Search results for "responsible consumption"

showing 10 items of 95 documents

A systematic assessment of road pavement sustainability through a review of rating tools

2017

Pavements are engineered systems present in every modern society, and they have significant environmental, economic and social impacts. In an effort to promote more sustainable decisions regarding pavement design, construction and management, several pavement sustainability assessment tools have been developed. This research reviewed some of these tools and found that many of them do not treat the pavement as a system; instead, they seek to optimize individual aspects of the pavement in an effort to increase its sustainability. Therefore, a framework for analytically assessing the system outcomes towards sustainable objectives is presented and applied for modern pavement sustainability asse…

Economics and EconometricsEngineeringPavements Sustainability assessment Lifecycle assessment Infrastructure management Performance managementPerformance management020209 energy02 engineering and technology010501 environmental sciences01 natural sciences12. Responsible consumption11. Sustainability0202 electrical engineering electronic engineering information engineeringSettore ICAR/04 - Strade Ferrovie Ed AeroportiWaste Management and DisposalEnvironmental planning0105 earth and related environmental sciencesbusiness.industrySustainability assessmentPavement managementInfrastructure managementPerformance managementInfrastructure managementRisk analysis (engineering)13. Climate actionSustainabilityLifecycle assessmentPavementsbusiness
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System dynamics models for decision making in product multiple lifecycles

2015

The main drivers for adopting product multiple lifecycles are to gain ecological and economic advantages. However, in most of the cases it is not straight forward to estimate the potential ecological and economic gain that may result from adopting product multiple lifecycles. Even though many researchers have concluded that product multiple lifecycles result in gain, there are examples which indicate that the gain is often marginal or even none in many cases. The purpose of this research is to develop system dynamics models that can assist decision makers in assessing and analysing the potential gain of product multiple lifecycles considering the dynamics of material scarcity. The foundatio…

Economics and EconometricsMaterial criticalitySystem dynamicResources policyResource conservationMiljövetenskap12. Responsible consumptionSystem dynamicsMaterial criticalityEkonomi och näringslivEconomic advantageRisk analysis (engineering)Dynamic modelsResource scarcityResource scarcityEconomics and BusinessResource conservationEconomicsSystems engineeringMultiple-lifecycleProduct (category theory)Waste Management and DisposalEnvironmental Sciences
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Cost modeling for sludge and waste management from wastewater treatment plants: an empirical approach for Spain

2013

Abstract Wastewater treatment involves the generation of large volumes of sludge and other waste. Managing this waste in an economical and environmentally acceptable way has become a matter of increasing importance over the last few years. While the technologies and processes to reduce sludge generation are being widely studied, research on the economic aspects is much more limited. This study applies a cost-modeling methodology that uses statistical information from a sample of Spanish wastewater treatment plants (WWTPs) to generate a sewage sludge and waste management cost function with the aim of contributing to a better understanding of the cost structure and predicting the cost savings…

EngineeringCost structureWaste managementbusiness.industry0207 environmental engineeringEnvironmental engineeringOcean Engineering02 engineering and technology010501 environmental sciences01 natural sciencesPollution6. Clean water12. Responsible consumptionCost savingsWaste treatmentSewage treatment020701 environmental engineeringbusinessSludge0105 earth and related environmental sciencesWater Science and TechnologyDesalination and Water Treatment
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Economic feasibility study for new technological alternatives in wastewater treatment processes: a review

2012

The concept of sustainability involves the integration of economic, environmental, and social aspects and this also applies in the field of wastewater treatment. Economic feasibility studies are a key tool for selecting the most appropriate option from a set of technological proposals. Moreover, these studies are needed to assess the viability of transferring new technologies from pilot-scale to full-scale. In traditional economic feasibility studies, the benefits that have no market price, such as environmental benefits, are not considered and are therefore underestimated. To overcome this limitation, we propose a new methodology to assess the economic viability of wastewater treatment tec…

EngineeringEnvironmental EngineeringEmerging technologiesShadow price0207 environmental engineering02 engineering and technology010501 environmental sciencesWaste Disposal Fluid01 natural sciencesWater Purification12. Responsible consumptionMarket price020701 environmental engineering0105 earth and related environmental sciencesWater Science and TechnologyCost–benefit analysisbusiness.industryManagement science6. Clean waterRisk analysis (engineering)13. Climate actionSustainabilityFeasibility StudiesSewage treatmentbusinessAlternative technologyWaste disposalWater Science and Technology
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Life Cycle Costing: a tool to manage the urban water cycle

