Search results for "Climate Research"

showing 10 items of 12 documents

Long-term decrease in Asian monsoon rainfall and abrupt climate change events over the past 6,700 years

2021

Significance The variability of the Asian summer monsoon (ASM) is important for the functioning of ecological and societal systems at regional to continental scales, but the long-term evolution and interannual variability of this system is not well understood. Here, we present a stable isotope–based reconstruction of ASM variability covering 4680 BCE to 2011 CE. Superimposed on a gradual drying trend, a rapid drop in mean annual precipitation (>40%) toward persistently drier conditions occurred in ∼1675 BCE. This megadrought caused regional forest deterioration and enhanced aeolian activity affecting Chinese ecosystems. We argue that this abrupt aridification starting ∼2000 BCE triggered wa…

climate variabilityClimate Research010504 meteorology & atmospheric sciencesSocial Sciencesstable isotopes010502 geochemistry & geophysics01 natural sciencesKlimatforskningmegadrought417East Asian MonsoonPrecipitationHolocene0105 earth and related environmental sciencesgeographyMultidisciplinaryPlateaugeography.geographical_feature_categoryvariabilityAsian summer monsoonBiological Sciencestree ringsAridificationAbrupt climate changePhysical geographyMegadroughtEnvironmental SciencesChronology
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Accounting for species interactions is necessary for predicting how arctic arthropod communities respond to climate change

2021

Species interactions are known to structure ecological communities. Still, the influence of climate change on biodiversity has primarily been evaluated by correlating individual species distributions with local climatic descriptors, then extrapolating into future climate scenarios. We ask whether predictions on arctic arthropod response to climate change can be improved by accounting for species interactions. For this, we use a 14-year-long, weekly time series from Greenland, resolved to the species level by mitogenome mapping. During the study period, temperature increased by 2 degrees C and arthropod species richness halved. We show that with abiotic variables alone, we are essentially un…

0106 biological sciencesClimate ResearchArthropodaBiodiversityClimate changeAccounting010603 evolutionary biology01 natural sciencesArcticniveljalkaisetTrophic cascade1172 Environmental sciencesEcology Evolution Behavior and SystematicsTrophic levelAbiotic componentarktinen alueEcologyfood webEcologybusiness.industry010604 marine biology & hydrobiologyeliöyhteisötilmastonmuutokset15. Life on landFood webjoint species distribution modelbiodiversiteettitrophic cascadeclimate changeGeographyArctic13. Climate actioncommunity assemblySpecies richnessbusinessravintoverkotEcography
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Stratification strength and light climate explain variation in chlorophyll a at the continental scale in a European multilake survey in a heatwave su…

2021

The authors acknowledge COST Action ES 1105 "CYANOCOST Cyanobacterial blooms and toxins in water resources: Occurrence impacts and management" and COST Action Global Change Biology ES 1201 NETLAKE -Networking Lake Observatories in Europe" for contributing to this study through networking and knowledge sharing with European experts in the field. We acknowledge the members of the Global Lake Ecological Observatory Network (GLEON) for their collaborative spirit and enthusiasm that inspired the grassroots effort of the EMLS. E.M. was supported by a grant from the Swiss State Secretariat for Education, Research and Innovation to Bas Ibelings and by supplementary funding from University of Geneva…

0106 biological sciencesTemperateAquatic Ecology and Water Quality Management010504 meteorology & atmospheric sciencesChlorophyll aCYANOBACTERIAL BLOOMSMediterraneanOceanography01 natural sciencesFilamentous cyanobacteriaPHYTOPLANKTON DYNAMICSKlimatforskningPhotosystem-IIClimate changePhytoplankton biomasschlorophyllTemperature anomalyPhytoplankton Dynamicsmedia_commonFilamentous CyanobacteriaEcologyplanktonTEMPERATEDissolved Organic-MatterPlan_S-Compliant_NOArtEutrophicationBiological Sciences6. Clean waterEuropekesäinternationalEUTROPHICATION1181 Ecology evolutionary biologyarticleslämpötilaGREEN-ALGAENatural SciencesLAKESSHALLOWklorofylliThermal stratificaitonClimate Researchmedia_common.quotation_subjectmultilake surveyCyanobacterial BloomsAquatic Sciencephytoplankton ; European lakes ; climate change ; large scale ; light ; stratification ; nutrientsjärvetstratificationHeat wavelimnologiaPHOTOSYSTEM-IISettore BIO/07 - ECOLOGIAddc:570Life Sciencebiomassa (ekologia)0105 earth and related environmental sciencesEkologiGreen-AlgaeWIMEKFILAMENTOUS CYANOBACTERIA010604 marine biology & hydrobiologyilmastonmuutoksetmikrolevätAquatische Ecologie en WaterkwaliteitsbeheerSurface temperatureLakesShallow13. Climate actionDISSOLVED ORGANIC-MATTER; CYANOBACTERIAL BLOOMS; PHYTOPLANKTON DYNAMICS; FILAMENTOUS CYANOBACTERIA; PHOTOSYSTEM-II; GREEN-ALGAE; LAKES; EUTROPHICATION; SHALLOW; TEMPERATEPhytoplanktonDISSOLVED ORGANIC-MATTERkerrostuneisuusHumanitiesvalo
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The ABCflux database: Arctic-boreal CO2flux observations and ancillary information aggregated to monthly time steps across terrestrial ecosystems

