Search results for "NITROGEN DEPOSITION"

showing 5 items of 5 documents

Developing an indicator-modelling approach to forecast changes in nitrogen critical load exceedance across Europe arising from agricultural reform

2011

International audience; Atmospheric nitrogen (N) deposition above the critical load causes eutrophication with adverse impacts on biodiversity. Average Accumulated critical load Exceedance (AAE) is a measure of the amount of critical load exceedance and the area of habitat which is affected, and has been adopted in Europe as a pressure indicator for biodiversity. In Europe, AAE is calculated by the Coordination Centre for Effects (CCE) of the United Nations Economic Commission for Europe based on modelled nitrogen deposition and country-level reporting of critical load thresholds and ecosystem area. Due to differences in country-level reporting, AAE values for semi-natural habitats may show…

010504 meteorology & atmospheric sciencesBiodiversityGeneral Decision Sciences010501 environmental sciences01 natural sciencesAMMONIA EMISSIONEnvironmental protectionEcosystemEcology Evolution Behavior and Systematics0105 earth and related environmental sciences2. Zero hungerCritical loadNITROGEN DEPOSITIONEcologyEMISSION D'AMONIAQUEbusiness.industry15. Life on landDeposition (aerosol physics)Habitat13. Climate actionAgricultureEUTROPHICATIONSpatial ecologyEnvironmental scienceBIODIVERSITYCAP REFORM[SDE.BE]Environmental Sciences/Biodiversity and EcologyEutrophicationbusiness
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Environmental drivers interactively affect individual tree growth across temperate European forests

2019

Forecasting the growth of tree species to future environmental changes requires a better understanding of its determinants. Tree growth is known to respond to global-change drivers such as climate change or atmospheric deposition, as well as to local land-use drivers such as forest management. Yet, large geographical scale studies examining interactive growth responses to multiple global-change drivers are relatively scarce and rarely consider management effects. Here, we assessed the interactive effects of three global-change drivers (temperature, precipitation and nitrogen deposition) on individual tree growth of three study species (Quercus robur/petraea, Fagus sylvatica and Fraxinus exc…

0106 biological sciences010504 meteorology & atmospheric sciencesEnvironmental changeClimate ChangeForest managementClimate changeForests010603 evolutionary biology01 natural sciencesTreesQuercus roburCoppicingQuercusFagus sylvaticabasal area incrementTemperate climateFagusEnvironmental ChemistryBosecologie en Bosbeheer/dk/atira/pure/core/keywords/biologyInstitut für Biochemie und Biologie0105 earth and related environmental sciencesGeneral Environmental ScienceGlobal and Planetary Changehistorical ecologyEcologybiologyEcologyScots pineTemperature15. Life on landNitrogen Cyclebiology.organism_classificationPE&RCForest Ecology and Forest ManagementDroughtsEuropenitrogen depositionddc:580climate changeFraxinusEcosystems Research13. Climate actionEnvironmental sciencesense organstree-ring analysis
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Temperature controls organic carbon sequestration in a subarctic lake

2016

AbstractWidespread ecological reorganizations and increases in organic carbon (OC) in lakes across the Northern Hemisphere have raised concerns about the impact of the ongoing climate warming on aquatic ecosystems and carbon cycling. We employed diverse biogeochemical techniques on a high-resolution sediment record from a subarctic lake in northern Finland (70°N) to examine the direction, magnitude and mechanism of change in aquatic carbon pools prior to and under the anthropogenic warming. Coupled variation in the elemental and isotopic composition of the sediment and a proxy-based summer air temperature reconstruction tracked changes in aquatic production, depicting a decline during a coo…

0106 biological sciencesBiogeochemical cycle010504 meteorology & atmospheric sciencesUV EXPOSUREta117101 natural sciencesenvironmental impactArticleCarbon cycleRECONSTRUCTIONSlimnologiacarbon cycle14. Life underwaterNORTHERN FENNOSCANDIA1172 Environmental sciences0105 earth and related environmental sciencesTotal organic carbonMultidisciplinaryNITROGEN DEPOSITIONCLIMATE-CHANGEfreshwater ecologyhiilen kierto010604 marine biology & hydrobiologyAquatic ecosystemlimnologyGlobal warming15. Life on landSubarctic climateFINNISH LAPLANDOceanography13. Climate actionBenthic zoneEASTERN FINLANDEnvironmental scienceta1181ICE-AGESENSITIVITYEnergy sourceSEDIMENTSScientific Reports
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Temporal turnover of the soil microbiome composition is guild-specific.

2021

Although spatial and temporal variation are both important components structuring microbial communities, the exact quantification of temporal turnover rates of fungi and bacteria has not been performed to date. In this study, we utilised repeated resampling of bacterial and fungal communities at specific locations across multiple years to describe their patterns and rates of temporal turnover. Our results show that microbial communities undergo temporal change at a rate of 0.010-0.025 per year (in units of Sorensen similarity), and the change in soil is slightly faster in fungi than in bacteria, with bacterial communities changing more rapidly in litter than soil. Importantly, temporal deve…

0106 biological sciencesLITTERBACTERIALSPATIAL VARIABILITYDIVERSITYBiologyFUNGAL COMMUNITIES010603 evolutionary biology01 natural sciences03 medical and health sciencesforestSoilTemporal changeMicrobiomeBacterial phylabacteriaEcology Evolution Behavior and SystematicsSCALESoil Microbiology030304 developmental biology0303 health sciencesNITROGEN DEPOSITIONECTOMYCORRHIZAL FUNGIEcologyMicrobiotaFungi15. Life on landMicrobial population biologyOAKGuild1181 Ecology evolutionary biologyLittertemporal turnovercommunity assemblyRESPONSESMycobiomeEcology lettersREFERENCES
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Late-Holocene variability in chironomid functional assemblages and carbon utilization in a tundra lake food web

2020

AbstractHigh latitude freshwater systems are facing changes in catchment-mediated allochthonous input, as well as physical and chemical controls triggered by on-going climate change, which may alter their carbon processing and ecological characteristics. To explore changes in chironomid functional responses and carbon utilization in relation to long-term environmental change, we studied a sediment core covering ca. 2000 years from a tundra lake in northern Finland, which was analysed for sediment geochemistry, isotopic composition of chironomid remains and their functional assemblages. We aimed to relate changes in chironomid functional feeding assemblages and resource utilization, based on…

0106 biological sciencesTERRESTRIALtundra010504 meteorology & atmospheric sciencesEnvironmental changestable isotopesClimate changeAquatic ScienceEnvironmental changejärvet01 natural sciencesPaleolimnologyCarbon utilizationClimate changesurviaissääsketPaleolimnologyHolocene0105 earth and related environmental sciencesStable isotopesNITROGEN DEPOSITIONpaleolimnologyEcology010604 marine biology & hydrobiologyGlobal warmingenvironmental changeilmastonmuutokset15. Life on landFINLANDpaleoekologiafunctional paleoecologypaleolimnologiaTundraFood webCLIMATEORGANIC-MATTERISOTOPE COMPOSITIONclimate changeARCTIC LAKES13. Climate actionEUTROPHICATION1181 Ecology evolutionary biologyEnvironmental scienceBIODIVERSITYScandinaviaFunctional paleoecologyympäristönmuutoksetravintoverkotSEDIMENTS
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