Search results for "GREENLAND"

showing 6 items of 26 documents

Exposing the structure of an Arctic food web

2015

15 pages; International audience; How food webs are structured has major implications for their stability and dynamics. While poorly studied to date, arctic food webs are commonly assumed to be simple in structure, with few links per species. If this is the case, then different parts of the web may be weakly connected to each other, with populations and species united by only a low number of links. We provide the first highly resolved description of trophic link structure for a large part of a high-arctic food web. For this purpose, we apply a combination of recent techniques to describing the links between three predator guilds (insectivorous birds, spiders, and lepidopteran parasitoids) a…

MUTUALISTIC NETWORKSPlectrophenaxTrophic speciesPopulationGreenlandPOLLINATION NETWORKSDIVERSITYBiologyspecialismPredation[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/EcosystemsgeneralismDNA barcodingeducationPredatorEcology Evolution Behavior and SystematicsBEAR ISLANDNature and Landscape ConservationTrophic levelPardosaOriginal Researcheducation.field_of_study[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyMOLECULAR-DETECTIONGLOBAL PATTERNSCalidrisEcologyEcology15. Life on landHOST-SPECIFICITYbiology.organism_classificationHymenopteraFood web[ SDV.EE.ECO ] Life Sciences [q-bio]/Ecology environment/EcosystemsPardosaArctic1181 Ecology evolutionary biologymolecular diet analysisAPPARENT COMPETITIONta1181XysticusHERBIVOROUS INSECTS[SDE.BE]Environmental Sciences/Biodiversity and EcologyTROPICAL FORESTEcology and Evolution
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Cueva Antón: A multi-proxy MIS 3 to MIS 5a paleoenvironmental record for SE Iberia

2016

Overlying a palustrine deposit of unknown age (complex FP), and protected from weathering and erosion inside a large cave/rock-shelter cavity, the sedimentary fill of Cueva Antón, a Middle Paleolithic site in SE Spain, corresponds in most part (sub-complexes AS2-to-AS5) to a ca.3 m-thick Upper Pleistocene terrace of the River Mula. Coupled with the constraints derived from the deposit’s paleoclimatic proxies, OSL dating places the accumulation of this terrace in MIS 5a, and radiocarbon dates from the overlying breccia cum alluvium (sub-complex AS1) fall in the middle part of MIS 3; the intervening hiatus relates to valley incision and attendant erosion. The two intervals represented remain …

Marine isotope stageRadiocarbon dating010506 paleontologyArcheology010504 meteorology & atmospheric sciencesPleistoceneMiddle PaleolithicLuminescence datingMarine isotope stage01 natural scienceslaw.inventionSedimentary depositional environmentPaleontologyCavelawMiddle PaleolithicGreenland interstadialMiddle PalaeolithicRadiocarbon datingEcology Evolution Behavior and SystematicsHolocene0105 earth and related environmental sciencesGlobal and Planetary Changegeographygeography.geographical_feature_categoryNeandertalesGeologyAleppo pineMurciaAlluviumGeologyNeandertal
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Understanding melt generation beneath the slow-spreading Kolbeinsey Ridge using 238U, 230Th, and 231Pa excesses

2011

International audience; To examine the petrogenesis and sources of basalts from the Kolbeinsey Ridge, one of the shallowest locations along the global ridge system, we present new measurements of Nd, Sr, Hf, and Pb isotopes and U-series disequilibria on 32 axial basalts. Young Kolbeinsey basalts (full-spreading rate = 1.8 cm/yr; 67 degrees 05'-70 degrees 26'N) display ((230)Th/(238)U) 1 with ((230)Th/(238)U) from 0.95 to 1.30 and have low U (11.3-65.6 ppb) and Th (33.0 ppb-2.40 ppm) concentrations. Except for characteristic isotopic enrichment near the Jan Mayen region, the otherwise depleted Kolbeinsey basalts (e. g. (87)Sr/(86)Sr = 0.70272-0.70301, epsilon(Nd) = 8.4-10.5, epsilon(Hf) = 15…

NORWEGIAN-GREENLAND SEAU-SERIES DISEQUILIBRIA010504 meteorology & atmospheric sciences[SDE.MCG]Environmental Sciences/Global ChangesMID-ATLANTIC RIDGEGeochemistry[SDU.STU]Sciences of the Universe [physics]/Earth SciencesHETEROGENEOUS ICELAND PLUMEMid-Atlantic Ridge010502 geochemistry & geophysics01 natural sciences[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/GeochemistryGeochemistry and PetrologyJUAN-DE-FUCAComputingMilieux_MISCELLANEOUSTH-PA-RA0105 earth and related environmental sciencesPetrogenesisND-PB ISOTOPEPeridotiteBasaltUPWELLING RATES BENEATH[ SDU.STU ] Sciences of the Universe [physics]/Earth SciencesCrustTRACE-ELEMENT EVIDENCE[ SDU.STU.GC ] Sciences of the Universe [physics]/Earth Sciences/GeochemistryEAST PACIFIC RISE[ SDE.MCG ] Environmental Sciences/Global Changes13. Climate actionRidge (meteorology)UpwellingEclogiteGeologyGeochimica et Cosmochimica Acta
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A 5500-year oxygen isotope record of high arctic environmental change from southern Spitsbergen

