Search results for "13. Climate action"

showing 10 items of 2386 documents

Palladium-Catalyzed Direct Arylation of Heteroaromatics with Activated Aryl Chlorides Using a Sterically Relieved Ferrocenyl-Diphosphane

2012

International audience; The palladium-catalyzed direct arylations at C3 or C4 positions of heteroaromatics are known to be more challenging than at C2 or C5 positions. Aryl chlorides are also challenging substrates for direct arylation of heteroaromatics. We observed that in the presence of a palladium-catalyst combining only 0.5 mol % of Pd(OAc)2 with the sterically relieved new ferrocenyl diphosphane Sylphos, the direct arylation at C3 or C4 of oxazoles, a benzofuran, an indole, and a pyrazole was found to proceed in moderate to high yields using a variety of electron deficient aryl chlorides. Turnover numbers up to 176 have been obtained with this catalyst. Assessment of the electron-don…

ligand designSteric effectsC−H bond functionalizationaryl chlorideschemistry.chemical_elementPyrazole010402 general chemistry01 natural sciencesMedicinal chemistryCatalysis[ CHIM.CATA ] Chemical Sciences/Catalysischemistry.chemical_compoundOrganic chemistryDiphosphaneMethyleneBenzofuranIndole test010405 organic chemistryArylferrocenylphosphaneheteroarenes[CHIM.CATA]Chemical Sciences/CatalysisGeneral Chemistrypalladium0104 chemical scienceschemistry13. Climate actionPalladiumACS Catalysis
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Temperature effects explain continental scale distribution of cyanobacterial toxins

2018

Insight into how environmental change determines the production and distribution of cyanobacterial toxins is necessary for risk assessment. Management guidelines currently focus on hepatotoxins (microcystins). Increasing attention is given to other classes, such as neurotoxins (e.g., anatoxin-a) and cytotoxins (e.g., cylindrospermopsin) due to their potency. Most studies examine the relationship between individual toxin variants and environmental factors, such as nutrients, temperature and light. In summer 2015, we collected samples across Europe to investigate the effect of nutrient and temperature gradients on the variability of toxin production at a continental scale. Direct and indirect…

light climate0106 biological sciencesthermoclineBacterial toxinstoksiinitlimit of quantitationToxines bacterianesMicrocystin-LRToxicology01 natural sciencesAnatoxin-aanalogs and derivativesBLOOMSDirect EffectsuracilWater Pollutantschemistry.chemical_classificationTemperaturesFRESH-WATERlatitudemaximum buoyancy frequency6. Clean waterclimate changeIndirect effectsEUTROPHICATIONmicrocystin RRarticlesGROWTHlämpötilaLAKESmicrocystin; anatoxin; cylindrospermopsin; temperature; direct effects; indirect effects; spatial distribution; European Multi Lake Surveyepilimnetic temperatureta1172cyanobacteria lakes climate warming microcystin; anatoxin; cylindrospermopsin; temperature; direct effects; indirect effects; spatial distribution; European Multi Lake SurveyZoologyArticlewater pollutantMICROCYSTIS-AERUGINOSAAlkaloidsSettore BIO/07 - ECOLOGIANATURAL SCIENCES. Biology.Spatial distributionMicrocystis aeruginosaUracillakesyanobakteeritIndirect Effectsliquid chromatography-mass spectrometry1172 Environmental sciencesEkologinutrient010604 marine biology & hydrobiologylcsh:RmicrobiologyClimatic changesmicrocystin LRAnatoxinLakesSpatial Distributionchemistrynodularinmicrobial diversityphytoplanktonta1181CylindrospermopsinTropanesCyanobacteriaAquatic Ecology and Water Quality ManagementanalysisHealth Toxicology and Mutagenesislcsh:Medicineenvironmental parameters010501 environmental sciencesmedicine.disease_causenitrogenchemistry.chemical_compoundsea surface temperatureenvironmental factorddc:550Canvi climàticphosphorusPRIRODNE ZNANOSTI. Biologija.limit of detectionEcologyCyanobacteria ToxinsbiologyTemperaturelevinneisyysmicrocystin ; anatoxin ; cylindrospermopsin ; temperature ; direct effects ; indirect effects ; spatial distribution ; European Multi Lake SurveyNodularintropane derivativeEuropeDAPHNIA-MAGNAİndirect EffectsCylindrospermopsinDirect effectsmicrobial communityEnvironmental Monitoringhigh performance liquid chromatographyMicrocystinsClimate ChangeBacterial ToxinsMicrocystinMicrocystinCyanobacteriavälittömät oikeusvaikutuksetcyanobacteriumddc:570geographic distributionmedicinebacterial toxincontrolled studyddc:610Institut für Biochemie und Biologie0105 earth and related environmental sciencesnonhumanWIMEKToxinlongitudePHYTOPLANKTON ASSEMBLAGESEuropean Multi Lake SurveyAquatic EcologyNITROGEN AVAILABILITYanatoxin aAquatische Ecologie en Waterkwaliteitsbeheerbiology.organism_classificationClimatic changeCLIMATE13. Climate actionresponse variableCanvis climàtics
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Recent changes in chironomid communities and hypolimnetic oxygen conditions relate to organic carbon in subarctic ecotonal lakes

