Search results for "Fuel Technology"

showing 10 items of 323 documents

Treatment of aqueous solutions of oxytetracycline by different electrochemical approaches: anodic oxidation, pressurized electro-Fenton and oxidation…

2023

The tetracycline group (TCs) includes the most common antibiotics for treatment of both human and animal infections. TCs are resistant to biological degradation; hence, conventional wastewater treatments are unable to remove these contaminants. Here, the utilization of different electrochemical processes, such as electro-Fenton (EF), direct anodic oxidation (AO) and indirect oxidation by electrogenerated active chlorine (EAC), for the treatment of aqueous solutions of oxytetracycline (OTC), which is one of the TCs, was studied. The effect of various operating conditions was evaluated to optimize the selected processes. EAC gave the fastest abatement of OTC, but the lowest removal of TOC and…

Renewable Energy Sustainability and the EnvironmentGeneral Chemical EngineeringOrganic Chemistryadvanced oxidation proceanodic oxidationSettore ING-IND/27 - Chimica Industriale E TecnologicaPollutionInorganic ChemistryFuel Technologytetracycline groupantibioticoxytetracyclineelectro-FentonWaste Management and DisposalBiotechnology
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Influence of variable feeding on mesophilic and thermophilic co-digestion of Laminaria digitata and cattle manure

2014

Abstract In this study the effect of various feeding ratios on mesophilic (∼35 °C) and thermophilic (∼50 °C) co-digestion of brown algae Laminaria digitata and cattle manure was investigated. Algae input of 15% VS caused no influence on specific methane yield from mesophilic co-digester while deteriorated the process parameters such as the development of propionic acid in total volatile fatty acids (tVFA) pattern of the thermophilic co-digester. The accumulation of tVFA continued for the latter reactor as the feeding ratio of algae enhanced to 24% VS, but the specific methane yield improved dramatically. Same rise in feeding once again showed no improvement in specific methane yield from me…

Renewable Energy Sustainability and the EnvironmentThermophileEnergy Engineering and Power TechnologyBiologyLaminaria digitatabiology.organism_classificationManureMethaneBrown algaeAnaerobic digestionchemistry.chemical_compoundFuel TechnologyAnimal scienceNuclear Energy and EngineeringAlgaechemistryBotanyMesophile
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Quantitative Estimation of Major and Trace Elements in Coals of the Benue Trough, Nigeria

2013

The concentrations of major and trace elements in ash residues of coals of the Benue Trough, Nigeria have been determined by electron microprobe and laser ablation-inductively coupled plasma-mass spectrometry, respectively. Major and trace element determination in rocks by fusion on an iridium strip heater followed by electron microprobe and laser ablation-inductively coupled plasma-mass spectrometry is extended here to coal ash, and the accuracy of the method is evaluated by including an Argonne Premium Coal reference sample in each analysis program. Si and Al are the major elements detected in the coal ashes. An assessment using worldwide concentration ranges of trace elements in coal ash…

Renewable Energy Sustainability and the Environmentbusiness.industrytechnology industry and agricultureTrough (geology)Trace elementEnergy Engineering and Power TechnologyMineralogyElectron microproberespiratory systemMass spectrometrycomplex mixturesrespiratory tract diseasesFuel TechnologyNuclear Energy and EngineeringReference sampleFly ashotorhinolaryngologic diseasesEnvironmental scienceCoalbusinessEnergy Sources, Part A: Recovery, Utilization, and Environmental Effects
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2020

Abstract The concept of social licence to operate (SLO) is an increasingly popular tool for companies to manage their relations with the local communities. SLO is very seldom used in the nuclear sector, which has nevertheless applied similar approaches, under notions such as partnership and participatory governance. This article explores the specific challenges that the application of SLO faces in the nuclear waste management (NWM) sector, by applying an often-used SLO framework of Boutilier and Thomson to illustrative case studies concerning nuclear waste repository projects in Finland, France and Sweden. Among the specificities of this sector, the article focuses on the central roles of t…