2017

The oxygen isotope composition of chironomid head capsules in a sediment core spanning the past 5500 years from Lake Svartvatnet in southern Spitsbergen was used to reconstruct the oxygen isotope composition of lake water (δ18Olw) and local precipitation. The δ18Olw values display shifts from the baseline variability consistent with the timing of recognized historical climatic episodes, such as the Roman Warm Period, the Dark Ages Cold Period and the ‘Little Ice Age’. The highest values of the record, ca. 3‰ above modern δ18Olw values, occur at ca. 1900–1800 cal. yr BP. Three negative excursions increasing in intensity toward the present, at 3400–3200, 1250–1100, and 350–50 cal. yr BP, are…

TEMPERATURE VARIABILITY1171 GeosciencesSpitsbergen010506 paleontologyArcheology010504 meteorology & atmospheric sciencesEnvironmental change"Little Ice Age'NORTH-ATLANTIC CLIMATE01 natural sciencesIsotopes of oxygenSVALBARD ICE CORESvalbardArcticSea iceEAST GREENLAND CURRENTPrecipitationRoman Warm Periodclimate0105 earth and related environmental sciencesEarth-Surface Processes‘Little Ice Age’Global and Planetary ChangegeographyHOLOCENE GLACIER FLUCTUATIONSgeography.geographical_feature_categoryEcologyLATE-PLEISTOCENEoxygen isotopesBaseline (sea)LAKE-WATER DELTA-O-18North AtlanticPaleontologytemperatureGlacierPALEOCLIMATE RECONSTRUCTIONOceanographyArctic13. Climate actionta1181SEA-ICEGeologyHIGH-RESOLUTIONHolocene
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Bayesian chronological analyses consistent with synchronous age of 12,835-12,735 Cal BP for Younger Dryas boundary on four continents

2015

The Younger Dryas impact hypothesis posits that a cosmic impact across much of the Northern Hemisphere deposited the Younger Dryas boundary (YDB) layer, containing peak abundances in a variable assemblage of proxies, including magnetic and glassy impact-related spherules, high-temperature minerals and melt glass, nanodiamonds, carbon spherules, aciniform carbon, platinum, and osmium. Bayesian chronological modeling was applied to 354 dates from 23 stratigraphic sections in 12 countries on four continents to establish a modeled YDB age range for this event of 12,835-12,735 Cal B.P. at 95% probability. This range overlaps that of a peak in extraterrestrial platinum in the Greenland Ice Sheet …

Younger DryasBayesian probabilityCALIFORNIAGreenland ice sheetBayesianlaw.inventionPaleontologycometsynchroneitylawTERMINATIONDEPTH MODELSYounger DryasRadiocarbon datingIMPACT HYPOTHESISCOSMIC IMPACTNANODIAMONDSMultidisciplinaryWILDFIRENorthern HemispherePNAS PlusYounger Dryas impact hypothesisEXTRATERRESTRIAL IMPACTradiocarbonBLACK MATGeologySPHERULES
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Reorganization of the North Atlantic Oscillation during early Holocene deglaciation

2016

Laurentide ice-sheet retreat continued into the mid-Holocene. Speleothem-based precipitation records suggest the cessation of melt led to the establishment of the present precipitation patterns associated with the North Atlantic Oscillation. The North Atlantic Oscillation is the dominant atmospheric pressure mode in the North Atlantic region and affects winter temperature and precipitation in the Mediterranean, northwest Europe, Greenland, and Asia1. The index1 that describes the sea-level pressure difference between Iceland and the Azores is correlated with a dipole precipitation pattern over northwest Europe and northwest Africa. How the North Atlantic Oscillation will develop as the Gree…

geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesNorth Atlantic Deep WaterGreenland ice sheet010502 geochemistry & geophysics01 natural sciencesOceanographyAtlantic Equatorial mode13. Climate actionNorth Atlantic oscillationClimatologyAtlantic multidecadal oscillationDeglaciationGeneral Earth and Planetary SciencesIce sheetGeology0105 earth and related environmental sciencesAzores HighNature Geoscience
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