2018

A key question in aquatic elemental cycling is related to the influence of bottom water oxygen conditions in regulating the burial and release of carbon under climate warming. In this study, we used head capsules of Chironomidae larvae to assess community and diversity change between the past (estimated as Pre-Industrial Period) and present and to reconstruct changes in hypolimnetic oxygen conditions from 30 subarctic ecotonal lakes (northeastern Lapland) using the top-bottom paleolimnological approach applying surface sediment (topmost 0-2 cm) and reference (4-5 cm) samples. Subsequently, we tested the findings against dissolved organic carbon (DOC) concentration of the sites. We found tha…

liuennut orgaaninen hiili010504 meteorology & atmospheric sciencesClimateCALIBRATION MODEL010501 environmental sciencesDOC01 natural sciencesPaleolimnologyFreshwater ecosystemFRESH-WATER ECOSYSTEMSDissolved organic carbonGREENHOUSE-GASWaste Management and DisposalTEMPERATUREhappikatoTotal organic carbonCLIMATE-CHANGEpaleolimnologyPollutionSubarctic climateAdaptation PhysiologicalpaleolimnologiaOceanographyBenthic zonedissolved oxygenHypolimnionEnvironmental MonitoringEnvironmental EngineeringClimate Changeta1171ChironomidaeBottom waterRECONSTRUCTIONSSUBFOSSIL CHIRONOMIDSEnvironmental ChemistryAnimals14. Life underwatersurviaissääsket1172 Environmental sciences0105 earth and related environmental sciencesMIDGES DIPTERA15. Life on landNUTRIENT DYNAMICSCarbontop-bottom approachOxygenLakesLapland13. Climate actionEnvironmental scienceta1181subarktinen vyöhykeSOUTHERN FINLANDScience of the Total Environment
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Accounting for littoral primary production by periphyton shifts a highly humic boreal lake towards net autotrophy

2016

1. The prevailing view that many humic lakes are net heterotrophic is commonly based on pelagicmeasurements alone. Poor light conditions in humic lakes are assumed to constrain littoral primaryproduction (PP), such that the littoral zone has been considered an insignificant contributor towhole-lake PP. However, that assumption is based on models and inferences from pelagic processeswhich do not take littoral zone structure into account. Many lakes have an extensive ring of aquaticvegetation lying near the water surface, which provides substratum for epiphytic algae under well-illuminated conditions.2. We measured both pelagic and littoral PP and community respiration (CR) in Mekkoj€arvi, a s…

liuennut orgaaninen hiili0106 biological sciences010504 meteorology & atmospheric sciencesAquatic Science01 natural sciencesAlgaeAquatic plantDissolved organic carbonLittoral zonePeriphyton0105 earth and related environmental sciencesheterotrophybiologyEcology010604 marine biology & hydrobiologyPelagic zonebiology.organism_classificationdissolved organic carbonHabitatBoreal13. Climate actionautotrophyta1181benthic primary productionEnvironmental sciencelake metabolismFreshwater Biology
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Increasing temperature and productivity change biomass, trophic pyramids and community‐level omega‐3 fatty acid content in subarctic lake food webs

2021

Climate change in the Arctic is outpacing the global average and land-use is intensifying due to exploitation of previously inaccessible or unprofitable natural resources. A comprehensive understanding of how the joint effects of changing climate and productivity modify lake food web structure, biomass, trophic pyramid shape and abundance of physiologically essential biomolecules (omega-3 fatty acids) in the biotic community is lacking. We conducted a space-for-time study in 20 subarctic lakes spanning a climatic (+3.2 degrees C and precipitation: +30%) and chemical (dissolved organic carbon: +10 mg/L, total phosphorus: +45 mu g/L and total nitrogen: +1,000 mu g/L) gradient to test how temp…

