Search results for " life cycle assessment"

showing 10 items of 73 documents

Energy and environmental assessment of the institutional catering in Lombardy (Italy)

2018

Climate change calls for decisive actions to match sustainable development goals, among which key factors are the reduction of energy consumption and carbon footprint. Agri-food sector is one of the main priority areas contained in the European Sustainable Production and Consumption policies, aiming to create more sustainable consumption and production patterns and pushing for environmental international agreements for climate change mitigation and national laws for the efficient use of resources. Public restoration plays a central role in the food consumption sector, at least in developed countries. In particular, institutional catering is playing a relevant role in outdoor meals provided …

Institutional catering Food energy consumption Food supply chain Life cycle assessment
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Energy and environmental assessment of a traction lithium-ion battery pack for plug-in hybrid electric vehicles

2019

Abstract Traction batteries are a key factor in the environmental sustainability of electric mobility and, therefore, it is necessary to evaluate their environmental performance to allow a comprehensive sustainability assessment of electric mobility. This article presents an environmental assessment of a lithium-ion traction battery for plug-in hybrid electric vehicles, characterized by a composite cathode material of lithium manganese oxide (LiMn2O4) and lithium nickel manganese cobalt oxide Li(NixCoyMn1-x-y)O2. Composite cathode material is an emerging technology that promises to combine the merits of several active materials into a hybrid electrode to optimize performance and reduce cost…

Lithium-ion traction battery020209 energyStrategy and Managementmedicine.medical_treatmentBattery cell material content; Battery recycling process; Life cycle assessment; Lithium-ion traction battery; LMO–NMC cell technologyLMO–NMC cell technology02 engineering and technologyArticleIndustrial and Manufacturing EngineeringAutomotive engineeringlaw.inventionLife cycle assessmentlaw0202 electrical engineering electronic engineering information engineeringmedicineEnvironmental impact assessmentBill of materialsLife-cycle assessment0505 lawGeneral Environmental Sciencecell technologyBattery recycling processSettore ING-IND/11 - Fisica Tecnica AmbientaleRenewable Energy Sustainability and the Environmentbusiness.industry05 social sciencesTraction (orthopedics)Battery packCathodeSustainability050501 criminologyEnvironmental scienceElectricitybusinessLMOeNMCBattery cell material contentJournal of Cleaner Production
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New exergy criterion in the multicriteria context: a life cycle assessment of two plaster products

2003

This paper deals with the exergy analysis (EXA) of plaster materials and ranks the environmental burdens due to the production of such materials. The calculation of the exergy loss during the whole examined process represents a relevant index, looking at the technology improvement of a process, as a suitable tool in aid of the trade-off of alternative materials in the decision making. A life cycle inventory is performed for building plaster products and the matrix method is used. The authors extend the application of EXA to life cycle assessment, conducting an exergetic life cycle assessment, and propose an exergetic index in the framework of multi-criteria decision making. An exergy balanc…

Multi-criteria decision makingExergy balanceSettore ING-IND/11 - Fisica Tecnica AmbientalePlaster productsExergetic life cycle assessmentLife cycle inventoryExergy lo
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Life Cycle Assessment of olive oil: a case study in Southern Italy

2018

The paper describes the results of a specific LCA based analysis of the production of oil in the region of Calabria, in southern Italy. The goal of the study is to assess the energy and environmental impacts of different scenarios involving conventional and organic cultivations, plains and hills cultivations and involving different operating techniques. The study also aims at assessing the share of each life cycle step on the total of energy and environmental impacts. The functional unit chosen for the comparative analysis is a glass bottle of 0.75 l of extra-vergine oil. A “from cradle to gate” perspective was chosen. The analysis was developed according to the LCA standards of the ISO 140…

Oil Production Mediterranean Life Cycle Assessment Sustainability Environmental impacts eco-designSettore ING-IND/11 - Fisica Tecnica Ambientale
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Life Cycle Assessment della pirolisi di biomasse residuali dal settore agro – alimentare

2021

Il presente studio si propone di valutare gli impatti energetico - ambientali connessi al processo di pirolisi di rifiuti agro – alimentari attraverso l’applicazione della metodologia Life Cycle Assessment seguendo un approccio dalla culla al cancello. Il sistema analizzato consiste in un reattore di pirolisi al quarzo a letto fisso realizzato a scala di laboratorio. L’unità funzionale per l’analisi è 1 MJ di energia termica potenzialmente generata dalla combustione del bio-char prodotto dalla pirolisi di residui della potatura di olivi e dei residui della spremitura delle arance a tre diverse temperature (400 °C, 500 °C e 650 °C). Lo studio fornisce un ampio set di indicatori ambientali e …

Pirolisi biomasse residuali valorizzazione energetica Life Cycle Assessment
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Towards the Environmental Sustainability of the Construction Sector: Life Cycle Environmental Impacts of Buildings Retrofit

