Search results for " Green"

showing 10 items of 405 documents

Life cycle assessment of a new industrial process for sustainable construction materials

2023

One of the key sectors for the green transition of European countries is construction, that is more and more asked to evolve towards innovative ecological binders and green cost-effective processes. The construction sector is highly energy intensive, and the cement production is one of the main sources of environmental pollution in the world. In this regard, GeoPolymers (GP) seem to be promising for a sustainable replacement of cementitious materials. Therefore, the Life Cycle Assessment (LCA) of the industrial production of different formulations of Geopolymer Concrete (GC) was performed in this study after scaling up the Life Cycle Inventory (LCI) from a laboratory scale to an industrial …

EcologyCircular economy Global Warming Potential Green transition Industrial process Life Cycle Assessment Sustainable materialsSettore ING-IND/17 - Impianti Industriali MeccaniciGeneral Decision SciencesEcology Evolution Behavior and Systematics
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The Spanish Turn against Renewable Energy Development

2018

[EN] In this study, we focus on the case of Spanish energy policy and its implications for sustainable energy development. In recent years, Spanish legislation has changed dramatically in its approach to sustainable energy sources. This change is despite EU and international efforts to increase energy efficiency, and to accelerate the transition to renewable energy sources (RES) in order to reduce greenhouse gas emissions. Based on the socio-technical transitions literature, this paper assesses the role of the new legislation in this altered scenario, and analyzes the evolution of energy production in Spain in the EU context. The results are triangulated with two expert assessments. We find…

Economic policy020209 energyGeography Planning and DevelopmentTJ807-830LegislationContext (language use)02 engineering and technologypower sector010501 environmental sciencesManagement Monitoring Policy and LawTD194-19501 natural sciences7. Clean energyEnergy policyRenewable energy sourcesEmissions reduction11. Sustainability0202 electrical engineering electronic engineering information engineeringClimate changeGE1-350power sector; green energy; climate change; emissions reduction; sustainability transition; energy policy; Spain0105 earth and related environmental sciencesPower sectorEnvironmental effects of industries and plantsRenewable Energy Sustainability and the Environmentbusiness.industryGreen energyInvestment (macroeconomics)sustainability transitionRenewable energyEnvironmental sciencesgreen energyclimate change13. Climate actionSpainGreenhouse gasMAQUINAS Y MOTORES TERMICOSPosition (finance)INGENIERIA ELECTRICAemissions reductionEnergiaBusinessSustainability transitionEnergies renovablesEnergy policyenergy policyEfficient energy useSustainability; Volume 10; Issue 4; Pages: 1208
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Strategie ecosistemiche e infrastrutture verdi in simbiosi con il costruito

2022

Il numero 11 di AGATHÓN raccoglie saggi, studi, ricerche e progetti sul tema Vegetazione | La sua Simbiosi con il Costruito richiamando il ruolo che la Natura in generale e la Vegetazione in particolare possono svolgere nel breve periodo per affrontare l’attuale sfida del surriscaldamento globale e dei cambiamenti climatici causati da deforestazioni e incendi boschivi, urbanizzazioni selvagge, uso indiscriminato di materie prime non rinnovabili e incremento delle emissioni di anidride carbonica, tutti fattori che determinano un impatto devastante sul nostro ormai fragile ecosistema, sulla società e sull’economia. Se Simon aveva intuito già nel 1969 il potenziale di una ‘nuova ecologia’ in c…

Ecosystem strategies green infrastructures symbiosis with the built environmentStrategie ecosistemiche infrastrutture verdi simbiosi con il costruitoSettore ICAR/12 - Tecnologia Dell'Architettura
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Replacement of Vehicle Fleet with EVs Using PV Energy

2016

The diffusion of Electric Vehicles (EVs), the reduction of environmental pollution and the production of energy from renewable sources (RES), in particular photovoltaic system, wind farm, hydroelectric plants, bioenergy and geothermal plants are the principal aspects discussed in the world. For this reason, the goal of this work is to study for 2014 year in all Italy's Regions; the energy production obtained to photovoltaic systems (PV) and the possibility to use with different percentage this energy for recharge the electric vehicles. In particular, they have been considered different scenarios in function to the km travelled per year from the population. This paper examines the integratio…

Electric VehicleSettore ING-IND/31 - ElettrotecnicaElectric Vehicles; Green energy; Photovoltaic system; Vehicles fleet; Renewable Energy Sustainability and the Environment; Energy Engineering and Power TechnologySustainability and the EnvironmentGreen energyEnergy Engineering and Power TechnologyElectric Vehicles; photovoltaic system; green Energy; vehicles fleet.Renewable EnergySettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciElectric VehiclesPhotovoltaic systemVehicles fleet
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Building green covering for a sustainable use of energy

2013

Nowadays the growth of the cities increased built and paved areas, energy use and heat generation. The phenomenon of urban warming, called urban heat island, influences negatively outdoor comfort conditions, pollutants concentration, energy demand for air conditioning, as well as increases environmental impact due to the demand of energy generation. A sustainable technology for improving the energy efficiency of buildings is the use of green roofs and walls in order to reduce the energy consumption for conditioning in summer and improve the thermal insulation in winter. The use of green roofs and walls can contribute to mitigate the phenomenon of heat island, the emissions of greenhouse gas…

