Search results for "Greenhouse ga"

showing 10 items of 262 documents

From wood pellets to wood chips, risks of degradation and emissions from the storage of woody biomass – A short review

2016

Abstract The compounds in stored woody biomass degrade as a result of chemical and/or biological processes during storage. These processes produce gaseous emissions. Recent studies concerning gaseous emissions from wood pellet storages are reviewed herein. The applicability of the results from pellet research to wood chips is discussed. Thorough scientific understanding on the storage phenomena of wood chips is extremely important as the threat of climate change and the need to reduce greenhouse gas emissions have led to an increased need to large scale wood chip storage to ensure supply. Typically the gases produced from stored woody biomasses are carbon monoxide (CO), carbon dioxide (CO 2…

Waste managementRenewable Energy Sustainability and the Environment020209 energyGlobal warmingPelletsBiomass02 engineering and technologyMethanechemistry.chemical_compoundchemistryGreenhouse gasCarbon dioxide0202 electrical engineering electronic engineering information engineeringEnvironmental scienceDegradation (geology)Spontaneous combustionRenewable and Sustainable Energy Reviews
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Measurement methodology for greenhouse gas emissions from storage of forest chips–A review

2015

Abstract Research on greenhouse gas emission related to solid biofuels has focused mainly on the emissions from end use and the production chain. GHG emissions from the storage of forest chips have not received much attention in recent literature. In order for EU emission reduction targets to be fully understood, emissions from solid biofuel storage needs to be better described. Usually emissions from chip piles have been modelled using studies from organic waste composting but these two materials can differ appreciably; for example the C/N-ratio and moisture content. Herein, previous studies on greenhouse gas emissions from forest chips piles during storage are reviewed. The objective is t…

Waste managementRenewable Energy Sustainability and the Environmentbusiness.industryEnvironmental engineeringBiomassBiodegradable wasteRenewable energyBioenergyBiofuelGreenhouse gasEnvironmental scienceFugitive emissionsbusinessProduction chainRenewable and Sustainable Energy Reviews
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Comprehensive dataset of shotgun metagenomes from oxygen stratified freshwater lakes and ponds

2021

Stratified lakes and ponds featuring steep oxygen gradients are significant net sources of greenhouse gases and hotspots in the carbon cycle. Despite their significant biogeochemical roles, the microbial communities, especially in the oxygen depleted compartments, are poorly known. Here, we present a comprehensive dataset including 267 shotgun metagenomes from 41 stratified lakes and ponds mainly located in the boreal and subarctic regions, but also including one tropical reservoir and one temperate lake. For most lakes and ponds, the data includes a vertical sample set spanning from the oxic surface to the anoxic bottom layer. The majority of the samples were collected during the open wate…

Water microbiologyData DescriptorMicrobial ecologyNutrientPhylogenyTotal organic carbonlammet0303 health sciencesEcologyMicrobiotahiilen kiertoQgenomiikkaMiljövetenskapSubarctic climateAnoxic waters6. Clean waterComputer Science ApplicationsOceanographydataFreshwater ecologyStatistics Probability and UncertaintyInformation SystemsStatistics and ProbabilityBiogeochemical cycleClimate ChangeScienceLibrary and Information SciencesjärvetCarbon CycleEducationCarbon cycleGreenhouse Gases03 medical and health sciencesparasitic diseasesEcosystem14. Life underwaterPonds030304 developmental biologyEkologiBacteria030306 microbiology15. Life on landArchaeaOxygenmikrobiekologiaLakesmikrobistoBoreal13. Climate actionMetagenomeEnvironmental scienceMetagenomicsEnvironmental SciencesScientific Data
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Fire Responses to the 2010 and 2015/2016 Amazonian Droughts

2019

Extreme droughts in Amazonia cause anomalous increase in fire occurrence, disrupting the stability of environmental, social and economic systems. Thus, understanding how droughts affect fire patterns in this region is essential for anticipating and planning actions for remediation of possible impacts. Focused on the Brazilian Amazon biome, we investigated fire responses to the 2010 and 2015/2016 Amazonian droughts using a remote sensing data. Our results revealed that the 2015/2016 drought surpassed the 2010 drought in intensity and extent. During the 2010 drought, we found a maximum area of 846,800 km2 (24% of the Brazilian Amazon biome) with significant (p<0.05) rainfall decrease in the f…

Wet seasongeographygeography.geographical_feature_categoryAmazon rainforestAmazonianBiomerainfalltemperatureForestryVegetationOld-growth forestold-growth forestremote sensingMODISDeforestationGreenhouse gasEnvironmental scienceGeneral Earth and Planetary Scienceslcsh:Qlcsh:ScienceCHIRPSFrontiers in Earth Science
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Agroecology and Strategies for Climate Change