2013

The Water Framework Directive puts much emphasis on the role of economics for improving the management of water resources. In the context of the urban water cycle, previous studies have proven that Life Cycle Costing (LCC) is a useful methodology for assessing the costs of the whole cycle. However, there are many elements and factors that can influence the results of the LCC assessment and therefore affect the decision making process. The main aim of this study is to identify the main difficulties for carrying out LCC studies in the urban water cycle and to propose some solutions to overcome them. Hence, the conclusions obtained from the assessment of several case studies will be more robus…

EngineeringEnvironmental Engineeringbusiness.industryHealth Toxicology and MutagenesisTransferability0207 environmental engineeringUrban water cycleContext (language use)02 engineering and technology010501 environmental sciences01 natural sciences12. Responsible consumptionWater resourcesRisk analysis (engineering)Water Framework Directive11. SustainabilitySystems engineeringLife cycle costingDecision-making020701 environmental engineeringbusiness0105 earth and related environmental sciencesWater Science and TechnologyJournal of Water Supply: Research and Technology-Aqua
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Selective recovery of gold from electronic waste using 3D-printed scavenger

2017

Around 10% of the worldwide annual production of gold is used for manufacturing of electronic devices. According to the European Commission, waste electric and electronic equipment is the fastest growing waste stream in the European Union. This has generated the need for an effective method to recover gold from electronic waste. Here, we report a simple, effective, and highly selective nylon-12-based three-dimensional (3D)-printed scavenger objects for gold recovery directly from an aqua regia extract of a printed circuit board waste. Using the easy to handle and reusable 3D-printed meshes or columns, gold can be selectively captured both in a batch and continuous flow processes by dipping …

EngineeringGeneral Chemical Engineering3D-printed scavenger3D printing02 engineering and technology01 natural sciencesElectronic wasteColumn (database)kultaArticle12. Responsible consumptionelectronic wastelcsh:ChemistryPrinted circuit boardchemistry.chemical_compoundselective recoverymedia_common.cataloged_instanceAqua regiaElectronicsEuropean unionta116media_commonWaste management010405 organic chemistrybusiness.industryGeneral Chemistrygold021001 nanoscience & nanotechnologyScavenger (chemistry)0104 chemical scienceslcsh:QD1-999chemistry0210 nano-technologybusinessACS Omega
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Composite Material Recycling Technology—State-of-the-Art and Sustainable Development for the 2020s

2021

Recently, significant events took place that added immensely to the sociotechnical pressure for developing sustainable composite recycling solutions, namely (1) a ban on composite landfilling in Germany in 2009, (2) the first major wave of composite wind turbines reaching their End-of-Life (EoL) and being decommissioned in 2019–2020, (3) the acceleration of aircraft decommissioning due to the COVID-19 pandemic, and (4) the increase of composites in mass production cars, thanks to the development of high volume technologies based on thermoplastic composites. Such sociotechnical pressure will only grow in the upcoming decade of 2020s as other countries are to follow Germany by limiting and ba…

Engineeringcircular economy;Sociotechnical systemcomposite materialsAutomotive industryend-of-life02 engineering and technologyrecycling010501 environmental sciencescompositeslcsh:Technology7. Clean energy01 natural sciencesCommercializationNuclear decommissioning12. Responsible consumptionComposite materiallcsh:Sciencecars;recycling;Engineering (miscellaneous)0105 earth and related environmental sciencesSustainable developmentcircularitylcsh:Tbusiness.industryCircular economysustainability;sustainability021001 nanoscience & nanotechnologysocietycircularity;composite materials;composites;Work (electrical)end-of-life;technologySustainabilityCeramics and Compositeslcsh:Q0210 nano-technologybusinessJournal of Composites Science
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Economic valuation of environmental benefits of removing pharmaceutical and personal care products from WWTP effluents by ozonation.

