Search results for "Life cycle"

showing 10 items of 378 documents

Life cycle assessment of low temperature asphalt mixtures for road pavement surfaces: A comparative analysis

2018

The increasing fuel consumption demand, the accelerated pressure imposed by the depletion of 5 scarce raw materials and the urgent environmental protection requirements are forcing the change of 6 pavement industry and academia community’s research endeavors towards the development of low 7 emissions road paving technologies able to significantly reduce mixing and compaction temperature as 8 well as the consumption of virgin raw materials. One set of relatively recent technologies in the field of 9 pavement materials that aims at addressing those concerns are the warm mix asphalt (WMA). In fact, 10 they have the potential to allow the reduction of energy consumption and airborne emissions d…

Economics and Econometrics020209 energyContext (language use)02 engineering and technology010501 environmental sciencesRaw materialCYCLE DE VIE01 natural sciences7. Clean energyCivil engineeringChemical additives; Hot mix asphalt (HMA); Life cycle assessment (LCA); Reclaimed asphalt pavement (RAP); Sustainable pavement construction and management; Warm mix asphalt (WMA); Waste Management and Disposal; Economics and Econometrics12. Responsible consumptionWARM MIX ASPHALT (WMA)[SPI]Engineering Sciences [physics]RECYCLAGE DES MATERIAUX11. Sustainabilitychemical additive0202 electrical engineering electronic engineering information engineeringSettore ICAR/04 - Strade Ferrovie Ed AeroportiEnvironmental impact assessmentIMPACT ENVIRONNEMENTALLife-cycle assessmentWaste Management and Disposal0105 earth and related environmental sciencesCHEMICAL ADDITIVESsustainable pavement construction and management.Environmentally friendlyRECLAIMED ASPHALT PAVEMENT (RAP)LIFE CYCLE ASSESSMENT (LCA)13. Climate actionAsphaltWearing courseENROBEwar mix asphalt (WMA)Fuel efficiencyEnvironmental scienceHOT MIX ASPHALT (HMA)SUSTAINABLE PAVEMENT CONSTRUCTION AND MANAGEMENT
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An adult life cycle perspective on public subsidies to higher education in three countries

1986

Studies of the incidence of public susidies to higher education have commonly disregarded adjustements to an appropriate age range in the parental reference populations. Even where the need for such adjustements is noted, implications have rarely if ever been systematically analyzed. Moreover, no attention whatsoever seems to have been paid to implications for adult life-cycle experiences let alone secular changes in experiences over successive cohorts. The present paper seeks to fill part of these gaps, drawing on relevant parts of our research on "the political economy of government support of higher education : studies in Chile, France and Malaysia".

Economics and EconometricsEconomic growthHigher educationComparaison internationaleMalaisie[SHS.EDU]Humanities and Social Sciences/Education[SHS.EDU] Humanities and Social Sciences/EducationFamily incomeEnseignement supérieurEducation0502 economics and businessEconomicsChiliAge compositionLife cycle costing050207 economics[SHS.ECO] Humanities and Social Sciences/Economics and Financebusiness.industryPolitique économique4. EducationInterpretation (philosophy)05 social sciencesPerspective (graphical)Politique éducative050301 educationSubsidy[SHS.ECO]Humanities and Social Sciences/Economics and FinanceAdult lifeFinancement de l'enseignement supérieurDemographic economicsFrancebusiness0503 education
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Identification of the essential protein domains for Mib2 function during the development of the Drosophila larval musculature and adult flight muscles

2016

The proper differentiation and maintenance of myofibers is fundamental to a functional musculature. Disruption of numerous mostly structural factors leads to perturbations of these processes. Among the limited number of known regulatory factors for these processes is Mind bomb2 (Mib2), a muscle-associated E3 ubiquitin ligase, which was previously established to be required for maintaining the integrity of larval muscles. In this study, we have examined the mechanistic aspects of Mib2 function by performing a detailed functional dissection of the Mib2 protein. We show that the ankyrin repeats, in its entirety, and the hitherto uncharacterized Mib-specific domains (MIB), are important for the…