2022

Past efforts to synthesize and quantify the magnitude and change in carbon dioxide (CO2) fluxes in terrestrial ecosystems across the rapidly warming Arctic–boreal zone (ABZ) have provided valuable information but were limited in their geographical and temporal coverage. Furthermore, these efforts have been based on data aggregated over varying time periods, often with only minimal site ancillary data, thus limiting their potential to be used in large-scale carbon budget assessments. To bridge these gaps, we developed a standardized monthly database of Arctic–boreal CO2 fluxes (ABCflux) that aggregates in situ measurements of terrestrial net ecosystem CO2 exchange and its derived partitioned…

hiilidioksidiarktinen aluemaaperäClimate ResearchEDDY COVARIANCE TECHNIQUECARBON-DIOXIDE EXCHANGESPATIAL VARIABILITYkausivaihtelutFOREST114 Physical sciencesPERMAFROST CARBONPhysical Geography and Environmental GeoscienceTUNDRAAtmospheric SciencesNETkasvihuonekaasutGeochemistryRESPIRATION/dk/atira/pure/sustainabledevelopmentgoals/climate_actionMeteorology and Atmospheric SciencesSDG 13 - Climate ActionSTOCKSpäästöttutkimusaineistoCHAMBEREarth System Science Data
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Large stocks of peatland carbon and nitrogen are vulnerable to permafrost thaw

2020

Significance Over many millennia, northern peatlands have accumulated large amounts of carbon and nitrogen, thus cooling the global climate. Over shorter timescales, peatland disturbances can trigger losses of peat and release of greenhouses gases. Despite their importance to the global climate, peatlands remain poorly mapped, and the vulnerability of permafrost peatlands to warming is uncertain. This study compiles over 7,000 field observations to present a data-driven map of northern peatlands and their carbon and nitrogen stocks. We use these maps to model the impact of permafrost thaw on peatlands and find that warming will likely shift the greenhouse gas balance of northern peatlands. …

Climate Researchnorthern peatlandspermafrost thawhiilinitrogen stocksikiroutagreenhouse gas fluxesilmastonmuutoksetKlimatforskningcarbon stockstyppikasvihuonekaasutEarth Atmospheric and Planetary SciencesPhysical SciencesturvemaatProceedings of the National Academy of Sciences of the United States of America
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Current and emerging developments in subseasonal to decadal prediction

2020

Weather and climate variations on subseasonal to decadal time scales can have enormous social, economic, and environmental impacts, making skillful predictions on these time scales a valuable tool for decision-makers. As such, there is a growing interest in the scientific, operational, and applications communities in developing forecasts to improve our foreknowledge of extreme events. On subseasonal to seasonal (S2S) time scales, these include high-impact meteorological events such as tropical cyclones, extratropical storms, floods, droughts, and heat and cold waves. On seasonal to decadal (S2D) time scales, while the focus broadly remains similar (e.g., on precipitation, surface and upper-…

Atmospheric ScienceWorld Climate Research Programme010504 meteorology & atmospheric sciencesAtmosfera -- Fenòmens0207 environmental engineeringWeather forecastingInitializationClimate changeWeather and climate02 engineering and technologycomputer.software_genreClimate prediction01 natural sciences//purl.org/becyt/ford/1 [https]//purl.org/becyt/ford/1.5 [https]MeteorologyHigh-impact meteorological eventsExtratropical cycloneClimate changeMeteorologiaPredictability020701 environmental engineeringdecadal0105 earth and related environmental sciencessubseasonal:Desenvolupament humà i sostenible::Degradació ambiental::Canvi climàtic [Àrees temàtiques de la UPC]Cold wavepredictionClimatic changesExtreme eventsAtmosfera -- Aspectes ambientalsTA13. Climate actionClimatologyWorld Weather Research ProgrammeEnvironmental scienceForecastTropical cyclonecomputerForecastingCanvis climàtics
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Climate change reshuffles northern species within their niches

2022

Climate change is a pervasive threat to biodiversity. While range shifts are a known consequence of climate warming contributing to regional community change, less is known about how species' positions shift within their climatic niches. Furthermore, whether the relative importance of different climatic variables prompting such shifts varies with changing climate remains unclear. Here we analysed four decades of data for 1,478 species of birds, mammals, butterflies, moths, plants and phytoplankton along a 1,200 km high latitudinal gradient. The relative importance of climatic drivers varied non-uniformly with progressing climate change. While species turnover among decades was limited, the …