liuennut orgaaninen hiili0106 biological sciences010504 meteorology & atmospheric sciencesland&#8208maankäyttöDOCtrophic level01 natural sciencesravintoaineetBiomassland‐use3 HUFAECOSYSTEM SIZEGeneral Environmental ScienceTrophic levelPOLYUNSATURATED FATTY-ACIDSGlobal and Planetary ChangeEcologyPrimary producersEcologyvesiekosysteemitforestryTemperatureomega‐3 HUFAfood web structureBIOACCUMULATIONomega&#8208Food webEUTROPHICATION1181 Ecology evolutionary biologyCOREGONUSPOPULATIONStrophic pyramidFood ChainEcological pyramid010603 evolutionary biologyFISHnutrientsFatty Acids Omega-3PhytoplanktonAnimalsEnvironmental ChemistryDominance (ecology)14. Life underwaterOmega 3 fatty acidCHAIN LENGTH0105 earth and related environmental sciencesilmastonmuutokset15. Life on landomegarasvahapotCLIMATELakesMORPHOMETRY13. Climate actionPhytoplanktonEnvironmental scienceWhole foodmetsänhoitouseravintoverkotGlobal Change Biology
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Carbon dynamics in highly heterotrophic subarctic thaw ponds

2015

Abstract. Global warming has accelerated the formation of permafrost thaw ponds in several subarctic and arctic regions. These ponds are net heterotrophic as evidenced by their greenhouse gas (GHG) supersaturation levels (CO2 and CH4), and generally receive large terrestrial carbon inputs from the thawing and eroding permafrost. We measured seasonal and vertical variations in the concentration and type of dissolved organic matter (DOM) in five subarctic thaw (thermokarst) ponds in northern Quebec, and explored how environmental gradients influenced heterotrophic and phototrophic biomass and productivity. Late winter DOM had low aromaticity indicating reduced inputs of terrestrial carbon, wh…

liuennut orgaaninen hiili0106 biological sciences010504 meteorology & atmospheric sciencesthermokarstlcsh:LifeBiomassPermafrost01 natural sciencesThermokarstlcsh:QH540-549.5permafrost thaw pondsDissolved organic carbonsubarctic regionEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesEarth-Surface ProcessesgeographyMicrobial food webgeography.geographical_feature_categorybacterioplankton010604 marine biology & hydrobiologylcsh:QE1-996.5Bacterioplanktondissolved organic matter15. Life on landSubarctic climatelcsh:Geologylcsh:QH501-531OceanographyProductivity (ecology)13. Climate actionEnvironmental chemistryEnvironmental sciencelcsh:EcologyBiogeosciences
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Autochthonous organic matter promotes DNRA and suppresses N2O production in sediments of the coastal Baltic Sea

2021

Coastal environments are nitrogen (N) removal hot spots, which regulate the amount of land-derived N reaching the open sea. However, mixing between freshwater and seawater creates gradients of inorganic N and bioavailable organic matter, which affect N cycling. In this study, we compare nitrate reduction processes between estuary and offshore archipelago environments in the coastal Baltic Sea. Denitrification rates were similar in both environments, despite lower nitrate and carbon concentrations in the offshore archipelago. However, DNRA (dissimilatory nitrate reduction to ammonium) rates were higher at the offshore archipelago stations, with a higher proportion of autochthonous carbon. Th…

liuennut orgaaninen hiili0106 biological sciencesAMMONIUM DNRADenitrification010504 meteorology & atmospheric sciencessedimentitOceanographyOXIDATION01 natural sciencesCARBONchemistry.chemical_compoundNitrateDOMTotal organic carbonchemistry.chemical_classificationdenitrificationgeography.geographical_feature_categorysediment organic matterN2ODENITRIFICATIONNitrogenDNRAEnvironmental chemistryArchipelagoorgaaninen ainesgeographic locationsdenitrifikaatiosuistotchemistry.chemical_elementDISSIMILATORY NITRATE REDUCTIONAquatic ScienceestuaryESTUARIESOrganic matter14. Life underwater1172 Environmental sciences0105 earth and related environmental sciencesgeography010604 marine biology & hydrobiologyEstuaryNITROUS-OXIDEPATHWAYSEstuaryN-2Sediment organic matterchemistrytypensidonta13. Climate actionEnvironmental scienceSeawaterrannikkovedet
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Biogenic Fenton process - A possible mechanism for the mineralization of organic carbon in fresh waters.

