Please use this identifier to cite or link to this item: http://hdl.handle.net/1893/37755
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dc.contributor.authorBrown, Alison Men_UK
dc.contributor.authorBass, Adrian Men_UK
dc.contributor.authorWhite, Stellaen_UK
dc.contributor.authorCorr, Mairéaden_UK
dc.contributor.authorSkiba, Uteen_UK
dc.contributor.authorMacDonald, John Men_UK
dc.contributor.authorPickard, Amy Een_UK
dc.date.accessioned2026-01-16T01:09:06Z-
dc.date.available2026-01-16T01:09:06Z-
dc.date.issued2024-09en_UK
dc.identifier.other108830en_UK
dc.identifier.urihttp://hdl.handle.net/1893/37755-
dc.description.abstractEstuaries and coastal waters are sensitive to ecological degradation but receive some of the highest levels of pollutants. One impact of these pollutants is increased greenhouse gas generation, which is significant, but difficult to estimate due to high variability and data paucity. This paper investigates key controls on methane (CH4) and nitrous oxide (N2O) in the urban, mesotidal, stratified Clyde estuary, Scotland, between January 2020 and October 2022. Measurements covered the estuary longitudinally, through tidal cycles and across the river-estuary transition. Dissolved CH4 and N2O were always supersaturated relative to air exhibiting strong spatial and temporal variability. Estuary surface freshwater layer CH4 concentrations were positively correlated with turbidity and exceeded 5.4 μmol l−1. Lower saline layer CH4 concentrations exceeded 10.8 μmol l−1 and were highest after freshwater flushing events. The CH4 concentrations decreased exponentially with salinity persistence (time since last freshwater flushing event), reducing by 50% after 10 days of continuously saline water. Salinity persistence likely provides a tipping point between the dominance of different microbial communities. Considering the persistence of saline conditions can explain much of the previously reported variability in estuarine CH4. In the surface freshwater layer, N2O exceeded 0.15 μmol l−1, while in the lower saline layer N2O exceeded 0.21 μmol l−1, despite lower dissolved nitrogen, increasing the N2O per unit available nitrogen. There was a significant inverse exponential correlation (R2 = 0.96) between N2O and dissolved oxygen in the lower layer, with low oxygen driving elevated N2O concentrations. This study provides unique insights into the conditions that generate CH4 and N2O in a stratified urban-impacted estuary.en_UK
dc.language.isoenen_UK
dc.publisherElsevier BVen_UK
dc.relationBrown AM, Bass AM, White S, Corr M, Skiba U, MacDonald JM & Pickard AE (2024) The impact of estuarine flushing on greenhouse gases: A study of the stratified Clyde estuary. <i>Estuarine, Coastal and Shelf Science</i>, 304, Art. No.: 108830. https://doi.org/10.1016/j.ecss.2024.108830en_UK
dc.rights.urihttp://www.rioxx.net/licenses/under-embargo-all-rights-reserveden_UK
dc.subjectMethaneen_UK
dc.subjectNitrous oxideen_UK
dc.subjectEstuaryen_UK
dc.subjectSalinityen_UK
dc.subjectLow oxygenen_UK
dc.subjectFreshwater-flushingen_UK
dc.titleThe impact of estuarine flushing on greenhouse gases: A study of the stratified Clyde estuaryen_UK
dc.typeJournal Articleen_UK
dc.rights.embargodate2999-12-31en_UK
dc.identifier.doi10.1016/j.ecss.2024.108830en_UK
dc.citation.jtitleEstuarine, Coastal and Shelf Scienceen_UK
dc.citation.issn0272-7714en_UK
dc.citation.volume304en_UK
dc.citation.publicationstatusPublisheden_UK
dc.citation.peerreviewedRefereeden_UK
dc.type.statusVoR - Version of Recorden_UK
dc.contributor.funderNatural Environment Research Councilen_UK
dc.identifier.urlhttps://eprints.gla.ac.uk/328468/en_UK
dc.author.emailalison.brown1@stir.ac.uken_UK
dc.citation.date04/06/2024en_UK
dc.contributor.affiliationUK Centre for Ecology & Hydrologyen_UK
dc.contributor.affiliationUniversity of Glasgowen_UK
dc.contributor.affiliationUK Centre for Ecology & Hydrologyen_UK
dc.contributor.affiliationUK Centre for Ecology & Hydrologyen_UK
dc.contributor.affiliationUK Centre for Ecology & Hydrologyen_UK
dc.contributor.affiliationUniversity of Glasgowen_UK
dc.contributor.affiliationUK Centre for Ecology & Hydrologyen_UK
dc.identifier.isiWOS:001347164700001en_UK
dc.identifier.scopusid2-s2.0-85195178585en_UK
dc.identifier.wtid2076486en_UK
dc.contributor.orcid0000-0001-6878-4065en_UK
dc.contributor.orcid0000-0003-3982-6582en_UK
dc.contributor.orcid0000-0001-5716-2404en_UK
dc.contributor.orcid0009-0002-7245-6747en_UK
dc.contributor.orcid0000-0002-8609-804Xen_UK
dc.date.accepted2024-06-03en_UK
dcterms.dateAccepted2024-06-03en_UK
dc.date.filedepositdate2024-12-02en_UK
rioxxterms.apcnot requireden_UK
rioxxterms.versionVoRen_UK
local.rioxx.authorBrown, Alison M|0000-0001-6878-4065en_UK
local.rioxx.authorBass, Adrian M|0000-0003-3982-6582en_UK
local.rioxx.authorWhite, Stella|0000-0001-5716-2404en_UK
local.rioxx.authorCorr, Mairéad|0009-0002-7245-6747en_UK
local.rioxx.authorSkiba, Ute|en_UK
local.rioxx.authorMacDonald, John M|0000-0002-8609-804Xen_UK
local.rioxx.authorPickard, Amy E|en_UK
local.rioxx.projectProject ID unknown|Natural Environment Research Council|http://dx.doi.org/10.13039/501100000270en_UK
local.rioxx.freetoreaddate2024-12-02en_UK
local.rioxx.licencehttp://www.rioxx.net/licenses/under-embargo-all-rights-reserved||en_UK
local.rioxx.filenameThe impact of estuarine flushing on greenhouse gases_ A study of the stratified Clyde estuary.pdfen_UK
local.rioxx.filecount1en_UK
local.rioxx.source0272-7714en_UK
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