2013

Continuous release of pharmaceutical and personal care products (PPCPs) present in effluents from wastewater treatment plants (WWTPs) is nowadays leading to the adoption of specific measures within the framework of the Directive 2000/60/EC (Water Framework Directive). The ozonation process, normally employed for drinking water production, has also proven its potential to eliminate PPCPs from secondary effluents in spite of their low concentrations. However, there is a significant drawback related with the costs associated with its implementation. This lack of studies is especially pronounced regarding the economic valuation of the environmental benefits associated to avoid the discharge of …

Environmental Engineering010504 meteorology & atmospheric sciencesShadow priceCosmetics010501 environmental sciencesWastewater01 natural sciencesWaste Disposal Fluid12. Responsible consumptionWater Purificationchemistry.chemical_compoundBioreactorsOzoneEnvironmental ChemistryGalaxolideWaste Management and DisposalEffluent0105 earth and related environmental sciencesPollutantPersonal careWaste managementMolecular StructureMembranes ArtificialPollution6. Clean waterEconomic valuationModels EconomicchemistryWater Framework DirectivePharmaceutical Preparations13. Climate actionEnvironmental scienceSewage treatmentThe Science of the total environment
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Wastewater treatment and reclamation : A review of pulp and paper industry practices and opportunities

2016

The pulp and paper (P&P) industry worldwide has achieved substantial progress in treating both process water and wastewater, thus limiting the discharge of pollutants to receiving waters. This review covers a variety of wastewater treatment methods, which provide P&P companies with cost-effective ways to limit the release of biological or chemical oxygen demand, toxicity, solids, color, and other indicators of pollutant load. Conventional wastewater treatment systems, often comprising primary clarification followed by activated sludge processes, have been widely implemented in the P&P industry. Higher levels of pollutant removal can be achieved by supplementary treatments, which…

Environmental EngineeringMaterials sciencelcsh:BiotechnologyACTIVATED-SLUDGE TREATMENTBioengineeringDISSOLVED-AIR FLOTATIONWastewater treatment02 engineering and technology010501 environmental sciencesWHITE-ROT FUNGI01 natural sciencesMILL EFFLUENT TREATMENTCHLORINATED ORGANIC-COMPOUNDS12. Responsible consumptionLand reclamationlcsh:TP248.13-248.65Bioreactoractivated sludgeadvanced oxidationMembrane technologiesWaste Management and DisposalEffluent0105 earth and related environmental sciencesmembrane technologiesPollutantBLEACHED KRAFT MILLpulp and paper manufacturingPulp and paper manufacturingWaste managementChemical oxygen demand021001 nanoscience & nanotechnologyPulp and paper industry6. Clean waterClarificationwastewater treatmentActivated sludgeWastewaterCATALYTIC WET OXIDATIONActivated sludge13. Climate actionANAEROBIC MEMBRANE BIOREACTORSAdvanced oxidationGREENHOUSE-GAS EMISSIONclarificationSewage treatment0210 nano-technologyMOLECULAR-WEIGHT DISTRIBUTION
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Simultaneous Separation of Antioxidants and Carbohydrates From Food Wastes Using Aqueous Biphasic Systems Formed by Cholinium-Derived Ionic Liquids

2019

project CICECO-Aveiro Institute of Materials, UID/CTM/50011/2019. Associate Laboratory for Green Chemistry-LAQV, FCT Ref. UID/QUI/50006/2019. POCI-01-0145-FEDER-016403. Investigator FCT project IF/00621/2015. Programa Mais Centro under project CENTRO-07-ST24-FEDER-002008. COMPETE: PEst-C/SAU/UI0709/2011. The food industry produces significant amounts of waste, many of them rich in valuable compounds that could be recovered and reused in the framework of circular economy. The development of sustainable and cost-effective technologies to recover these value added compounds will contribute to a significant decrease of the environmental footprint and economic burden of this industry sector. Acc…

Food industry02 engineering and technology010402 general chemistry01 natural sciencesionic liquidslcsh:Chemistrychemistry.chemical_compoundaqueous biphasic systemsPhase (matter)Organic chemistryMonosaccharidevalue added compoundsresource efficiencyBistriflimideOriginal Researchchemistry.chemical_classificationAqueous solutionbusiness.industryExtraction (chemistry)circular economytoxicitySDG 8 - Decent Work and Economic GrowthGeneral Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesChemistryFood wastewaste valorizationchemistryfood wastelcsh:QD1-999Ionic liquid0210 nano-technologybusinessSDG 12 - Responsible Consumption and ProductionFrontiers in Chemistry
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