2022

In the context of the need for carbon emissions reduction, the buildingsector, as one of the most energy intensive one, needs tools and approaches towards carbon neutrality and the increase of the buildings overall energy performances. The paper proposes an integrated approach towards the environmental performances analysis of a small neighborhood having as goal the achievement of the Positive Energy District target and the assessment of its environmental impacts. The methodology proposed includes building modeling and dynamic energy simulation using the Energy Plus engine and a simplified Life Cycle Assessment approach. Two scenarios are investigated: i) the existing neighborhood, ii) the …

Positive Energy Districts · Neighborhoods · Building simulation Life Cycle Assessment · Environmental performancesSettore ING-IND/11 - Fisica Tecnica Ambientale
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Comparison of the environmental assessment of an identical office building with national methods

2019

The IEA EBC Annex 72 focuses on the assessment of the primary energy demand, greenhouse gas emissions and environmental impacts of buildings during production, construction, use (including repair and replacement) and end of life (dismantling), i.e. during the entire life cycle of buildings. In one of its activities, reference buildings (size, materialisation, operational energy demand, etc.) were defined on which the existing national assessment methods are applied using national (if available) databases and (national/regional) approaches. The ?be2226? office building in Lustenau, Austria was selected as one of the reference buildings. TU Graz established a BIM model and quantified the amou…

Primary energyEconomics0211 other engineering and technologiesSocial SciencesBuilding material02 engineering and technology010501 environmental sciencesengineering.material01 natural sciencesEngenharia e Tecnologia::Engenharia CivilAnnex 7211. Sustainability021105 building & constructionddc:330Production (economics)Environmental impact assessment0105 earth and related environmental sciencesSettore ING-IND/11 - Fisica Tecnica AmbientaleComparative AnalysisScience & TechnologyEnergy demandEnvironmental assessment[SDE.IE]Environmental Sciences/Environmental Engineeringbusiness.industryLCAArts & HumanitiesEnvironmental economics13. Climate actionGreenhouse gasAssessment methodsengineeringEnvironmental scienceElectricitybusinessBuilding life cycle assessment
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A Novel Lab‐Scale Fixed‐Bed Pyrolysis Reactor for Biofuel Production from Agro‐Waste: Experimental Set‐up and Preliminary Life Cycle Assessment Study

2020

The present study reports the features and set-up of a novel lab-scale fixed bed pyrolysis reactor for the production of solid and liquid bio-fuels from waste biomass. The fixed bed reactor is tested by carrying out pyrolysis experiments using two different waste biomasses. Olive tree trimmings (OT) and olive pulp (OP), olive cultivation and olive mill industries residues respectively, are pyrolyzed, under nitrogen atmosphere, between 200 and 650 °C for a residence time of 0.5 h. The OT and OP pyrolysis chars were characterized in terms of mass yields, high calorific values (HHVs), proximate and elemental analysis. Char mass yields, on a dry basis (d.b.), decreased from 91 to 23 wt% and fro…

Pyrolysis fixed bed reactor waste biomass biofuel life cycle assessmentSettore ING-IND/11 - Fisica Tecnica Ambientale
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RESHAPING AS NOVEL CIRCULAR ECONOMY STRATEGY FOR SHEET METAL BASED END-OF-LIFE COMPONENTS

2022

Making materials consumes about 21% of the global energy demand a specifically metals production, it accounts for about 8% of total global energy consumption. In fact, in the past few decades, the use of lightweight alloys has become increasingly widespread in many major industrial sectors thanks to the weight reduction associated with their applications. Most lightweight materials like aluminum alloys are characterized by high-energy demands primary production cycles that are responsible for a relevant share of the global CO2 emissions. Circular economy strategies such us longer life, more intense use, repair, product upgrades, modularity, remanufacturing, component re-use and open/closed …

Reshaping Single Point Incremental Forming Life Cycle Assessment Aluminum AlloySettore ING-IND/16 - Tecnologie E Sistemi Di Lavorazione
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Energy retrofit of a single-family house: Life cycle net energy saving and environmental benefits

2013

Abstract When a building undergoes a retrofit project, the goal of assessing energy and environmental performances of retrofit actions is a complex matter. Building and its environment are complex systems in which all sub-systems are strongly interdependent and influence the overall efficiency performance. In the following paper, starting from a literature review of building life-cycle studies, the authors highlight that there is a strong interplay among all the phases of a building life-cycle, as each one can affect one or more of the others. In detail, starting from the results of a “cradle to grave” life cycle study of an existing Mediterranean single-family house, a set of retrofit acti…

Retrofit Energy saving Life Cycle Assessment TRNSYSEngineeringArchitectural engineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleRenewable Energy Sustainability and the Environmentbusiness.industryEnergy consumptionTRNSYSSingle-family detached homeDemolitionbusinessLife-cycle assessmentEmbodied energyBuilding envelopeEfficient energy useRenewable and Sustainable Energy Reviews
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