Search results for "Environmental chemistry"

showing 10 items of 3248 documents

Local temperatures inferred from plant communities suggest strong spatial buffering of climate warming across Northern Europe

2013

Recent studies from mountainous areas of small spatial extent (2500 km(2) ) suggest that fine-grained thermal variability over tens or hundreds of metres exceeds much of the climate warming expected for the coming decades. Such variability in temperature provides buffering to mitigate climate-change impacts. Is this local spatial buffering restricted to topographically complex terrains? To answer this, we here study fine-grained thermal variability across a 2500-km wide latitudinal gradient in Northern Europe encompassing a large array of topographic complexities. We first combined plant community data, Ellenberg temperature indicator values, locally measured temperatures (LmT) and globally…

0106 biological sciences010504 meteorology & atmospheric sciencesClimate ChangeClimate changeMetapopulation010603 evolutionary biology01 natural sciencesEnvironmental ChemistryPlant Physiological Phenomena0105 earth and related environmental sciencesGeneral Environmental ScienceGlobal and Planetary ChangeEcologyGeographyGlobal warmingTemperaturePlant communityBiota15. Life on landModels TheoreticalBiotaSpatial heterogeneityEurope13. Climate actionClimatologySpatial ecologySpatial extent
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Patterns of drought tolerance in major European temperate forest trees: climatic drivers and levels of variability

2013

The future performance of native tree species under climate change conditions is frequently discussed, since increasingly severe and more frequent drought events are expected to become a major risk for forest ecosystems. To improve our understanding of the drought tolerance of the three common European temperate forest tree species Norway spruce, silver fir and common beech, we tested the influence of climate and tree-specific traits on the inter and intrasite variability in drought responses of these species. Basal area increment data from a large tree-ring network in Southern Germany and Alpine Austria along a climatic cline from warm-dry to cool-wet conditions were used to calculate indi…

0106 biological sciences010504 meteorology & atmospheric sciencesClimate ChangeForest managementDrought toleranceAdaptation BiologicalClimate changeForestsModels Biological01 natural sciencesTreesBasal areaSpecies SpecificityGermanyForest ecologyEnvironmental ChemistryComputer SimulationBeech0105 earth and related environmental sciencesGeneral Environmental ScienceGlobal and Planetary ChangeEcologybiologyAgroforestryEcologyGlobal warmingTemperate forest15. Life on landbiology.organism_classificationDroughts13. Climate actionAustria010606 plant biology & botanyGlobal Change Biology
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Non‐linearity in interspecific interactions in response to climate change: cod and haddock as an example

2020

Climate change has profound ecological effects, yet our understanding of how trophic interactions among species are affected by climate change is still patchy. The sympatric Atlantic haddock and cod are co-occurring across the North Atlantic. They compete for food at younger stages and thereafter the former is preyed by the latter. Climate change might affect the interaction and coexistence of these two species. Particularly, the increase in sea temperature (ST) has been shown to affect distribution, population growth and trophic interactions in marine systems. We used 33-year long time series of haddock and cod abundances estimates from two data sources (acoustic and trawl survey) to analy…

0106 biological sciences010504 meteorology & atmospheric sciencesClimate ChangePopulation DynamicsClimate change010603 evolutionary biology01 natural sciencesAbundance (ecology)AnimalsEnvironmental ChemistryPopulation growthEcosystemVDP::Mathematics and natural science: 4000105 earth and related environmental sciencesGeneral Environmental ScienceTrophic levelGlobal and Planetary ChangeEcologybiologyEcologyPopulation sizeBayes TheoremInterspecific competitionHaddockbiology.organism_classificationGadiformesSympatric speciationEnvironmental science
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Rising temperature modulates pH niches of fen species

2021

Rising temperatures may endanger fragile ecosystems because their character and key species show different habitat affinities under different climates. This assumption has only been tested in limited geographical scales. In fens, one of the most endangered ecosystems in Europe, broader pH niches have been reported from cold areas and are expected for colder past periods. We used the largest European-scale vegetation database from fens to test the hypothesis that pH interacts with macroclimate temperature in forming realized niches of fen moss and vascular plant species. We calibrated the data set (29,885 plots after heterogeneity-constrained resampling) with temperature, using two macroclim…

0106 biological sciences010504 meteorology & atmospheric sciencesClimate Changemedia_common.quotation_subjectNicheBryophyta010603 evolutionary biology01 natural sciencesCompetition (biology)MireSphagnopsidaEnvironmental ChemistryEcosystem0105 earth and related environmental sciencesGeneral Environmental Sciencemedia_commonEcological nicheGlobal and Planetary ChangeEcologybiologyEcologyTemperatureEdaphicInterspecific competitionHydrogen-Ion Concentration15. Life on landbiology.organism_classificationMossSpecies richnessGlobal Change Biology
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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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Deciphering carbon sources of mussel shell carbonate under experimental ocean acidification and warming.

