Search results for "Climate mitigation"

showing 4 items of 4 documents

What is (not) the point of just transition in food systems?

2022

Food systems are confronted with a low-carbon transition challenge. The need for significant emission reductions in industrial food systems implies significant systemic transformations in food production, processing, and consumption. The wide-reaching impacts of such transformations have evoked public discussion and academic research on just transition in food systems. The undisputable legitimacy of the idea of just transition makes it an attractive concept for all food system actors who might be affected by low-carbon transition policies in direct and indirect ways. Some of the claims that are being made are warranted claims for justice, some merely defend the achieved privileges and benef…

climate mitigationtrade-offsruokajärjestelmätkestävä kehitysvihreä siirtymäilmastonsuojelufood system transformationsoikeudenmukaisuussosiaalinen oikeudenmukaisuusjustice
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Climate mitigation and intensified forest management in Norway: To what extent are surface waters safeguarded?

2020

AbstractWhile the role of forestry in mitigating climate change is increasingly subject to political commitment, other areas, such as water protection, may be at risk. In this study, we ask whether surface waters are sufficiently safeguarded in relation to the 2015 launch of a series of measures to intensify forest management for mitigation of climate change in Norway. First, we assess how impacts on water are accounted for in existing regulations for sustainable forestry. Secondly, we provide an overview of the impacts of forestry on water quality relevant to three support schemes: afforestation on new areas, increased stocking density in existing forests, and forest fertilisation. Lastly,…

Conservation of Natural Resources010504 meteorology & atmospheric sciences020209 energyClimate ChangeGeography Planning and DevelopmentForest managementClimate mitigationClimate change02 engineering and technologyForests01 natural sciencesSustainable forestryEnvironmental Effects of a Green Bio-EconomyFertilisationStockingSource waterAfforestation0202 electrical engineering electronic engineering information engineeringEnvironmental ChemistryAfforestationEnvironmental planningVDP::Landbruks- og Fiskerifag: 900::Fiskerifag: 9200105 earth and related environmental sciencesIntensificationEcologyForest managementNorwaySurface watersUncertaintyForestryGeneral MedicineVDP::Matematikk og Naturvitenskap: 400Water resourcesEnvironmental scienceWater qualityAmbio
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The effects of vegetation on indoor thermal comfort: the application of a multi-scale simulation methodology on a residential neighborhood renovation…

2017

Abstract Despite the acknowledged positive effects of vegetation at urban, neighborhood and building scales, there are still only limited comprehensive design tools for multi-scale evaluation of the microclimate and thermal benefits of plants and building-integrated vegetation (BIV) systems. The paper describes a case study in the city of Palermo (Italy) that applied simulation methodology to quantitatively assess the microclimate effects of different neighborhood and building retrofit scenarios where vegetation plays a main role. The simulation workflow moves from a micro-urban to a building scale assessment by linking the ENVI-met software to the building energy simulation program EnergyP…

Architectural engineeringScale (ratio)020209 energyMicroclimateBuilding energy retrofitSettore ICAR/10 - Architettura Tecnica02 engineering and technology010501 environmental sciencesThermal comfort01 natural sciencesCivil engineeringSoftware0202 electrical engineering electronic engineering information engineeringElectrical and Electronic EngineeringMicroclimate mitigationBuilding energy simulation0105 earth and related environmental sciencesCivil and Structural Engineeringbusiness.industryMechanical EngineeringThermal comfortBuilding and ConstructionVegetationBuilding integrated vegetationThermal ComfortBioclimatic designWorkflowSocial housing renovationEnvironmental sciencebusiness
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Dung application increases CH4 production potential and alters the composition and abundance of methanogen community in restored peatland soils from …

2018

Peatland restoration via rewetting aims to recover biological communities and biogeochemical processes typical to pristine peatlands. While rewetting promotes recovery of C accumulation favorable for climate mitigation, it also promotes methane (CH4) emissions. The potential for exceptionally high emissions after rewetting has been measured for Central European peatland sites previously grazed by cattle. We addressed the hypothesis that these exceptionally high CH4 emissions result from the previous land use. We analyzed the effects of cattle dung application to peat soils in a short- (2 weeks), a medium- (1 year) and a long-term (grazing) approach. We measured the CH4 production potentials…

lantaclimate mitigationlaitumetkasvihuonekaasutrewettingcattle grazingmethanogenmaankäyttöennallistaminenturvemaatmetaani
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