Search results for "Permafrost"

showing 10 items of 29 documents

Nitrogen Hydrate Cage Occupancy and Bulk Modulus Inferred from Density Functional Theory-Derived Cell Parameters

2021

International audience; Gas clathrate hydrate solid materials, ubiquitous in nature as found either on the ocean floor, permafrost on the Earth, or in extraterrestrial planets and comets, are also technologically relevant, for example, in energy storage or carbon dioxide sequestration. Nitrogen hydrate, in particular, is of great interest as a promoter of the kinetics of the methane replacement reaction by carbon dioxide in natural gas hydrates. This hydrate may also appear in the chemistry of planets wherever nitrogen constitutes the majority of the atmosphere. A fine understanding of the stability of this hydrate under various thermodynamic conditions is thus of utmost importance to asses…

Materials scienceClathrate hydrateClathrate hydrates02 engineering and technology010402 general chemistryPermafrost01 natural sciencesAstrobiologyStructural / thermomechanical propertiesPlanetEnergetic propertiesPhysical and Theoretical ChemistryDFT - Density Functional TheoryComputingMilieux_MISCELLANEOUSBulk modulus[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnology0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic Materials[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistryGeneral EnergyExtraterrestrial life[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Density functional theory0210 nano-technologyHydrateEarth (classical element)
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Interfacial premelting of ice in nano composite materials

2018

Physical chemistry, chemical physics 21, 3734 - 3741 (2019). doi:10.1039/C8CP05604H

Materials scienceGeneral Physics and AstronomyThermodynamics02 engineering and technologyAtmospheric temperature rangeVermiculite540010402 general chemistry021001 nanoscience & nanotechnologyPermafrost01 natural sciences0104 chemical sciencesPremeltingSoil waterddc:540Melting pointIce nucleusPhysical and Theoretical Chemistry0210 nano-technologyClay minerals
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Sources of nitrous oxide and fate of mineral nitrogen in sub-Arctic permafrost peat soils

2021

Nitrous oxide (N2O) emissions from permafrost-affected terrestrial ecosystems have received little attention, largely because they have been thought to be negligible. Recent studies, however, have shown that there are habitats in subarctic tundra emitting N2O at high rates, such as bare peat surfaces on permafrost peatlands. The processes behind N2O production in these high-emitting habitats are, however, poorly understood. In this study, we established an in situ 15N-labelling experiment with the main objectives to partition the microbial sources of N2O emitted from bare peat surfaces (BP) on permafrost peatlands and to study the fate of ammonium and nitrate in these soils and in adjacent …

N2O emissionsDenitrificationPeatsource partitioningPermafrostMineralization (biology)gross N turnover rateschemistry.chemical_compoundArcticNitratepermafrost-climate feedbackssub-Arcticmineralization15N-labellingsoilsdenitrificationPermafrost soils15. Life on landTundranitrificationchemistry13. Climate actionEnvironmental chemistrySoil waterEnvironmental scienceNitrification
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Heterogeneity of carbon loss and its temperature sensitivity in East-European subarctic tundra soils

2016

Arctic peatlands store large stocks of organic carbon which are vulnerable to the climate change but their fate is uncertain. There is increasing evidence that a part of it will be lost as a result of faster microbial mineralization. We studied the vulnerability of 3500-5900 years old bare peat uplifted from permafrost layers by cryogenic processes to the surface of an arctic peat plateau. We aimed to find biotic and abiotic drivers of CLOSS from old peat and compare them with those of adjacent, young vegetated soils of the peat plateau and mineral tundra. The soils were incubated in laboratory at three temperatures (4°C, 12°C and 20°C) and two oxygen levels (aerobic, anaerobic). CLOSS was …

