Search results for "Conservation of Natural Resources"

showing 6 items of 156 documents

Projecting biodiversity and wood production in future forest landscapes: 15 key modeling considerations

2017

A variety of modeling approaches can be used to project the future development of forest systems, and help to assess the implications of different management alternatives for biodiversity and ecosystem services. This diversity of approaches does however present both an opportunity and an obstacle for those trying to decide which modeling technique to apply, and interpreting the management implications of model output. Furthermore, the breadth of issues relevant to addressing key questions related to forest ecology, conservation biology, silviculture, economics, requires insights stemming from a number of distinct scientific disciplines. As forest planners, conservation ecologists, ecologica…

forest dynamics0106 biological sciencesConservation of Natural ResourcesEnvironmental Engineering010504 meteorology & atmospheric sciencesComputer sciencepopulation modelsForestsManagement Monitoring Policy and Law010603 evolutionary biology01 natural sciencesEcosystem servicessensitivity analysisForest ecologyNatural resource managementWaste Management and DisposalEcosystem0105 earth and related environmental sciencesForest dynamicsWood productiondiscountingbusiness.industryEnvironmental resource managementBiodiversityGeneral Medicineta4112WoodVariety (cybernetics)natural resource managementSustainabilityvirtual speciesta1181Conservation biologybusinessJournal of Environmental Management
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Environmental mitigation hierarchy and biodiversity offsets revisited through habitat connectivity modelling.

2020

International audience; Biodiversity loss is accelerating because of unceasing human activity and land clearing for development projects (urbanisation, transport infrastructure, mining and quarrying …). Environmental policy-makers and managers in different countries worldwide have proposed the mitigation hierarchy to ensure the goal of “no net loss (NNL) of biodiversity” and have included this principle in environmental impact assessment processes. However, spatial configuration is hardly ever taken into account in the mitigation hierarchy even though it would greatly benefit from recent developments in habitat connectivity modelling incorporating landscape graphs. Meanwhile, national, Euro…

habitat reachability metricekologinen kompensaatioConservation of Natural ResourcesEnvironmental Engineeringno net lossHabitat reachability metricComputer scienceSpatial conservation planning0208 environmental biotechnologypaikkatietoanalyysi02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and Law01 natural sciencesGreen veininggreen veiningEnvironmental mitigationLandscape graphUrbanization11. SustainabilityClearingEnvironmental impact assessmentWaste Management and DisposalEcosystem0105 earth and related environmental sciencesUpstream (petroleum industry)landscape graphHierarchyenvironmental impact assessmentEcologybusiness.industryEnvironmental resource managementspatial conservation planningEnvironmental impact assessmentGeneral Medicine[SHS.GEO]Humanities and Social Sciences/GeographyBiodiversity15. Life on landbiodiversiteetti020801 environmental engineeringEnvironmental PolicyHabitat destructionekologiset käytävät13. Climate actionNo net lossympäristövaikutusten arviointibusinessLandscape connectivityJournal of environmental management
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Screening of halogenated aromatic compounds in some raw material lots for an aluminium recycling plant

2004

Four samples of scrap raw materials for an aluminium recycling plant were screened for the occurrence of persistent halogenated aromatic compounds. The samples contained waste from handling of electric and electronic plastics, filter dust from electronic crusher, cyclone dust from electronic crusher and light fluff from car shredder. In our screening analyses, brominated flame retardants were observed in all samples. Polybrominated diphenyl ethers (PBDE) were identified in all samples in amounts of 245–67450 ng/g. The major PBDE congeners found were decabromo- and pentabromodiphenyl ethers. 1,1-bis(2,4,6-tribromophenoxy)ethane, hexabromobenzene, ethyl-pentabromobenzene, tetrabromobisphenol-…

lcsh:GE1-350Conservation of Natural ResourcesWaste managementPhenyl EthersPolybrominated BiphenylsIndustrial WasteAluminium recyclingScrapRaw materialHydrocarbons AromaticHydrocarbons Brominatedchemistry.chemical_compoundPolybrominated diphenyl etherschemistryEnvironmental chemistryHexabromobenzeneHalogenated Diphenyl EthersSoil PollutantsPentabromotolueneWater Pollutants Chemicallcsh:Environmental sciencesAluminumEnvironmental MonitoringFlame RetardantsGeneral Environmental ScienceEnvironment International
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Marine reserves : fish life history and ecological traits matter