Renewable Energy Sustainability and the Environmentmedia_common.quotation_subjectCorporate governance0211 other engineering and technologiesEnergy Engineering and Power TechnologyContext (language use)02 engineering and technology010501 environmental sciencesPublic administration01 natural sciencesEconomic JusticePoliticsFuel TechnologyNuclear Energy and EngineeringPolitical scienceGeneral partnershipCorporate social responsibility021108 energySocial Sciences (miscellaneous)Legitimacy0105 earth and related environmental sciencesDiversity (politics)media_commonEnergy Research & Social Science
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Grid interaction and environmental impact of a net zero energy building

2020

Abstract The concept of Net Zero Energy Building (NZEB), as a grid-connected building that generates as much energy as it uses over a given period, has been developing through policies and research agendas during the last decade as a contribution towards the decarbonization of the building sector. However, since the most applicable and widely used renewable energy supply options are non-programmable, the large-scale NZEBs diffusion into the existing power grids can seriously affect their stability having a relapse on operation costs and environmental impacts. In this context, the study aims at performing the design of the energy systems to be used in the case-study through a wide numbers of…

Renewable energyEnergy storageNet Zero Energy BuildingsComputer science020209 energyEnergy Engineering and Power Technology02 engineering and technologyEnergy storage020401 chemical engineering0202 electrical engineering electronic engineering information engineeringNet Zero Energy Building0204 chemical engineeringFuel cellsSettore ING-IND/11 - Fisica Tecnica AmbientaleZero-energy buildingEnergy storage; Fuel cells; Grid interaction; Load matching; Net Zero Energy Buildings; Renewable energyGrid interactionRenewable Energy Sustainability and the Environmentbusiness.industryFuel cellPhotovoltaic systemEnvironmental economicsGridLoad matchingRenewable energyFuel TechnologyElectricity generationNuclear Energy and EngineeringbusinessBuilding envelopeNominal power (photovoltaic)Energy Conversion and Management
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Brewer's spent grains as biofuels in combustion-based energy recovery processes: Evaluation of thermo-oxidative decomposition

2022

[EN] The high global generation of wastes and side streams from agri-food production has led to environmental impact and causes nature degradation due to their uncontrolled management. These wastes are profitable materials with significant economic value that could otherwise be exploited as new sources in the feed industry or the production of bioenergy. Among them, brewer¿s spent grain (BSG) is a solid by-product generated in the beerbrewing process that consists of the barley grain husks together with parts of the pericarp and seed coat layer. Although it is rich in fibres and proteins, its main use is currently limited to animal feed or simply deposition to landfills. This study pursues …

Renewable energyGeneral Chemical EngineeringOrganic Chemistry09.- Desarrollar infraestructuras resilientes promover la industrialización inclusiva y sostenible y fomentar la innovaciónEnergy Engineering and Power TechnologyBiomassaKinetic analysiKinetic analysis15.- Proteger restaurar y promover la utilización sostenible de los ecosistemas terrestres gestionar de manera sostenible los bosques combatir la desertificación y detener y revertir la degradación de la tierra y frenar la pérdida de diversidad biológicaFuel TechnologyBioma07.- Asegurar el acceso a energías asequibles fiables sostenibles y modernas para todosMAQUINAS Y MOTORES TERMICOSActivation energy13.- Tomar medidas urgentes para combatir el cambio climático y sus efectosBiomassEnergies renovablesValorisation
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MATLAB-based simulator of a 5 kW fuel cell for power electronics design

2013

Abstract In the last few years, renewable energies have been encouraged by worldwide governments to meet energy saving policies. Among renewable energy sources, fuel cells have attracted much interest for a wide variety of research areas. Since combined heat-power generation is allowed, household appliances are still the most promising applications. Fuel cell-based residential-scaled power supply systems take advantage by simultaneous generation of power and heat, reducing the overall fossil fuel consumption and utilities cost. Modelling is one of the most important topic concerning fuel cell use. In this paper, a measurement-based steady-state and dynamic fuel cell model is presented. The …