Peat010504 meteorology & atmospheric sciencesta1172Biomasschemistry.chemical_elementPermafrostSoil scienceBiologyPermafrost01 natural sciencesApplied Microbiology and BiotechnologyMicrobiologySoilNutrientBiomassTundraSoil Microbiology0105 earth and related environmental sciencesTotal organic carbonEcologyarctic peatlandsmicrobial biomassArctic Regionsta1183temperature04 agricultural and veterinary sciencesMineralization (soil science)TundraCarbonchemistrylaboratory incubationEnvironmental chemistry040103 agronomy & agriculture0401 agriculture forestry and fisheriesCarbonsoil carbon lossoxygenFEMS Microbiology Ecology
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A synthesis of methane emissions from 71 northern, temperate, and subtropical wetlands

2014

Wetlands are the largest natural source of atmospheric methane. Here, we assess controls on methane flux using a database of approximately 19 000 instantaneous measurements from 71 wetland sites located across subtropical, temperate, and northern high latitude regions. Our analyses confirm general controls on wetland methane emissions from soil temperature, water table, and vegetation, but also show that these relationships are modified depending on wetland type (bog, fen, or swamp), region (subarctic to temperate), and disturbance. Fen methane flux was more sensitive to vegetation and less sensitive to temperature than bog or swamp fluxes. The optimal water table for methane flux was consi…

PeatMarsh010504 meteorology & atmospheric sciencesta1172WetlandEnvironmentPermafrost01 natural sciencesSwampSoilEnvironmental ChemistryGroundwaterBog0105 earth and related environmental sciencesGeneral Environmental ScienceHydrologyGlobal and Planetary Changegeographygeography.geographical_feature_categoryGeographyEcologyAtmospheric methaneTemperature04 agricultural and veterinary sciences15. Life on land13. Climate actionWetlands040103 agronomy & agriculture0401 agriculture forestry and fisheriesWetland methane emissionsMethaneGlobal Change Biology
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Dataset of a globally relevant stock of soil nitrogen in the Yedoma permafrost domain

2022

This dataset merges nitrogen data from the Yedoma domain. It includes numerous fieldwork campaigns, which take place since 1998. In total 467 samples from the active layer (seasonally thawed layer), 175 samples from perennially frozen Holocene cover deposits, 479 samples from thermokarst deposits in drained thermokarst, 175 in-situ thawed, diagenetically (anaerobic microbial decomposition possible during unfrozen phase) altered Yedoma deposits (called Taberite), and 917 samples from frozen Yedoma deposits are included. Moreover it includes a NH4+ and NO3- quantification basing on of 658 samples, including 378 data points for NH4+ (active layer, 93; Holocene cover, 108; thermokarst sediment,…

Reference sourceNitrogenpermafrost thawLocationStratigraphyorganicDensityDEPTH sediment/rockPermafrost Research AWI_PermaArcticDensity bulk permafrostPermafrost Research (AWI_Perma)Sample numbernitrogen cycletop minCarbon Nitrogen ratiobulkELEVATIONLONGITUDEtotalorganic matterbottom maxDepthDepth top/minWater (ice) segregatedCarbonCarbon/Nitrogen ratiosediment rocksegregatedSample IDWater iceNitrogen totalclimate feedbackLATITUDEEarth System ResearchDepth bottom/maxPersistent IdentifierCarbon organic totalReference/sourcepermafrost
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Nitrous oxide fluxes from permafrost regions

2020

This dataset is a synthesis of published nitrous oxide (N2O) fluxes from permafrost-affected soils in Arctic, Antarctic, and Alpine permafrost regions. The data includes mean N2O flux rates measured under field (in situ) conditions and in intact plant-soil systems (mesocosms) under near-field conditions. The dataset further includes explanatory environmental parameters such as meteorological data, soil physical-chemical properties, as well as site and experimental information. Data has been synthesized from published studies (see 'Further details'), and in some cases the authors of published studies have been contacted for additional site-level information. The dataset includes studies publ…

