0000000000043071

AUTHOR

Ernesto Tejedor

0000-0001-6825-3870

showing 5 related works from this author

A global perspective on the climate‐driven growth synchrony of neighbouring trees

2020

2 .pdf files: File 1. Author's article final version, Post-Print (19 Pags.- 4 Figs.- 2 Tabls.). File 2. Supplementary Materials (3 Figs.- 2 Tabls.- 1 Model Equation).

0106 biological sciencesGlobal and Planetary ChangeEcologyForest dynamicsEcologytree stress indicator010604 marine biology & hydrobiologyGlobal warmingCovarianceCarbon sequestrationtree-ringglobal010603 evolutionary biology01 natural sciencesSynchronyProductivity (ecology)DendrochronologyEnvironmental sciencePhysical geographyPrecipitationTemperate rainforestEcology Evolution Behavior and Systematics
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Temperature variability in the Iberian Range since 1602 inferred from tree-ring records

2017

Abstract. Tree rings are an important proxy to understand the natural drivers of climate variability in the Mediterranean Basin and hence to improve future climate scenarios in a vulnerable region. Here, we compile 316 tree-ring width series from 11 conifer sites in the western Iberian Range. We apply a new standardization method based on the trunk basal area instead of the tree cambial age to develop a regional chronology which preserves high- to low-frequency variability. A new reconstruction for the 1602–2012 period correlates at −0.78 with observational September temperatures with a cumulative mean of the 21 previous months over the 1945–2012 calibration period. The new IR2Tmax reconstr…

lcsh:GE1-350Global and Planetary Changegeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesStratigraphyLaglcsh:Environmental protectionPaleontology010502 geochemistry & geophysicsSolar irradiance01 natural sciencesMediterranean BasinBasal areaVolcanolcsh:Environmental pollutionPeninsulaClimatologylcsh:TD172-193.5Dendrochronologylcsh:TD169-171.8Geologylcsh:Environmental sciences0105 earth and related environmental sciencesChronology
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The influence of decision-making in tree ring-based climate reconstructions.

2021

Tree-ring chronologies underpin the majority of annually-resolved reconstructions of Common Era climate. However, they are derived using different datasets and techniques, the ramifications of which have hitherto been little explored. Here, we report the results of a double-blind experiment that yielded 15 Northern Hemisphere summer temperature reconstructions from a common network of regional tree-ring width datasets. Taken together as an ensemble, the Common Era reconstruction mean correlates with instrumental temperatures from 1794–2016 CE at 0.79 (p < 0.001), reveals summer cooling in the years following large volcanic eruptions, and exhibits strong warming since the 1980s. Differing in…

/141/704/106/694010506 paleontology010504 meteorology & atmospheric sciencesScienceGeneral Physics and AstronomyClimate changePalaeoclimate01 natural sciencesArticleGeneral Biochemistry Genetics and Molecular BiologyPaleoclimatologySDG 13 - Climate ActionDendrochronologyddc:550Climate change[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces environment0105 earth and related environmental sciencesResearch dataddc:333.7-333.913 Climate ActionClimate change; Palaeoclimate; Research dataGEMultidisciplinaryQNorthern HemisphereDASGeneral ChemistryResearch data/706/648/697Geography13. Climate actionClimatology/704/106/413GE Environmental Sciences
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Micro-site conditions affect Fennoscandian forest growth

2021

Abstract The long tradition of dendroclimatological studies in Fennoscandia is fostered by the exceptional longevity and temperature sensitivity of tree growth, as well as the existence of well-preserved subfossil wood in shallow lakes and extent peat bogs. Although some of the world’s longest ring width and density-based climate reconstructions have been developed in northern Fennoscandia, it is still unclear if differences in micro-site ecology matter, and if so, whether they have been considered sufficiently in previous studies. We developed a Fennoscandia-wide network of 44 Scots pine ring width chronologies from 22 locations between 59°–70 °N and 16°–31 °E, to assess the effects of moi…

0106 biological sciencesAbiotic componentSubfossil010504 meteorology & atmospheric sciencesEcologybiologyTaigaScots pinePlant Sciencebiology.organism_classification01 natural sciencesLatitudeProductivity (ecology)DendrochronologyEnvironmental sciencePrecipitationPhysical geography010606 plant biology & botany0105 earth and related environmental sciencesDendrochronologia
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Summer drought reconstruction in northeastern Spain inferred from a tree ring latewood network since 1734

2017

Drought recurrence in the Mediterranean is regarded as a fundamental factor for socio-economic development and the resilience of natural systems in context of global change. However, knowledge of past droughts has been hampered by the absence of high-resolution proxies. We present a drought reconstruction for the northeast of the Iberian Peninsula based on a new dendrochronology network considering the Standardized Evapotranspiration Precipitation Index (SPEI). A total of 774 latewood width series from 387 trees of P. sylvestris and P. uncinata were combined in an inter-regional chronology. The new chronology, calibrated against gridded climate data, reveals a robust relationship with the S…

0106 biological sciencesMediterranean climategeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesContext (language use)Global change01 natural sciencesGeophysicsPeninsulaEvapotranspirationClimatologyPaleoclimatologyDendrochronologyGeneral Earth and Planetary Sciences010606 plant biology & botany0105 earth and related environmental sciencesChronologyGeophysical Research Letters
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