Climate ResearchRANGE SHIFTSvaikutuksetMODELSperhosetspeciesEnvironmental Science (miscellaneous)muutosnisäkkäätkasviteläimistölajit1172 Environmental sciencesbiodiversityclimatic changeplanktonclimatic nicheEnvironmental Sciences (social aspects to be 507)FINLANDilmastonmuutoksetEXTINCTION RISKTRENDSbiodiversiteettiekologinen lokero1181 Ecology evolutionary biologylinnutMARINESocial Sciences (miscellaneous)climate-change ecology
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Regional climate model simulations for Europe at 6 and 0.2 k BP: sensitivity to changes in anthropogenic deforestation

2014

International audience; This study aims to evaluate the direct effects of anthropogenic deforestation on simulated climate at two contrasting periods in the Holocene, ∼ 6 and ∼ 0.2 k BP in Eu-rope. We apply the Rossby Centre regional climate model RCA3, a regional climate model with 50 km spatial resolution, for both time periods, considering three alternative descriptions of the past vegetation: (i) potential natural vegetation (V) simulated by the dynamic vegetation model LPJ-GUESS, (ii) potential vegetation with anthro-pogenic land use (deforestation) from the HYDE3.1 (History Database of the Global Environment) scenario (V + H3.1), and (iii) potential vegetation with anthropogenic land …

VEGETATION DYNAMICSClimate ResearchLAND-COVER CHANGES:Mathematics and natural scienses: 400::Geosciences: 450::Meteorology: 453 [VDP]lcsh:Environmental protectionStratigraphyeducationPotential natural vegetation580 Plants (Botany)Climate modelKlimatforskningNORTHERN SWEDEN:Matematikk og naturvitenskap: 400::Geofag: 450::Meteorologi: 453 [VDP]lcsh:Environmental pollutionDeforestationEvapotranspirationlcsh:TD169-171.8anthropogenic deforestationlcsh:Environmental sciencesHolocene1172 Environmental sciencesddc:910HOLOCENE CLIMATElcsh:GE1-350Global and Planetary ChangeLand useHolocene:Mathematics and natural scienses: 400::Zoology and botany: 480::Vegetation history: 495 [VDP]IBERIAN PENINSULAPaleontologyVegetation[SHS.GEO]Humanities and Social Sciences/Geography15. Life on landAlbedoLAKE-LEVEL FLUCTUATIONSEuropeLAST GLACIAL MAXIMUMRegional climate; deforestation; Europe13. Climate actionPOLLEN DATAClimatologylcsh:TD172-193.5[SDE]Environmental SciencesSURFACE CLIMATEBALTIC SEAClimate model:Matematikk og naturvitenskap: 400::Zoologiske og botaniske fag: 480::Vegetasjonshistorie: 495 [VDP]
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The SISAL database: a global resource to document oxygen and carbon isotope records from speleothems

2018

Stable isotope records from speleothems provide information on past climate changes, most particularly information that can be used to reconstruct past changes in precipitation and atmospheric circulation. These records are increasingly being used to provide “out-of-sample” evaluations of isotope-enabled climate models. SISAL (Speleothem Isotope Synthesis and Analysis) is an international working group of the Past Global Changes (PAGES) project. The working group aims to provide a comprehensive compilation of speleothem isotope records for climate reconstruction and model evaluation. The SISAL database contains data for individual speleothems, grouped by cave system. Stable isotopes of oxyg…

010506 paleontologyClimate Research010504 meteorology & atmospheric sciencesClimate changeSpeleothemF800010502 geochemistry & geophysicscomputer.software_genre01 natural sciencesKlimatforskningCavePaleoclimatologylcsh:Environmental sciences0105 earth and related environmental scienceslcsh:GE1-350geographygeography.geographical_feature_categoryDatabaseStable isotope ratiospeleothemsPALEOCLIMATOLOGIAlcsh:QE1-996.5lcsh:GeologyMetadata13. Climate actionGeneral Earth and Planetary SciencesEnvironmental scienceClimate modelcomputerChronologyEarth System Science Data
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Environmental drivers and abrupt changes of phytoplankton community in temperate lake Lielais Svētiņu, Eastern Latvia, over the last Post-Glacial per…

2021

Understanding the long-term dynamics of ecological communities on the centuries-to-millennia scale is important for explaining the emergence of present-day biodiversity patterns and for predicting possible future scenarios. Fossil pigments and ancient DNA present in various sedimentary deposits can be analysed to study long-term changes in ecological communities. We analysed recent compilations of data, including fossil pigments, microfossils, and molecular inventories from the sedimentary archives, to understand the impact of gradual versus abrupt climate changes on the ecosystem status of a regional model lake over the last ~14.5 kyr. Such long and complete paleo-archives are scarce in No…

ArcheologyClimate Researchregime shiftClimate changeEastern Europeland-use changeTemperate climatestatistical modellingfossil pigmentsRegime shiftEcosystemGlacial periodEcology Evolution Behavior and SystematicsHoloceneGlobal and Planetary ChangeHolocenepaleolimnologyGlobal warmingecological disturbanceGeologyancient sedimentary DNAarticlesAbrupt climate changeEnvironmental sciencePhysical geographyphototrophsgeneric anthropogenic influenceQuaternary Science Reviews
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