2018

Abstract Ocean acidification and warming is widely reported to affect the ability of marine bivalves to calcify, but little is known about the underlying mechanisms. In particular, the response of their calcifying fluid carbonate chemistry to changing seawater carbonate chemistry remains poorly understood. The present study deciphers sources of the dissolved inorganic carbon (DIC) in the calcifying fluid of the blue mussel (Mytilus edulis) reared at two pH (8.1 and 7.7) and temperature (16 and 22 °C) levels for five weeks. Stable carbon isotopic ratios of seawater DIC, mussel soft tissues and shells were measured to determine the relative contribution of seawater DIC and metabolically gener…

0106 biological sciences010504 meteorology & atmospheric sciencesMytilus edulisOceans and SeasCarbonateschemistry.chemical_elementAquatic ScienceOceanography01 natural scienceschemistry.chemical_compoundCalcification Physiologichemic and lymphatic diseasesDissolved organic carbonAnimalsSeawater0105 earth and related environmental sciencesCarbon IsotopesChemistry010604 marine biology & hydrobiologyOcean acidificationGeneral MedicineMusselHydrogen-Ion ConcentrationPollutionIsotopes of carbonEnvironmental chemistryCarbonateSeawaterCarbonBlue musselcirculatory and respiratory physiologyMarine environmental research
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The stoichiometry of particulate nutrients in Lake Tanganyika — implications for nutrient limitation of phytoplankton

1999

We studied the potential nutrient limitation of phytoplankton by means of seston nutrient stoichiometry and nutrient enrichment bioassays in the epilimnion of Lake Tanganyika. In most cases, the particulate carbon to phosphorus (C:P) ratio was high and indicated moderate P deficiency, while the respective C:N ratio mainly suggested moderate N deficiency. The N:P ratios of seston indicated rather balanced N and P supply. In three two-day enrichment bioassays in April—May 1995, a combined addition of P, N and organic carbon (glucose) always increased primary production in comparison to untreated controls. Primary production also slightly increased after the addition of phosphate-P, while the …

0106 biological sciences010504 meteorology & atmospheric sciencesbiology010604 marine biology & hydrobiologyPhosphorusSestonchemistry.chemical_elementPlanktonbiology.organism_classification01 natural sciences6. Clean waterchemistry.chemical_compoundNutrientAlgaechemistryEnvironmental chemistryEpilimnionBotanyPhytoplanktonAmmonium0105 earth and related environmental sciences
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Oxygen respiration rates of benthic foraminifera as measured with oxygen microsensors

2011

Abstract Oxygen respiration rates of benthic foraminifera are still badly known, mainly because they are difficult to measure. Oxygen respiration rates of seventeen species of benthic foraminifera were measured using microelectrodes and calculated on the basis of the oxygen fluxes measured in the vicinity of the foraminiferal specimens. The results show a wide range of oxygen respiration rates for the different species (from 0.09 to 5.27 nl cell−1 h−1) and a clear correlation with foraminiferal biovolume showed by the power law relationship: R = 3.98 10−3 BioVol0.88 where the oxygen respiration rate (R) is expressed in nl O2 h−1 and in μm3 biovolume (BioVol) (n = 44, R2 = 0.72, F = 114, p

0106 biological sciences010504 meteorology & atmospheric sciencesbiology010604 marine biology & hydrobiologyRhizariachemistry.chemical_elementAquatic Sciencebiology.organism_classification01 natural sciencesOxygenForaminifera[SDE.BE] Environmental Sciences/Biodiversity and EcologychemistryBenthic zoneEnvironmental chemistryRespirationBotany[SDE.BE]Environmental Sciences/Biodiversity and EcologyRespiration rateEcology Evolution Behavior and SystematicsComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciences
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Molecular composition of dissolved organic matter from a wetland plant (Juncus effusus) after photochemical and microbial decomposition (1.25 yr): Co…

2013

We hypothesized that microbial and photochemical processing of dissolved organic matter (DOM) determines its molecular formula composition in aquatic systems to a greater degree than does the original source of the DOM. To test this hypothesis, we exposed DOM from a leachate of a wetland plant (Juncus effusus) to solar radiation or incubated it in the dark for 1.25 yr. Analysis of the extracted DOM of the leachates via Fourier-transform ion cyclotron resonance mass spectrometry (FT-ICR-MS) identified 2800 molecular formulae. Of the formulae in the initial DOM, 11% were lost during microbial decomposition in the dark and 54% under solar radiation. Solar radiation also produced a large number…

0106 biological sciences010504 meteorology & atmospheric sciencesbiologyChemistry010604 marine biology & hydrobiologyAquatic ecosystemta1171biology.organism_classificationPhotochemistry01 natural sciencesDecompositionDeep seaWater columnGeochemistry and PetrologyEnvironmental chemistryJuncusDissolved organic carbonBotany14. Life underwaterLeachateMicrobial biodegradation0105 earth and related environmental sciences
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Insights from sodium into the impacts of elevated pCO2 and temperature on bivalve shell formation

2017

Ocean acidification and warming are predicted to affect the ability of marine bivalves to build their shells, but little is known about the underlying mechanisms. Shell formation is an extremely complex process requiring a detailed understanding of biomineralization processes. Sodium incorporation into the shells would increase if bivalves rely on the exchange of Na+/H+ to maintain homeostasis for shell formation, thereby shedding new light on the acid-base and ionic regulation at the calcifying front. Here, we investigated the combined effects of seawater pH (8.1, 7.7 and 7.4) and temperature (16 and 22 °C) on the growth and sodium composition of the shells of the blue mussel, Mytilus edul…

0106 biological sciences010504 meteorology & atmospheric sciencesbiologyEcology010604 marine biology & hydrobiologySodiumPatinopecten yessoensischemistry.chemical_elementOcean acidificationAquatic Sciencebiology.organism_classification01 natural sciencesMineralization (biology)MytiluschemistryEnvironmental chemistryScallopBivalve shellEcology Evolution Behavior and SystematicsBlue mussel0105 earth and related environmental sciencesJournal of Experimental Marine Biology and Ecology
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