Search results for "sustainability."

showing 10 items of 3338 documents

Assessing Methane Emission and Economic Viability of Energy Exploitation in a Typical Sicilian Municipal Solid Waste Landfill

2018

Sanitary landfills for municipal solid waste (MSW) represent one of the major anthropogenic source of GHGs emissions and are directly responsible of the climate changes we are facing nowadays. Indeed, the biodegradable organic matter of MSW undergoes anaerobic digestion producing the landfill gas (LFG), whose main components are CH4 and CO2. Therefore, biomethane energy exploitation in MSW landfills will reduce GHGs emission positively affecting the global warming. The aim of the present study was to assess the methane production in a Sicilian landfill by comparing the results from field measurements of methane emission and the estimates achieved by applying different mathematical models. A…

0106 biological sciencesMunicipal solid wasteEnvironmental Engineering020209 energy02 engineering and technologyCombustion01 natural sciencesMethanechemistry.chemical_compoundBiogas010608 biotechnologyEnergy exploitation0202 electrical engineering electronic engineering information engineeringEconomic viabilityWaste managementWaste Management and DisposalWaste managementSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentGlobal warmingInternal rate of returnAnaerobic digestionLandfill gaschemistryMethane emissionEnvironmental scienceLandfill
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Forecasting the volatility of biofuel feedstock prices: the US evidence

2019

Given that, nowadays, 40% of the US corn crop is used for biofuel production, there is a growing concern that the rise in biofuel production might lead to an increase in food prices. However, it is also obvious that significant growth in biofuel use has minimized the demand for fossil fuel and has hence reduced the volume of carbon emissions. It is therefore crucial to model corn market volatility precisely because such an estimate could play a vital role in stabilizing food and biofuel market prices. For this purpose, we consider using the information content of the corn implied volatility (CIV) index to predict the corn futures market return volatility. Using symmetric and asymmetric GARC…

0106 biological sciencesNatural resource economics020209 energyAutoregressive conditional heteroskedasticityFood pricesBioengineering02 engineering and technology01 natural scienceshintakehitysenergiamarkkinatraaka-aineetvolatiliteetti010608 biotechnologyGARCH-mallit0202 electrical engineering electronic engineering information engineeringEconomicsbiopolttoaineetta511Renewable Energy Sustainability and the Environmentcorn VIXennusteetBiofuel feedstockbioenergy cropBiofuelbiofuelCIV indexvolatility forecastVolatility (finance)Biofuels, Bioproducts and Biorefining
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Transformation of agricultural landscapes in the Anthropocene: Nature's contributions to people, agriculture and food security

2020

Fil: Vanbergen, Adam J. Université de Bourgogne Franche-Comté. AgroSup Dijon. Agroécologie. Francia. Fil: Aizen, Marcelo A. Universidad Nacional del Comahue. Instituto de Investigaciones en Biodiversidad y Medioambiente. Rio Negro, Argentina. Fil: Aizen, Marcelo A. Consejo Nacional de Investigaciones Científicas y Técnicas de Argentina. Instituto de Investigaciones en Biodiversidad y Medioambiente. Rio Negro, Argentina. Fil: Cordeau, Stephane. Université de Bourgogne Franche-Comté. AgroSup Dijon. Agroécologie. Francia. Fil: Garibaldi, Lucas A. Universidad Nacional de Río Negro. Instituto de Investigaciones en Recursos Naturales, Agroecología y Desarrollo Rural. Río Negro, Argentina. Fil: Ga…

0106 biological sciencesNatural resource economicsorganicAgricultura (General)010603 evolutionary biology01 natural sciencesnature's contributions to people12. Responsible consumptionecological intensificationBiodiversidad y ConservaciónSustainable agricultureNature-based SolutionsParticipatory managementGlobal ChangeAgricultural productivityEcosystem Servicesglobal changenature-based solutionsClimate-Smartagriculture2. Zero hungerFood securityOrganicbusiness.industry1. No povertyAgriculture04 agricultural and veterinary sciences15. Life on landEcologíasustainabilitySustainabilityclimate-smart13. Climate actionAgricultureNature's Contributions to PeopleSustainability[SDE]Environmental Sciences040103 agronomy & agriculture0401 agriculture forestry and fisheriesFood systemsIPMEcological Intensificationbusinessecosystem servicesLandscape planning
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New frontiers from removal to recycling of nitrogen and phosphorus from wastewater in the Circular Economy

2020

[EN] Nutrient recovery technologies are rapidly expanding due to the need for the appropriate recycling of key elements from waste resources in order to move towards a truly sustainable modern society based on the Circular Economy. Nutrient recycling is a promising strategy for reducing the depletion of non-renewable resources and the environmental impact linked to their extraction and manufacture. However, nutrient recovery technologies are not yet fully mature, as further research is needed to optimize process efficiency and enhance their commercial applicability. This paper reviews state-of-the-art of nutrient recovery, focusing on frontier technological advances and economic and environ…

