<br/>satellite images for estimates of chlorophyll (SeaWIFS), zooplankton abundance from<br/>CPR (Continuous Plankton Recorder) tows, wind speed and direction and irradiance.<br/>This has enabled phytoplankton populations to be related to-: (1) nutrient supply (2)<br/>grazing pressure (3) fresh water influences, (4) hydrography and (5) climatic conditions.<br/>The distributions of hydrographic properties and of plankton were analysed on the basis<br/>of four generalised regions (i) well-mixed, (ii) northern summer stratified, and (iii)<br/>southern summer stratified on the shelf and (iv) oceanic region in the Bay of Biscay<br/>water. There were differences between the two years in the timing of seasonal changes<br/>and in the abundance of phytoplankton species. Chlorophyll a values were generally<br/>higher in shelf waters compared to oceanic water in both years.<br/>The spring phytoplankton bloom reached its peak during March 2003 in the Bay of<br/>Biscay and during April on the continental shelf with maximum chlorophyll values of 2-<br/>4 mg m-3. Whereas, the strong SW wind in Bay of Biscay in winter 2004 may have<br/>delayed growth in this region. In the shelf regions in 2004 low salinity values off<br/>western France and high solar irradiance in the north are likely to have led to earlier<br/>phytoplankton biomass than in 2003. During early summer, the coccolithophore,<br/>Emiliania huxlyei (&gt;1000 cells ml-1) was widespread in northern stratified regions, more<br/>so in 2003 than in 2004. In the summer of 2003 an exceptional dinoflagellate bloom<br/>occurred in the western English Channel. The bloom was composed of a monspecific<br/>surface population of Karenia mikimotoi, giving cell densities up to 8000 cells ml-1 and<br/>chlorophyll a concentrations up to 70 mg m-3. Development of this dinoflagellate bloom<br/>in the western English Channel could be explained in terms of physical stability, and<br/>ii<br/>low wind speed together with sufficient light and a supply of inorganic nutrients<br/>favouring growth of the cells. By contrast, in 2004, the abundance of diatoms was<br/>higher than 2003 and K. mikimotoi was common but not at bloom levels (chlorophyll a<br/>~4.0 mg m-3). A mixed diatom-dinoflagellate community was the dominant the final<br/>stage in the succession, as the summer thermocline was less well developed. The<br/>phytoplankton biomass and composition in 2003 matches the classical model of<br/>phytoplankton seasonal succession in temperate waters (Margalef, 1978; Smayda, 1980)<br/>but this was not obvious in 2004.<br/>In general, the FerryBox system on the Pride of Bilbao in 2003 and 2004 was successful<br/>and improved understanding of the relationship between the phytoplankton population<br/>and hydrographic regimes in 2003 and 2004 between Portsmouth and Bilbao.<br/>Improvements in future might include continuous observations of oxygen and nutrients<br/>and more work can be done to link FerryBox data, satellite and CPR based<br/>observations."],"dc:format":["text"],"dc:identifier.uri":["https://eprints.soton.ac.uk/66340/1/Qurban_2009_PhD.pdf"],"dc:publisher.department":["Ocean and Earth Science (pre 2011 reorg)","School of Ocean and Earth Science"],"dc:publisher.institution":["University of Southampton"],"dc:relation.isreferencedby":["https://eprints.soton.ac.uk/66340/"],"dc:title":["An investigation of factors influencing the spatial and temporal distribution of surface phytoplankton in the English Channel and Bay of Biscay in 2003 and 2004"],"dc:type":["Thesis"],"dc:type.qualificationlevel":["doctoral"],"dc:type.qualificationname":["Ph.D."]},"updated_at":"2026-07-24T04:36:02Z"}