Search results for "FOREST SOIL"

showing 5 items of 15 documents

Isotopic Differentiation (13C) of Dissolved Organic Carbon and CO2 During Organic Matter Degradation in Forest Soils: Influence of Vegetation

2008

International audience

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesisotopic differentiation[SDV]Life Sciences [q-bio][SDE]Environmental SciencesCO213Cforest soildissolved organic carbonComputingMilieux_MISCELLANEOUSorganic matter degradation
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Effects of stump removal on soil decomposer communities in undisturbed patches of the forest floor

2011

Soil preparation after clear-cutting leads to fragmentation of forest floor and, consequently, changes the habitat of decomposers. Stump removal for bioenergy is further increasing the disturbance in the soil. We studied responses of decomposers to stump removal in boreal spruce forests during the first 4 years after clear felling in relation to mounding. Samples for each decomposer organism group were taken from undisturbed forest floor patches that are the main habitat for decomposers after forest regeneration and whose amount and size obviously differ between the treatments. Microbial biomasses and community structure, and the abundance of enchytraeids, were not found to be affected by t…

body regionsForest managementfragmentationfungistump harvestingnutrient cyclingforest soilsoil fauna
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Short-term responses of decomposers and vegetation to stump removal

2011

havumetsätmaaperäforest managementbioenergyavohakkuutmaaperäeliöstödecomposer communityravinteetmaanpinnan rikkoutuminenhajottajaeliötkuusibioenergiaboreal forest soilsoil disturbanceNorway sprucekannonnostolaikkumätästyskannotravinnekiertonutrient dynamics
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Priming effect increases with depth in a boreal forest soil

2016

Abstract Climate warming increases labile carbon (C) inputs to soil through increased photosynthesis and C allocation belowground. This could counterintuitively lead to losses of soil C via priming effects (PE): the stimulation of soil organic matter (SOM) decomposition caused by labile C addition. Systematic quantification of PEs in different ecosystems is needed. We measured PEs of free-living soil microbes in different layers of a boreal forest soil, and found that the relative magnitude of the PE increased with soil depth. The relationship between relative PE and the added glucose amount also depended on the soil layer. Our results indicate that the decomposition of SOM in deeper soil l…

priming effect010504 meteorology & atmospheric sciencesta1172Soil Sciencechemistry.chemical_elementSoil sciencePhotosynthesiscomplex mixtures01 natural sciencesMicrobiologyboreal forest soilOrganic matterEcosystem0105 earth and related environmental scienceschemistry.chemical_classificationRhizosphereChemistrySoil organic matterTaigata118304 agricultural and veterinary sciences15. Life on landNitrogenC & N interactionsclimate change13. Climate action040103 agronomy & agricultureta11810401 agriculture forestry and fisheriesSoil horizonSoil biology & biochemistry
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Gamma-radioactive contamination in the area of Lesisko Reserve

2004

radioactice activityradionuclidesforest soilsPolish Journal of Environmental Studies
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