EmbryologyLife CyclesMuscle PhysiologyMuscle FunctionsPhysiologylcsh:MedicineMuscle ProteinsAnkyrin Repeat DomainMuscle DevelopmentBiochemistryAnimals Genetically ModifiedMedicine and Health SciencesDrosophila Proteinslcsh:ScienceMusculoskeletal SystemAbdominal MusclesMusclesDrosophila MelanogasterMetamorphosis BiologicalPupaAnimal ModelsNaturwissenschaftliche FakultätAnkyrin RepeatInsectsExperimental Organism SystemsLarvaDrosophilaAnatomyResearch ArticleArthropoda-Research and Analysis MethodsModel OrganismsProtein Domainsddc:570GeneticsAnimalsMuscle SkeletalAlleleslcsh:REmbryosUbiquitinationOrganismsBiology and Life SciencesProteinsPupaeInvertebratesGenetic LociFlight AnimalMutationlcsh:QCarrier ProteinsDevelopmental Biology
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The Role of re-design for Additive Manufacturing on the Process Environmental Performance

2018

Abstract At present, economic and technological design criteria for products and processes should be matched with the minimization of environmental impact objectives. Manufacturing, material production, and product design are strictly connected stages. The choice of a production system over another could result in significant material and energy/resource savings, particularly if the component has been properly designed for manufacturing. In this scenario, Additive Manufacturing, which has been identified as a potential disruptive technology, gained an increasing interest for the creation of complex metal parts. The paper focuses on the tools, based on the holistic modelling of additive and …

Energy demandProduct designComputer scienceProcess (engineering)Additive Manufacturing020209 energy02 engineering and technologyLife Cycle AssessmentSustainability; Additive Manufacturing; Life Cycle Assessment; Energy demandIndustrial and Manufacturing EngineeringManufacturing engineeringResource (project management)SustainabilityControl and Systems EngineeringComponent (UML)Sustainability0202 electrical engineering electronic engineering information engineeringGeneral Earth and Planetary SciencesProduction (economics)Environmental impact assessmentLife-cycle assessmentGeneral Environmental ScienceProcedia CIRP
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Evaluation of the Economic and Environmental Performance of Low-Temperature Heat to Power Conversion using a Reverse Electrodialysis – Multi-Effect D…

2019

In the examined heat engine, reverse electrodialysis (RED) is used to generate electricity from the salinity difference between two artificial solutions. The salinity gradient is restored through a multi-effect distillation system (MED) powered by low-temperature waste heat at 100 °C. The current work presents the first comprehensive economic and environmental analysis of this advanced concept, when varying the number of MED effects, the system sizing, the salt of the solutions, and other key parameters. The levelized cost of electricity (LCOE) has been calculated, showing that competitive solutions can be reached only when the system is at least medium to large scale. The lowest LCOE, at a…

Energy storageControl and Optimizationreverse electrodialysisCost020209 energyEnergy Engineering and Power Technology02 engineering and technologylcsh:Technology7. Clean energyEnergy storagelaw.inventionEnvironmental impactLife cycle assessment020401 chemical engineeringlawWaste heatReversed electrodialysisReverse electrodialysi0202 electrical engineering electronic engineering information engineeringOsmotic powerSalinity gradient power0204 chemical engineeringElectrical and Electronic EngineeringCost of electricity by sourceProcess engineeringEngineering (miscellaneous)DistillationHeat engineLCOElcsh:TRenewable Energy Sustainability and the Environmentbusiness.industryreverse electrodialysis; multi-effect distillation; cost; LCOE; waste heat; energy storage; life cycle assessment; environmental impacts; salinity gradient powerenvironmental impactsMulti-effect distillation6. Clean water13. Climate actionMultiple-effect distillationEnvironmental scienceWaste heatbusinessEnergy (miscellaneous)Energies
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Energy and Environmental Life Cycle Assessment of asphalt pavements: A Scenario Analysis for Urban Roads

2018

This paper aims at calculating the life-cycle energy and the environmental impacts pertaining to roads management, including materials production, transportation, construction, maintenance, and rehabilitation. A life-cycle approach is applied to assess energy and environmental impacts of a typical Italian urban road, according to the ISO 14040 series. In more detail, the Authors assess the energy and environmental profile of different optimized scenarios of bituminous mixtures. The aim of scenario analysis is to identify the less impacting scenario from an energy and environmental point of view. For each analysed scenario, the contribution of each life-cycle step to the total impacts and th…

Energy Environmental Impacts Hot Mix Asphalt (HMA) Warm Mix Asphalt (WMA) Life Cycle Assessment Reclaimed Asphalt Pavement (RAP)
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LCA of an Asphalt Mixture Produced in a Southern Italian Plant: Analysis and Perspectives