Temperature airNumber of pointsHemeroby/disturbanceannual meanNumber of measurement seasonsTemperature soilDensityArea localityPrecipitationgravimetricmeanNitrateTime in minutesAnalytical methodType of studyReference of dataTemperature air annual meanArea/localitypH soilCarbon Nitrogen ratioYear of observationWater holding capacityOriginal unitSample code/labelReplicatesNitrous oxidepHPermafrost extentThaw depth of active layer meanTemperatureMonthSample code labelZoneWater filled pore space calculatedExperimental treatmentCountryPrecipitation annual meanOrganic carbon soilEarth System ResearchSoil water content gravimetricType of chamberAmmoniumPresence/absenceNitrogenairvolumetricLocationactive layerType of disturbanceSiteVegetation typeWater filled pore spaceSoil water content volumetricSoil water contentin mass nitrous oxidesoilThaw depth of active layercalculatedbulkmaximumLONGITUDEOrganic carbonEcosystemPublication of dataPresence absenceSoil organic matterEvent labelThaw depth of active layer maximumNumber of measurementsHemeroby disturbanceNitrous oxide flux in mass nitrous oxideCarbon/Nitrogen ratiofluxOriginal valueLATITUDEDayNitrogen soilSoil moistureDensity active layer bulk
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2020

Northern peatlands have accumulated large stocks of organic carbon (C) and nitrogen (N), but their spatial distribution and vulnerability to climate warming remain uncertain. Here, we used machine-learning techniques with extensive peat core data (n > 7,000) to create observation-based maps of northern peatland C and N stocks, and to assess their response to warming and permafrost thaw. We estimate that northern peatlands cover 3.7 ± 0.5 million km2 and store 415 ± 150 Pg C and 10 ± 7 Pg N. Nearly half of the peatland area and peat C stocks are permafrost affected. Using modeled global warming stabilization scenarios (from 1.5 to 6 °C warming), we project that the current sink of atmospheri…

Total organic carbonMultidisciplinaryPeat010504 meteorology & atmospheric sciencesGlobal warming010501 environmental sciences15. Life on landRadiative forcingAtmospheric sciencesPermafrost01 natural scienceschemistry.chemical_compoundchemistry13. Climate actionGreenhouse gasCarbon dioxideEnvironmental scienceSink (computing)0105 earth and related environmental sciencesProceedings of the National Academy of Sciences
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A review of the importance of mineral nitrogen cycling in the plant-soil-microbe system of permafrost-affected soils : changing the paradigm

2022

The paradigm that permafrost-affected soils show restricted mineral nitrogen (N) cycling in favor of organic N compounds is based on the observation that net N mineralization rates in these cold climates are negligible. However, we find here that this perception is wrong. By synthesizing published data on N cycling in the plant-soil-microbe system of permafrost ecosystems we show that gross ammonification and nitrification rates in active layers were of similar magnitude and showed a similar dependence on soil organic carbon (C) and total N concentrations as observed in temperate and tropical systems. Moreover, high protein depolymerization rates and only marginal effects of C:N stoichiomet…

arktinen aluemaaperämeta-analyysigross N turnoverikiroutakasvillisuusilmastonmuutoksetnitrogenmeta-analysismineralisaatiomikrobistotypensidontaplant-soil-microbe systemkasvitmineralizationtypen kiertoglobal changepermafrost
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A globally relevant stock of soil nitrogen in the Yedoma permafrost domain

2022

AbstractNitrogen regulates multiple aspects of the permafrost climate feedback, including plant growth, organic matter decomposition, and the production of the potent greenhouse gas nitrous oxide. Despite its importance, current estimates of permafrost nitrogen are highly uncertain. Here, we compiled a dataset of >2000 samples to quantify nitrogen stocks in the Yedoma domain, a region with organic-rich permafrost that contains ~25% of all permafrost carbon. We estimate that the Yedoma domain contains 41.2 gigatons of nitrogen down to ~20 metre for the deepest unit, which increases the previous estimate for the entire permafrost zone by ~46%. Approximately 90% of this nitrogen (37 gigaton…

biogeokemiamaaperäarktinen alueMultidisciplinaryNitrogenNitrous OxideGeneral Physics and AstronomyPermafrostikiroutaGeneral ChemistryilmastonmuutoksetGeneral Biochemistry Genetics and Molecular BiologyCarbonGreenhouse GasesSoiltypen kiertoorgaaninen ainesddc:500Dewey Decimal Classification::500 | Naturwissenschaften
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