0106 biological sciencesNutrient cycleEnvironmental EngineeringNitrogenchemistry.chemical_elementBioengineeringWastewater010501 environmental sciencesWaste Disposal Fluid01 natural sciencesNutrient010608 biotechnologyPhotosynthetic-based systemsRecyclingEnvironmental impact assessmentCircular EconomyWaste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesMembranesWaste managementRenewable Energy Sustainability and the Environment06.- Garantizar la disponibilidad y la gestión sostenible del agua y el saneamiento para todosCircular economyPhosphorusPhosphorusGeneral MedicineIncinerationNutrient recoveryWastewaterchemistryProcess efficiencyEnvironmental scienceCrystallization
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Can biological structures be natural and sustainable capsules?

2015

Flavor and fragrance molecules are used in many industrial fields such as food, cosmetics, tissues, pharmacy, agriculture (pheromones) etc. As most actives have a specific target and are fragile molecules, encapsulation processes have been developed for their use. These technologies are efficient to avoid loss of actives, dissemination out of the target and subsequent pollution, and to protect molecules up to their target. Several processes have been developed responding to the numerous situations encountered (e.g., protection against air, temperature, light, pH; masking or revealing sensorial properties of the molecule; release during the process, in the plate, in the mouth, etc.). However…

0106 biological sciencesOpinionmedia_common.quotation_subjectLab scaleNanotechnology02 engineering and technologyBiology01 natural sciencesCosmeticslcsh:Chemistry010608 biotechnologynatural capsulesactivesComputingMilieux_MISCELLANEOUSmedia_common2. Zero hungerNatural materialsbiological structuresGeneral Chemistry021001 nanoscience & nanotechnologySustainable processprotection[SDV.BBM.BP]Life Sciences [q-bio]/Biochemistry Molecular Biology/BiophysicsChemistrylcsh:QD1-999fragrances13. Climate actionBiological structureSustainabilityBiochemical engineering0210 nano-technologycontrolled releasenatural capsuleGermanic Countriescontrolled release.Frontiers in Chemistry
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Use of Inverse Spatial Conservation Prioritization to Avoid Biological Diversity Loss Outside Protected Areas

2013

Globally expanding human land use sets constantly increasing pressure for maintenance of biological diversity and functioning ecosystems. To fight the decline of biological diversity, conservation science has broken ground with methods such as the operational model of systematic conservation planning (SCP), which focuses on design and on-the-ground implementation of conservation areas. The most commonly used method in SCP is reserve selection that focuses on the spatial design of reserve networks and their expansion. We expanded these methods by introducing another form of spatial allocation of conservation effort relevant for land-use zoning at the landscape scale that avoids negative ecol…

0106 biological sciencesPeatEcologyLand usebusiness.industryEcology010604 marine biology & hydrobiologyScale (chemistry)Environmental resource managementBiodiversitySpatial design15. Life on land010603 evolutionary biology01 natural sciences13. Climate action11. SustainabilityProduction (economics)Environmental scienceEcosystembusinessZoningEcology Evolution Behavior and SystematicsNature and Landscape ConservationConservation Biology
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Integrated membrane bioreactors modelling: A review on new comprehensive modelling framework

2021

International audience; Integrated Membrane Bioreactor (MBR) models, combination of biological and physical models, have been representing powerful tools for the accomplishment of high environmental sustainability. This paper, produced by the International Water Association (IWA) Task Group on Membrane Modelling and Control, reviews the state-of-the-art, identifying gaps for future researches, and proposes a new integrated MBR modelling framework. In particular, the framework aims to guide researchers and managers in pursuing good performances of MBRs in terms of effluent quality, operating costs (such as membrane fouling, energy consumption due to aeration) and mitigation of greenhouse gas…

0106 biological sciencesPerformance indicatorsComputer scienceWastewater treatment010501 environmental sciencesWastewaterMembrane bioreactor01 natural sciences7. Clean energyWaste Disposal FluidBioreactorsTheoreticalModels11. SustainabilityWaste Management and Disposalmedia_common[SDE.IE]Environmental Sciences/Environmental EngineeringWaste DisposalGeneral MedicineEnergy consumptionBiological processes High environmental sustainability Modelling framework Performance indicators Bioreactors Membranes Artificial Models Theoretical Waste Water Greenhouse Gases Waste Disposal Fluid6. Clean waterBiological processes; High environmental sustainability; Modelling framework; Performance indicators; Bioreactors; Membranes Artificial; Models Theoretical; Waste Water; Greenhouse Gases; Waste Disposal FluidInternational watersArtificialFluidBiotechnologyEnvironmental Engineeringmedia_common.quotation_subjectModelling frameworkBioengineering12. Responsible consumptionGreenhouse Gases010608 biotechnologyGénie chimiqueQuality (business)Waste Water[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringGénie des procédés0105 earth and related environmental sciencesMembranesBiological processesSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentMembrane foulingMembranes ArtificialModels Theoretical[INFO.INFO-MO]Computer Science [cs]/Modeling and Simulation13. Climate actionGreenhouse gasSustainabilityHigh environmental sustainabilityBiochemical engineeringPerformance indicator
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Can green infrastructure help to conserve biodiversity?

