Please use this identifier to cite or link to this item: http://hdl.handle.net/10553/113981
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dc.contributor.authorSantana Casiano, Juana Magdalenaen_US
dc.contributor.authorGonzález Santana, Daviden_US
dc.contributor.authorDevresse, Quentinen_US
dc.contributor.authorHepach, Helmkeen_US
dc.contributor.authorSantana González, Carolinaen_US
dc.contributor.authorQuack, Birgiten_US
dc.contributor.authorEngel, Anjaen_US
dc.contributor.authorGonzález Dávila, Melchoren_US
dc.date.accessioned2022-03-09T12:01:05Z-
dc.date.available2022-03-09T12:01:05Z-
dc.date.issued2022en_US
dc.identifier.issn0013-936Xen_US
dc.identifier.otherScopus-
dc.identifier.urihttp://hdl.handle.net/10553/113981-
dc.description.abstractThe iron(II) oxidation kinetic process was studied at 25 stations in coastal seawater of the Macaronesia region (9 around Cape Verde, 11 around the Canary Islands, and 5 around Madeira). In a physicochemical context, experiments were carried out to study the pseudo-first-order oxidation rate constant (k′, min-1) over a range of pH (7.8, 7.9, 8.0, and 8.1) and temperature (10, 15, 20, and 25 °C). Deviations from the calculated kcal′ at the same T, pH, and S were observed for most of the stations. The measured t1/2 (ln 2/k′, min) values at the 25 stations ranged from 1.82 to 3.47 min (mean 1.93 ± 0.76 min) and for all but two stations were lower than the calculated t1/2 of 3.21 ± 0.2 min. In a biogeochemical context, nutrients and variables associated with the organic matter spectral properties (CDOM and FDOM) were analyzed to explain the observed deviations. The application of a multilinear regression model indicated that k′ can be described (R = 0.921 and SEE = 0.064 for pH = 8 and T = 25 °C) from a linear combination of three organic variables, k′OM = kcal′-0.11∗ TDN + 29.9*bDOM + 33.4*C1humic, where TDN is the total dissolved nitrogen, bDOM is the spectral peak obtained from colored dissolved organic matter (DOM) analysis when protein-like or tyrosine-like components are present, and C1humic is the component associated with humic-like compounds obtained from the parallel factor analysis of the fluorescent DOM. Results show that compounds with N in their structures mainly explain the observed k′ increase for most of the samples, although other components could also play a relevant role. Experimentally, k′ provides the net result between the compounds that accelerate the process and those that slow it down.en_US
dc.languageengen_US
dc.relationEfecto de la Acidificacion Oceanica, la Temperatura y El Contenido de Materia Organica en la Persistencia de Fe(Ii) en El Oceano Atlanticoen_US
dc.relationOur common future ocean in the Earth system ¿ quantifying coupled cycles of carbon, oxygen, and nutrients for determining and achieving safe operating spaces with respect to tipping pointsen_US
dc.relation.ispartofEnvironmental science & technologyen_US
dc.sourceEnvironmental Science and Technology [ISSN 0013-936X], v. 56 (4), p. 2718-2728, (Enero 2022)en_US
dc.subject251010 Procesos litorales o sublitoralesen_US
dc.subject221003 Cinética químicaen_US
dc.subject.otherCDOMen_US
dc.subject.otherCoastal Seawateren_US
dc.subject.otherFDOMen_US
dc.subject.otherIron(II)en_US
dc.subject.otherMacaronesiaen_US
dc.subject.otherOxidation Kineticsen_US
dc.titleExploring the Effects of Organic Matter Characteristics on Fe(II) Oxidation Kinetics in Coastal Seawateren_US
dc.typeinfo:eu-repo/semantics/articleen_US
dc.typeArticleen_US
dc.identifier.doi10.1021/acs.est.1c04512en_US
dc.identifier.pmid35077144-
dc.identifier.scopus85124359372-
dc.identifier.isiWOS:000763099700061-
dc.contributor.orcid0000-0002-7930-7683-
dc.contributor.orcidNO DATA-
dc.contributor.orcidNO DATA-
dc.contributor.orcidNO DATA-
dc.contributor.orcidNO DATA-
dc.contributor.orcidNO DATA-
dc.contributor.orcidNO DATA-
dc.contributor.orcidNO DATA-
dc.contributor.authorscopusid6701344294-
dc.contributor.authorscopusid57205690095-
dc.contributor.authorscopusid57194832571-
dc.contributor.authorscopusid43661366500-
dc.contributor.authorscopusid57193317400-
dc.contributor.authorscopusid55961642700-
dc.contributor.authorscopusid7402582603-
dc.contributor.authorscopusid6603931257-
dc.identifier.eissn1520-5851-
dc.description.lastpage2728en_US
dc.identifier.issue4-
dc.description.firstpage2718en_US
dc.relation.volume56en_US
dc.investigacionCienciasen_US
dc.type2Artículoen_US
dc.identifier.external126788045-
dc.utils.revisionen_US
dc.identifier.ulpgcen_US
dc.contributor.buulpgcBU-BASen_US
dc.description.sjr3,123-
dc.description.jcr11,4-
dc.description.sjrqQ1-
dc.description.jcrqQ1-
dc.description.scieSCIE-
dc.description.miaricds11,0-
item.fulltextCon texto completo-
item.grantfulltextopen-
crisitem.author.deptGIR IOCAG: Química Marina-
crisitem.author.deptIU de Oceanografía y Cambio Global-
crisitem.author.deptDepartamento de Química-
crisitem.author.deptGIR IOCAG: Química Marina-
crisitem.author.deptIU de Oceanografía y Cambio Global-
crisitem.author.deptGIR IOCAG: Química Marina-
crisitem.author.deptIU de Oceanografía y Cambio Global-
crisitem.author.deptGIR IOCAG: Química Marina-
crisitem.author.deptIU de Oceanografía y Cambio Global-
crisitem.author.deptDepartamento de Química-
crisitem.author.orcid0000-0002-7930-7683-
crisitem.author.orcid0000-0001-8726-7768-
crisitem.author.orcid0000-0002-8476-3202-
crisitem.author.orcid0000-0003-3230-8985-
crisitem.author.parentorgIU de Oceanografía y Cambio Global-
crisitem.author.parentorgIU de Oceanografía y Cambio Global-
crisitem.author.parentorgIU de Oceanografía y Cambio Global-
crisitem.author.parentorgIU de Oceanografía y Cambio Global-
crisitem.author.fullNameSantana Casiano, Juana Magdalena-
crisitem.author.fullNameGonzález Santana, David-
crisitem.author.fullNameSantana Gonzalez,Carolina-
crisitem.author.fullNameGonzález Dávila, Melchor-
crisitem.project.principalinvestigatorSantana Casiano, Juana Magdalena-
crisitem.project.principalinvestigatorGonzález Dávila, Melchor-
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