2021

In recent years, a growing attention on environmental issues affecting all fields and procedures of the productive sectors has raised, aiming to reduce energy and raw-material consumptions and pollution effects on environment. Due to the involved volumes and to the nature of the related materials and productive processes, the civil and road sectors have been strongly invested by this change of perspective. Therefore, a proper estimation of the environmental impacts for the entire life cycle of the asphalt mixtures for road construction and maintenance activities is extremely important. For performing similar investigations, Life Cycle Assessment (LCA) has become one of the most reliable and…

EnergyWaste managementAsphaltAsphalt production; Life cycle assessment (LCA); Environmental impacts; EnergyEnvironmental scienceAsphalt productionEnvironmental impactsLife cycle assessment (LCA)
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Energy and environmental benefits in public buildings as a result of retrofit actions

2011

Abstract The paper presents the results of an energy and environmental assessment of a set of retrofit actions implemented in the framework of the EU Project “BRITA in PuBs” (Bringing Retrofit Innovation to Application in Public Buildings – no: TREN/04/FP6EN/S07.31038/503135). Outcomes arise from a life cycle approach focused on the following issues: (i) construction materials and components used during retrofits; (ii) main components of conventional and renewable energy systems; (iii) impacts related to the building construction, for the different elements and the whole building. The results are presented according to the data format of the Environmental Product Declaration. Synthetic indi…

EngineeringArchitectural engineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleRenewable Energy Sustainability and the Environmentbusiness.industryCivil engineeringSet (abstract data type)BRITALife cycle approachBuilding retrofitEnergy Environmental assessmentData formatRenewable energy systemReturn ratioEnvironmental impact assessmentbusinessEnergy (signal processing)Environmental product declarationBuilding constructionRenewable and Sustainable Energy Reviews
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Sustainability evaluation of Sicily's lemon and orange production: An energy, economic and environmental analysis

2013

The island of Sicily has a long standing tradition in citrus growing. We evaluated the sustainability of orange and lemon orchards, under organic and conventional farming, using an energy, environmental and economic analysis of the whole production cycle by using a life cycle assessment approach. These orchard systems differ only in terms of a few of the inputs used and the duration of the various agricultural operations. The quantity of energy consumption in the production cycle was calculated by multiplying the quantity of inputs used by the energy conversion factors drawn from the literature. The production costs were calculated considering all internal costs, including equipment, materi…

EngineeringCitrusConservation of Natural ResourcesEnergy-Generating ResourcesEnvironmental EngineeringCitrus production Energy efficiency Production costs analysis Life cycle assessmentManagement Monitoring Policy and LawEnvironmentCitrus production; energy efficiency; production costs analysis; Life Cycle AssessmentAgricultural scienceLife cycle assessmentEnvironmental impact assessmentWaste Management and DisposalLife-cycle assessmentSicilyCitrus production; Energy efficiency; Production costs analysis Life cycle assessmentOrganic AgricultureIntensive farmingbusiness.industryCitrus productionFinal productEnvironmental engineeringProduction costs analysisAgricultureGeneral MedicineEnergy consumptionSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeCitrus production Energy efficiency Production costs analysis Life cycle assessmentEnergy efficiencyAgricultureSustainabilityCosts and Cost AnalysisbusinessEfficient energy useCitrus sinensis
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Embodied energy and environmental impacts of a biomass boiler: a life cycle approach

2015

The 2030 policy framework for climate and energy, proposed by the European Commission, aims towards the reduction of European greenhouse gas emissions by 40% in comparison to the 1990 level and to increase the share of renewable energy of at least the 27% of the European's energy consumption of 2030. The use of biomass as sustainable and renewable energy source may be a viable tool for achieving the above goals. However, renewable energy technologies are not totally clean because they cause energy and environmental impacts during their life cycle, and in particular they are responsible of air pollutant emissions. In this context, the paper assesses the energy and environmental impacts of a …

EngineeringEnergy Engineering and Power Technologyenvironmental impactrenewable energy technologyEnergy developmentlife cycle assessmentlcsh:TK1001-1841Life-cycle assessmentSettore ING-IND/11 - Fisica Tecnica AmbientaleWaste managementRenewable Energy Sustainability and the Environmentbusiness.industrygreenhouse gas emissionsEnvironmental engineeringEnvironmental impact of the energy industryEnergy consumptionenvironmental impactslife cycle assessment; embodied energy; biomass boiler; environmental impacts; renewable energy technology; greenhouse gas emissionsbiomass boilerembodied energyRenewable energyEnergy conservationlcsh:Production of electric energy or power. Powerplants. Central stationsFuel TechnologybusinessEmbodied energyEfficient energy use
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