Please use this identifier to cite or link to this item: https://cir.cenieh.es/handle/20.500.12136/428
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dc.contributor.authorJiménez Moreno, Gonzalo-
dc.contributor.authorBurjachs i Casas, Francesc-
dc.contributor.authorExpósito Barea, Isabel-
dc.contributor.authorOms i Llobet, Oriol-
dc.contributor.authorCarrancho Alonso, Ángel-
dc.contributor.authorVillalaín, Juan José-
dc.contributor.authorAgustí, Jordi-
dc.contributor.authorCampeny Vall-llosera, Gerard-
dc.contributor.authorGómez de Soler, Bruno-
dc.contributor.authorMade, Jan van der-
dc.date.accessioned2018-06-06T16:17:00Z-
dc.date.issued2013-09-
dc.identifier.citationGlobal and Planetary Change, 2013, 108, 15-28es_ES
dc.identifier.issn0921-8181-
dc.identifier.issn1872-6364-
dc.identifier.urihttp://cir.cenieh.es/handle/20.500.12136/428-
dc.description.abstractThe Late Pliocene is a very interesting period as climate deteriorated from a warm optimum at ca. 3.3–3.0 Ma to a progressive climate cooling. Simultaneously, the Mediterranean area witnessed the establishment of the Mediterranean-type seasonal precipitation rhythm (summer drought). These important climate changes produced significant vegetation changes, such as the extinction of several thermophilous and hygrophilous plant taxa from the European latitudes. Besides these long-term trends, climate was also characterized by cyclical variability (i.e., orbital changes) that forced vegetation changes (forested vs. open vegetation). In the Mediterranean area, cyclical changes in the vegetation were mostly forced by precession. In this study we analyzed pollen from a Late Pliocene maar lake core from NE Spain. An increase in aridity is observed as well as cyclic variations throughout the studied sequence. Cyclicity was mostly forced by precession but also by obliquity and eccentricity. Precipitation seems to be the main factor controlling these cycles. These data allowed estimating a sedimentary rate of ca. 0.19 mm/yr and the time duration covered by the studied core, close to 200 ka. The combination of biostratigraphy, palaeomagnetism and cyclostratigraphy allowed for a very precise dating of the sediments between ca. 3.3 and 3.1 Ma. Climate and paleobiogeographical implications are discussed within the context of the Late Pliocene Northern Hemisphere glacial intensification.es_ES
dc.description.sponsorshipGJM's research was supported by project CGL-2010-20857/BTE of the Ministerio de Educación y Ciencia of Spain and the research group RNM0190 of the Junta de Andalucía. The authors also received support from projects CGL2008-03881, CGL2009-12703-C03, CGL2012-38358, CGL2012-38434-C03-03, CGL2012-38481 and SGR2009-324 of the Ministerio de Educación y Ciencia of Spain and Generalitat de Catalunya. Á.C. acknowledges the funding from the International Campus of Excellence Programme, Reinforcement Subprogramme of the Spanish Ministry of Education.es_ES
dc.language.isoenes_ES
dc.publisherElsevieres_ES
dc.rightsAtribución-NoComercial-SinDerivadas 3.0 Estados Unidos de América*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/us/*
dc.subjectMaar lakees_ES
dc.subjectPollen analysises_ES
dc.subjectVegetationes_ES
dc.subjectOrbital-scale climate variabilityes_ES
dc.subjectLate Pliocenees_ES
dc.subjectMediterranean areaes_ES
dc.subjectCamp dels Ninotses_ES
dc.titleLate Pliocene vegetation and orbital-scale climate changes from the Western Mediterranean areaes_ES
dc.typeArticlees_ES
dc.identifier.doi10.1016/j.gloplacha.2013.05.012-
dc.relation.publisherversionhttps://doi.org/10.1016/j.gloplacha.2013.05.012es_ES
dc.date.available2018-06-06T16:17:00Z-
Appears in Collections:Geocronología y Geología

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