2010

Copyright by the Ecological Society of America

marine reserve ageRange (biology)marine protected areaMarine protected areahome rangehabitatlife history traitbycatchspecies mobilityterritorialityPesqueríasMarine reserve designmarine reserve designMarine reserve ageBehavior AnimalEcologyEcologyMarine reserveFisheries -- Monitoring -- EuropeFishesMarine parks and reserves -- EuropeBody sizeweighted meta-analysisSpecies mobilityEuropeHabitatHome rangeHabitatFishes -- Ecology -- EuropeWeighted metaanalysisMarine conservationConservation of Natural ResourcesFisheriesBiologyModels BiologicalDiversity of fishCentro Oceanográfico de BalearesBody size; Bycatch; Habitat; Home range; Life history traits; Marine protected area; Marine reserve age; Marine reserve design; Schooling behavior; Species mobility; Territoriality; Weighted metaanalysis; EcologyFishes -- Habitat -- EuropeAnimalsschooling behaviorEcosystemlife history traitsPopulation DensityEcological releaseLife history traitsBycatchFisheryBycatchSchooling behaviorMarine protected areabody sizeTerritoriality
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Towards a framework for assessment and management of cumulative human impacts on marine food webs

2015

Effective ecosystem-based management requires understanding ecosystem responses to multiple human threats, rather than focusing on single threats. To understand ecosystem responses to anthropogenic threats holistically, it is necessary to know how threats affect different components within ecosystems and ultimately alter ecosystem functioning. We used a case study of a Mediterranean seagrass (Posidonia oceanica) food web and expert knowledge elicitation in an application of the initial steps of a framework for assessment of cumulative human impacts on food webs. We produced a conceptual seagrass food web model, determined the main trophic relationships, identified the main threats to the fo…

seagrassBiodiversity & Conservationvulnerability05 Environmental SciencesVulnerabilityTHREATSExpert knowledge elicitationFood chainecosystem-based managementconservation actions ecosystem-based management expert knowledge elicitation multiple threats seagrass vulnerabilityECOSYSTEM-BASED MANAGEMENTWater Pollution ChemicalZoologíaComputingMilieux_MISCELLANEOUSTrophic levelelicitationAlismatalesAcciones de conservaciónbiologyEcologymultiple threatsSeagraEnvironmental resource managementconservation actionsobtencion de conocimiento de expertosEcosystem-based managementFood webacciones de conservaciónSeagrassobtención de conocimiento de expertosBiodiversity ConservationConservation actionAlismatidaeKnow-howLife Sciences & Biomedicineacciones de conservacionAmenazas múltiplesMultiple threatSettore BIO/07 - EcologiaConservation of Natural ResourcesFood ChainFisheriesEnvironmental Sciences & EcologyManejo con base en los ecosistemasamenazas múltiplesPastos marinosexpert knowledgeOCEANexpert knowledge elicitationMediterranean SeaHumansEcosystemObtención de conocimiento de expertos14. Life underwaterEcology Evolution Behavior and SystematicsNature and Landscape ConservationScience & Technologybusiness.industrymanejo con base en los ecosistemasvulnerabilidadpastos marinos15. Life on land06 Biological Sciencesbiology.organism_classification13. Climate actionamenazas multiples07 Agricultural And Veterinary Sciences[SDE.BE]Environmental Sciences/Biodiversity and EcologybusinessVulnerabilidadEnvironmental Sciences
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Spatially dynamic forest management to sustain biodiversity and economic returns.

2014

Production of marketed commodities and protection of biodiversity in natural systems often conflict and thus the continuously expanding human needs for more goods and benefits from global ecosystems urgently calls for strategies to resolve this conflict. In this paper, we addressed what is the potential of a forest landscape to simultaneously produce habitats for species and economic returns, and how the conflict between habitat availability and timber production varies among taxa. Secondly, we aimed at revealing an optimal combination of management regimes that maximizes habitat availability for given levels of economic returns. We used multi-objective optimization tools to analyze data fr…

ta113Conservation of Natural ResourcesEnvironmental Engineeringbusiness.industryCost effectivenessta1172Environmental resource managementForest managementTaigaBiodiversityLand-use planningForestryGeneral MedicineBiodiversityManagement Monitoring Policy and LawWoodTreesHabitatEconomicsta1181Production (economics)HumansEcosystembusinessWaste Management and DisposalJournal of environmental management
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