EngineeringBioengineeringAir-conditioning; Energy savings; Green roofs; Green walls; Urban ecology; Industrial and Manufacturing Engineering; Mechanical Engineering; BioengineeringEnergy savingsair-conditioning energy savings urban ecology green roofs green walls.Industrial and Manufacturing Engineeringlcsh:Agriculturegreen roofsenergy savingSustainable designUrban heat islandlcsh:Agriculture (General)business.industryair-conditioningMechanical EngineeringEnvironmental engineeringlcsh:SThermal comfortEnergy consumptiongreen wallslcsh:S1-972urban ecologyAir conditioningHeat generationSustainabilitybusinessEfficient energy useair-conditioning; energy saving; urban ecology; green roofs; green walls
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A Graphical User Interface as a DSS Tool for GHG Emission Estimation from Water Resource Recovery Facilities

2017

A Grafical User Interface (GUI) for the greenhouse gas (GHG) emissions from WWTPs based on four models aimed at quantifying the gas emissions from the aerated tanks (i.e. CAS and MBR reactor), aerobic digesters, secondary clarifiers and anaerobic digesters have been englobed in a GUI in order to provide a valid decision support system (DSS) to the practitioners. The GUI allows to estimate such emissions for the different WWTP phases considered. The GUI has been developed on MATLAB platform and provides as output the GHG emissions in terms of CO2 and N2O fluxes.

EngineeringDecision support systemSettore ICAR/03 - Ingegneria Sanitaria-Ambientalebusiness.industryEnvironmental engineeringGas emissionsGreenhouse gasUser interfaceMATLABbusinesscomputerGraphical user interface DSS Greenhouse gas Urban wastewater treatment plantcomputer.programming_languageResource recoveryGraphical user interface
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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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Life Cycle Assessment (LCA) of protected crops: an Italian case study

2012

Abstract In this paper a Life Cycle Assessment (LCA) of protected crops was carried out. In particular, energy and environmental performances of peppers, melons, tomatoes, cherry tomatoes, and zucchini in different typologies of greenhouses (tunnel and pavilion) were assessed. The study aimed at assessing the ecoprofile of each product and the share of each life-cycle step on the total environmental impacts. The related process flow chart, the relevant mass and energy flows and the key environmental issues were identified for each product. Collection of primary data was conducted by means of a detailed questionnaire distributed to a producer company in southern Italy. The analysis was devel…

EngineeringRenewable Energy Sustainability and the Environmentbusiness.industryStrategy and ManagementEnvironmental engineeringDistribution (economics)GreenhousePavilionAuxiliary heatingIndustrial and Manufacturing EngineeringLower energyAgricultural scienceEnvironmental impact assessmentProduct (category theory)businessLife-cycle assessmentLCA GreenhousesEnergyFoodSustainable production and consumption(SPC)General Environmental Science
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Embedding “substrate” in environmental assessment of green roofs life cycle: evidences from an application to the whole chain in a Mediterranean site

2012

Abstract A classical LCA methodology is here applied to green roofs including in this analysis also the whole life cycle of the substrate, that represented a lack of previous LCA studies on green roofs. This inclusion will allow a complete and proper application of the LCA methodology to achieve an environmental accounting of the “green roof” performance. We have here chosen to approach the problem by analysing a specific substrate, that is used within an actual extensive green roof. Afterwards, we have applied the LCA methodology to the whole actual extensive green roof whose substrate under analysis is part of. In this manner, we achieved an environmental accounting of the “green roof” pe…

EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleRenewable Energy Sustainability and the Environmentbusiness.industryStrategy and ManagementGreen roofEnvironmental engineeringCivil engineeringIndustrial and Manufacturing EngineeringEnvironmental accountingSubstrate (building)Work (electrical)Substrate specificityEnvironmental impact assessmentgreen roofs substrate extensive green roof life cycle assessment (LCA) life cycle approach end of life phase fertilizers MediterraneanbusinessGeneral Environmental ScienceJournal of Cleaner Production
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Eletric vehicles impact using renewable energy

2015

In this moment, the principle topics for the modern world are the reduction of environmental pollution and the production of energy from renewable sources (for example photovoltaic system, wind farm, hydroelectric plants, etc.). This particular attention is determined by different reasons, in particular from the Kyoto Protocol, and from different problems as greenhouse effect, acid rain and climate change. The scope of this work is to study, for different years (1997-2013) in Italy, the production of electric energy from renewable and non-renewable. At a later stage, the attention will be on the consumption of the electric energy divided for different sectors. In particular, we study the po…

EngineeringVehicles feetElectric vehiclesEnergy Engineering and Power TechnologySettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciWind farmEnergy developmentvehicles fleetIntermittent energy sourceRenewable EnergyElectrical and Electronic EngineeringElectric vehicles; Green energy; Vehicles feet; Wind farm; Renewable Energy Sustainability and the Environment; Automotive Engineering; Energy Engineering and Power Technology; Electrical and Electronic EngineeringPumped-storage hydroelectricityZero-energy buildingWind powerWaste managementSustainability and the Environmentbusiness.industryGreen energyEnvironmental engineeringelectric vehicleEnvironmental impact of the energy industryRenewable energySettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaSettore ING-IND/31 - ElettrotecnicaAutomotive EngineeringbusinessEfficient energy use
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