2012

 ; Sustainable agriculture is a rapidly growing field aiming at producing food and energy in a sustainable way for humans and their children. Sustainable agriculture is a discipline that addresses current issues such as climate change, increasing food and fuel prices, poor-nation starvation, rich-nation obesity, water pollution, soil erosion, fertility loss, pest control, and biodiversity depletion.Novel, environmentally-friendly solutions are proposed based on integrated knowledge from sciences as diverse as agronomy, soil science, molecular biology, chemistry, toxicology, ecology, economy, and social sciences. Indeed, sustainable agriculture decipher mechanisms of processes that occur fro…

[SDE] Environmental SciencesIntegrated pest managementagroecology[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[SDV]Life Sciences [q-bio]Conservation agriculturenematode[SDE.MCG]Environmental Sciences/Global Changeswater use[ SDE.IE ] Environmental Sciences/Environmental Engineeringorganic farmingSustainable agriculturegeneticstransgenic cropsAgroecology[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciencesagriculturesustainable developmentAgroforestrybusiness.industry[SDE.IE]Environmental Sciences/Environmental Engineeringmethaneheavy metalenergy cropManure[SDV] Life Sciences [q-bio][ SDE.MCG ] Environmental Sciences/Global Changesclimate changeconservation agriculturefly ashAgriculturegreenhouse gasmanure[SDE]Environmental SciencesOrganic farmingFood systemsEnvironmental sciencebiofuelfood systembusinessrhizospherepest control
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Climate change: where are we right now?

2019

15ème Rencontres Bourgogne-Franche-Comté Nature : Changement climatique, humanité et biodiversité; International audience; Greenhouse gases (GHGs), naturally part of the atmosphere, have protected us from severe glaciations in thepast. Today, human activities increase GHG concentrations and cause rapid and unprecedented Earth warming.Climate change is not resumed only to warming, water cycle is also changed. All the researches confi rm: the climateis changing fast, too fast for ecosystems and societies to adapt. Despite the alerts of the international scientifi ccommunity, States gathered into Conferences of the Parties (COP) ratify agreements but do not comply with all theircommitments. Pu…

[SDU.STU.CL] Sciences of the Universe [physics]/Earth Sciences/ClimatologyGreenhouse gasesPolicy makersMitigationCitizens[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/ClimatologyScientistsDécideursAtténuationAdaptationGaz à effet de serreCitoyensScientifiques
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Ecology of N2O reducing bacteria in arable soils

2016

Nitrous oxide (N2O) is an important greenhouse gas (GHG) and the main ozone depleting substance. Agricultural soils are the main anthropogenic-induced source of this GHG. The concentration of N2O in the atmosphere is steadily increasing, but we still lack knowledge on the factors controlling its production and consumption in soils. The reduction of N2O to N2 by microorganisms harboring the N2O reductase gene (nosZ) is the only known biological process able to consume this GHG. Recent studies revealed a previously unknown clade of N2O-reducers which was shown to be important to the N2O sink capacity of soils. This thesis seeks to gain a greater understanding on the ecology of N2O-reducers in…

[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesNitrous oxideNitrogenAzoteNosZGreenhouse gasL'oxyde nitreuxMicrobial ecology[SDE.BE] Environmental Sciences/Biodiversity and EcologyAgricultural practicesLa dénitrificationDenitrificationLes pratiques agricoles[SDV.MP.BAC] Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyÉcologie microbienneGaz à effet de serre
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Bridging microbial community ecology and ecosystem functioning

2014

Microbial communities have a central role in many ecosystem functions such as biogeochemical cycling. Large variation in N-fluxes has been widely documented, mirroring the complexity of the underlying mechanisms. However, application of molecular biology approaches during the last decade has given the opportunity to look beyond these fluxes and to study the genetic and the ecology of the microorganisms involved in N-cycling. In this talk, I will give examples of a trait-centered approach for bridging microbial community ecology, microbial processes and ecosystem functioning.

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesclimate changegreenhouse gas[SDV]Life Sciences [q-bio][SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologysoil microbial ecologynitrogen
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Impact des systèmes de culture en protection intégrée contre les adventices sur l'intensité des émissions de N2O par les sols

2013

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesdenitrificationnitrous oxidegreenhouse gas[SDV]Life Sciences [q-bio][SDE]Environmental Sciencesmicrobial communities[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologycropping systemnitrification
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Linking microbial diversity and ecosystem functioning: The nitrogen cycle example

2014

Microbial communities have a central role in ecosystem processes by driving the Earth’s biogeochemical cycles. However, the importance of microbial diversity for ecosystem functioning is still debated. While functional trait-based approaches are commonly used for at least two decades in microbiology, most microbial diversity studies are still carried out with the rRNA genes. This talk will show how metagenomic approaches targeting microbial guilds involved in nitrogen cycling can help bridging microbial community ecology and ecosystem processes in terrestrial environments.

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesmicrobial diversity[SDV]Life Sciences [q-bio]N2O[SDE]Environmental Sciencesnitrogen cycle[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologygreenhouse gaz
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