2017

The gradually decreasing connectivity of habitats threatens biodiversity and ecological processes valuable to humans. Green infrastructure is promoted by the European Commission as a key instrument for the conservation of ecosystems in the EU biodiversity strategy to 2020. Green infrastructure has been defined as a network of natural and semi-natural areas, designed and managed to deliver a wide range of ecosystem services. We surveyed Finnish experts' perceptions on the development of green infrastructure within the existing policy framework. Our results show that improving the implementation of existing conservation policy instruments needs to be an integral part of developing green infr…

0106 biological sciencesPublic AdministrationADOPTIONGeography Planning and Developmentta11720211 other engineering and technologiesBiodiversity02 engineering and technologyManagement Monitoring Policy and LawEnvironmental Science (miscellaneous)010603 evolutionary biology01 natural sciences12. Responsible consumptionEcosystem servicesGreen economyCONNECTIVITYenvironmental policy11. Sustainabilitymedia_common.cataloged_instanceEuropean commissionKNOWLEDGEbiodiversity governanceta519European UnionEuropean union1172 Environmental sciencesmedia_commonbusiness.industryEnvironmental resource management021107 urban & regional planningenvironmental governance15. Life on landEnvironmental governanceHabitat13. Climate actionta1181FRAGMENTATIONbusinessGreen infrastructureecosystem servicesEnvironment and Planning C: Government and Policy
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Co-Designing Urban Carbon Sink Parks: Case Carbon Lane in Helsinki

2021

In order to achieve the goals of carbon (C) neutrality within next 20 year, municipalities worldwide need to increasingly apply negative emission technologies. We focus on the main principles of urban demonstration areas using biochars for C sequestration and explore the lessons learned from a co-creation process of one such park, Hyväntoivonpuisto in Helsinki, Finland. Demonstration sites of urban C sinks in public parks must be safe, visible and scientifically sound for reliable and cost-effective verification of carbon sequestration. We find that different interests can be arbitrated and that synergy that emerges from co-creation of urban C sink parks between stakeholders (scientists, ci…

0106 biological sciencesPublic parkProcess (engineering)urban parksCarbon sequestrationSEQUESTRATION7. Clean energy010603 evolutionary biology01 natural sciences12. Responsible consumption4111 AgronomyBIOMASSpuistottaajamametsätOrder (exchange)11. SustainabilityGE1-350biocharEnvironmental planningsoilsyhteissuunnitteluGeneral Environmental ScienceBIOCHARCarbon sinkkaupunkisuunnitteluhiilensidonta04 agricultural and veterinary sciencestreescarbon sequestrationEnvironmental scienceshiilinielut13. Climate actiondemonstration sites040103 agronomy & agriculture0401 agriculture forestry and fisheriesNeutralityBusinessviherympäristö
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Acclimatised rumen culture for raw microalgae conversion into biogas: Linking microbial community structure and operational parameters in anaerobic m…

2019

[EN] Ruminal fluid was inoculated in an Anaerobic Membrane Reactor (AnMBR) to produce biogas from raw Scenedesmus. This work explores the microbial ecology of the system during stable operation at different solids retention times (SRT). The 16S rRNA amplicon analysis revealed that the acclimatised community was mainly composed of Anaerolineaceae, Spirochaetaceae, Lentimicrobiaceae and Cloacimonetes fermentative and hydrolytic members. During the highest biodegradability achieved in the AnMBR (62%) the dominant microorganisms were Fervidobacterium and Methanosaeta. Different microbial community clusters were observed at different SRT conditions. Interestingly, syntrophic bacteria Gelria and …

0106 biological sciencesRumenEnvironmental EngineeringMicroorganismBioengineering010501 environmental sciencesWaste Disposal Fluid01 natural sciencesMethanosaetaBioreactorsBiogasMicrobial ecologyBioenergyRNA Ribosomal 16S010608 biotechnologyMicroalgaeBioreactorAnimalsAnaerobiosisWaste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesbiologyAnaerobic membrane bioreactor (AnMBR)Renewable Energy Sustainability and the EnvironmentChemistryMicrobiotaGeneral MedicineBiogasMicroalgaeBiodegradationbiology.organism_classificationPulp and paper industryMicrobial population biologyBiofuels16S rRNA geneMethaneBioresource Technology
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