Renewable energyModelling and simulationRenewable Energy Sustainability and the Environmentbusiness.industryComputer scienceHydrogen energyFuel cellEnergy Engineering and Power TechnologyProton exchange membrane fuel cellSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciCondensed Matter PhysicsSettore ING-INF/01 - ElettronicaAutomotive engineeringPower (physics)Renewable energyFuel TechnologyPower electronicsHydrogen fuelErrors-in-variables modelsProton Exchange Membrane Fuel CellbusinessMATLABcomputerEnergy (signal processing)computer.programming_languageInternational Journal of Hydrogen Energy
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Coupling electrodialysis desalination with photovoltaic and wind energy systems for energy storage: Dynamic simulations and control strategy

2020

Abstract The presence of desalination systems in polygeneration facilities is usually limited by important difficulties in operating under non-stationary regimes typical of renewable energy sources. Reverse osmosis, namely the most common desalination technology, is characterised by slow dynamics that rarely adapts to the power fluctuations of renewables. Therefore, the possibility of using electrodialysis coupled with a hybrid photovoltaic/wind energy source was investigated in this work. In particular, the combination of photovoltaic and wind energy is very attractive in order to achieve a more stable energy production, while electrodialysis is claimed to be a more flexible process compar…

Renewable energySettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi Chimici020209 energyEnergy Engineering and Power Technology02 engineering and technology7. Clean energyDesalinationEnergy storageCogenerationTime dependent020401 chemical engineeringSolar energy0202 electrical engineering electronic engineering information engineering0204 chemical engineeringProcess engineeringReverse osmosisCogenerationWind powerRenewable Energy Sustainability and the Environmentbusiness.industryDesalinationPhotovoltaic systemElectrodialysis6. Clean waterRenewable energyFuel TechnologyNuclear Energy and EngineeringEnvironmental scienceProcess controlbusinessEnergy Conversion and Management
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Forecasting daily urban electric load profiles using artificial neural networks

2004

The paper illustrates a combined approach based on unsupervised and supervised neural networks for the electric energy demand forecasting of a suburban area with a prediction time of 24 h. A preventive classification of the historical load data is performed during the unsupervised stage by means of a Kohonen's self organizing map (SOM). The actual forecast is obtained using a two layered feed forward neural network, trained with the back propagation with momentum learning algorithm. In order to investigate the influence of climate variability on the electricity consumption, the neural network is trained using weather data (temperature, relative humidity, global solar radiation) along with h…

Self-organizing mapSettore ING-IND/11 - Fisica Tecnica AmbientaleElectrical loadArtificial neural networkRenewable Energy Sustainability and the Environmentbusiness.industryComputer scienceEnergy Engineering and Power Technologyelectricity consumption neural networksDemand forecastingGridcomputer.software_genreBackpropagationFuel TechnologyNuclear Energy and EngineeringFeedforward neural networkElectricityData miningTelecommunicationsbusinesscomputerEnergy Conversion and Management
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Influence of ferric iron dosing on aerobic granular sludge: granule formation, nutrient removal and microbial community

2021

BACKGROUND: Three lab-scale sequencing batch reactors were used to investigate the effects of Fe3+ on aerobic granular sludge (AGS) formation, nutrient removal, and microbial community. RESULTS: The addition of 6 and 12 mg Fe3+ L−1 could not shorten the granulation time. However, compared to the reactor without Fe3+ addition (average sludge volume index at 30 min (SVI30) 70.8 mL g−1; stable average particle size 548 μm), the addition of 12 mg Fe3+ L−1 helped improve the physical properties of AGS (average SVI30 57.0 mL g−1; stable average particle size 1067 μm). Furthermore, with 12 mg Fe3+ L−1 addition (Fe3+ to PO43−-P molar ratio = 1.33), effective removal of NH4+-N (≤0.5 mg L−1) and PO43…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentChemistryGeneral Chemical EngineeringOrganic ChemistryGranule (cell biology)Pollutionaerobic granular sludge ferric iron microbial activity microbial community phosphorus and nitrogen removalInorganic ChemistryFuel TechnologyNutrientMicrobial population biologyDosingFood scienceFERRIC IRONWaste Management and DisposalBiotechnologyJournal of Chemical Technology & Biotechnology
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