2020

To explore the mechanisms that mineralize poorly bioavailable natural organic carbon (OC), we measured the mineralization of OC in two lake waters over long-term experiments (up to 623 days) at different pH and iron (Fe) levels. Both the microbial and photochemical mineralization of OC was higher at pH acidified to 4 than at the ambient pH 5 or an elevated pH 6. During 244 days, microbes mineralized up to 60% of OC in the 10-mu m filtrates of lake water and more than 27% in the 1-mu m filtrates indicating that large-sized microbes/grazers enhance the mineralization of OC. A reactivity continuum model indicated that the acidification stimulated the microbial mineralization of OC especially i…

liuennut orgaaninen hiiliHYDROXYL RADICAL FORMATIONbiogenic FentonARCTIC SOIL0208 environmental biotechnologyMicrobial metabolismrauta02 engineering and technology010501 environmental sciencesReactivity continuum01 natural sciencesOxygenOXYGENchemistry.chemical_compoundironDissolved organic carbonmikrobitHydrogen peroxideDIOXIDE EMISSIONSWaste Management and DisposalWater Science and Technologyreactive oxygen speciesPHOTOCHEMICAL MINERALIZATIONTotal organic carbonINORGANIC CARBONkemialliset reaktiot218 Environmental engineeringChemistryhiilen kiertoEcological ModelingPollution6. Clean waterMicrobesEnvironmental chemistrymicrobesOxidation-ReductionEnvironmental EngineeringIronchemistry.chemical_elementjärvetreactivity continuum.HYDROGEN-PEROXIDETotal inorganic carbonBiogenic FentonHUMIC SUBSTANCESOrganic carbon0105 earth and related environmental sciencesCivil and Structural Engineeringorganic carbonMineralization (soil science)Hydrogen PeroxideCarbon020801 environmental engineeringBioavailabilitymineralisaatioLakesDARK PRODUCTION13. Climate actionReactive oxygen speciesWater Pollutants ChemicalWater research
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Major loss of coralline algal diversity in response to ocean acidification

2021

[Abstract] Calcified coralline algae are ecologically important in rocky habitats in the marine photic zone worldwide and there is growing concern that ocean acidification will severely impact them. Laboratory studies of these algae in simulated ocean acidification conditions have revealed wide variability in growth, photosynthesis and calcification responses, making it difficult to assess their future biodiversity, abundance and contribution to ecosystem function. Here, we apply molecular systematic tools to assess the impact of natural gradients in seawater carbonate chemistry on the biodiversity of coralline algae in the Mediterranean and the NW Pacific, link this to their evolutionary h…

macroalgae0106 biological sciencesecosystem engineersOceans and SeasBiodiversityadaptation010603 evolutionary biology01 natural sciencesEcosystem engineerEvolutionary historyMacroalgaeAlgaeClimate changeEnvironmental ChemistrySeawaterPhotic zoneEcosystem14. Life underwaterAdaptation[SDU.STU.OC]Sciences of the Universe [physics]/Earth Sciences/OceanographyEcosystembiodiversityGeneral Environmental ScienceGlobal and Planetary ChangeEcologybiologyEcology010604 marine biology & hydrobiologyOcean chemistryfungiCoralline algaeOcean acidificationBiodiversitySeaweedsHydrogen-Ion Concentration15. Life on landbiology.organism_classificationpsbAseaweedsclimate change13. Climate actionRhodophytaEcosystem engineers[SDV.EE.BIO]Life Sciences [q-bio]/Ecology environment/Bioclimatology[SDE.BE]Environmental Sciences/Biodiversity and Ecologyevolutionary historyGlobal Change Biology
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Natural acidification changes the timing and rate of succession, alters community structure, and increases homogeneity in marine biofouling communiti…

2017

Ocean acidification may have far-reaching consequences for marine community and ecosystem dynamics, but its full impacts remain poorly understood due to the difficulty of manipulating pCO2 at the ecosystem level to mimic realistic fluctuations that occur on a number of different timescales. It is especially unclear how quickly communities at various stages of development respond to intermediate-scale pCO2 change and, if high pCO2 is relieved mid-succession, whether past acidification effects persist, are reversed by alleviation of pCO2 stress, or are worsened by departures from prior high pCO2 conditions to which organisms had acclimatized. Here, we used reciprocal transplant experiments al…

marine biodiversitySettore BIO/07 - Ecologia0106 biological sciencesFood Chain010504 meteorology & atmospheric sciencesBiofoulingEcological successionBiology01 natural sciencesEnvironmental ChemistryAnimalsEcosystemSeawater14. Life underwaterUrochordataEcosystem0105 earth and related environmental sciencesGeneral Environmental Sciencenatural analogueGlobal and Planetary ChangeFouling community2300EcologyEcologyOcean acidification010604 marine biology & hydrobiologyCommunity structureOcean acidificationInterspecific competition15. Life on landCarbon DioxideHydrogen-Ion ConcentrationFood webclimate change13. Climate actionBenthic zonecommunityAcidsGlobal change biology
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