Search results for "fuel"

showing 10 items of 986 documents

Adaptive Vehicle Mode Monitoring Using Embedded Devices with Accelerometers

2012

Monitoring of specific attributes such as vehicle speed and fuel consumption as well as cargo safety is an important problem for transport domain. This task is performed using specific multiagent monitoring systems. To ensure secure operation of such systems they should have autonomous and adaptive behaviour.

Computer sciencebusiness.industryReal-time computingComputerApplications_COMPUTERSINOTHERSYSTEMSMonitoring systemAccelerometerDomain (software engineering)Task (project management)Mode (computer interface)Adaptive behaviourEmbedded systemFuel efficiencyAccelerometer databusiness
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Protonic ceramic fuel cell : elaboration and characterization. Investigation of the BaZr0.8Y0.2O3-d electrolyte by electrochemical impedance spectros…

2021

One of the current global challenges is to find novel, clean and efficient techniques for the energy production. The use of electrochemical cells and hydrogen is one of the solutions. These cells convert the excess energy produced by conventional systems into hydrogen by steam electrolysis. The hydrogen can be stored and transformed into electricity when needed in the fuel cell mode. Among the different electrochemical cells, protonic ceramic electrochemical cells have attracted much attention due to their high efficiency at intermediate temperature (400 – 600 °C). In addition, these systems offer the advantage of not diluting the fuel in electrolysis mode. This thesis work focuses on the e…

ConductivityConductivité[CHIM.MATE] Chemical Sciences/Material chemistryProtonic ceramic fuel cellSpectroscopie d'impédance électrochimiqueSynthèse hydrothermaleHydrothermal synthesisBaZr0.8Y0.2O3-DPile à combustible à céramique protoniqueElectrochemical impedance spectroscopy
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Design of experiment approach applied to reducing and oxidizing tolerance of anode supported solid oxide fuel cell. Part I: Microstructure optimizati…

2011

The main drawback of Ni/YSZ anode supports for solid oxide fuel cell application is their low tolerance to reducing and oxidizing (RedOx) atmosphere changes, owing to the Ni/NiO volume variation. This work describes a structured approach based on design of experiments for optimizing the microstructure for RedOx stability enhancement. A full factorial hypercube design and the response surface methodology are applied with the variables and their variation range defined as: (1) NiO proportion (40-60 wt% of the ceramic powders), (2) pore-former proportion (0-30 wt% corresponding to 0-64 vol.%), (3) NiO particle size (0.5-8 mu m) and (4) 8YSZ particle size (0.6-9 mu m).

ConductivityMaterials scienceDesign of experimentRenewable Energy Sustainability and the EnvironmentNon-blocking I/OEnergy Engineering and Power TechnologyRedOx stabilityCermetMicrostructureAnodeChemical engineeringSolid oxide fuel cellOxidizing agentCermetsSolid oxide fuel cellNi-YSZ anode supported cellResponse surface methodologyParticle sizeElectrical and Electronic EngineeringPhysical and Theoretical ChemistrySurface response methodologySofc AnodeReduction
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Estimates, trends, and drivers of the global burden of type 2 diabetes attributable to PM2·5 air pollution, 1990–2019: an analysis of data from the G…

2022

Background: Experimental and epidemiological studies indicate an association between exposure to particulate matter (PM) air pollution and increased risk of type 2 diabetes. In view of the high and increasing prevalence of diabetes, we aimed to quantify the burden of type 2 diabetes attributable to PM2·5 originating from ambient and household air pollution.Methods: We systematically compiled all relevant cohort and case-control studies assessing the effect of exposure to household and ambient fine particulate matter (PM2·5) air pollution on type 2 diabetes incidence and mortality. We derived an exposure–response curve from the extracted relative risk estimates using the MR-BRT (meta-regress…

Contaminación del AireHealth (social science)Type II DiabetesType 2 diabetes deathsair pollutionand YLLs attributable to all PM2·5 air pollutionMedicine (miscellaneous)and change from 1990 to 2019DALYsburden of diseaseGlobal Burden of DiseaseCarga Global de EnfermedadesMELLITUSINFLAMMATIONand household PM2·5 pollution from solid fuels in seven GBD super-regions and globally in 2019Diabetes MellitusHumansBiologyASSOCIATIONSRISKINSULIN-RESISTANCEGBD 2019 Diabetes and Air Pollution CollaboratorsHealth PolicyMaterial ParticuladoPublic Health Environmental and Occupational HealthBayes TheoremLONG-TERM EXPOSUREHumanosYLDsChemistryDiabetes Mellitus Type 23121 General medicine internal medicine and other clinical medicineAños de Vida Ajustados por Calidad de Vidaambient PM2·5 pollutionParticulate MatterQuality-Adjusted Life YearsHuman medicineFINE PARTICULATE MATTERRAType II Diabetes; air pollution; burden of disease;The Lancet Planetary Health
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Applicability of Waste Engine Oil for the Direct Production of Electricity

2021

New methods for the use of waste products as input for other technologies are a constant subject of research efforts. One such product is waste engine oil. Due to the constantly increasing number of motor vehicles in the world, the recycling or application of engine oils for energy production purposes is currently of considerable importance. This paper contains research regarding the analysis of the electro-oxidation potential of waste engine oil, and thus the possibility of using such oil as a material in fuel cells. The research demonstrates the basic possibility of the electro-oxidation of this oil emulsion on a platinum electrode in an acid electrolyte (aqueous solution of H2SO4). It wa…

Control and Optimization020209 energyEnergy Engineering and Power Technologyuse of by-product02 engineering and technologyElectrolytelcsh:Technologyfuel cellDirect production0202 electrical engineering electronic engineering information engineeringElectrical and Electronic EngineeringEngineering (miscellaneous)environmental engineeringWaste managementwaste engine oil; electricity production; environmental engineering; use of by-product; fuel cellRenewable Energy Sustainability and the Environmentbusiness.industrylcsh:TWaste oil021001 nanoscience & nanotechnologyElectricity generationwaste engine oilVolume (thermodynamics)EmulsionEnvironmental scienceFuel cellsElectricityelectricity production0210 nano-technologybusinessEnergy (miscellaneous)Energies; Volume 14; Issue 4; Pages: 1100
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Investigation on a Bio-Composite Material as Acoustic Absorber and Thermal Insulation

2020

In order to limit the anthropic emissions of CO2, research is currently investigating new materials for the building sector. The main purpose is the reduction in the embodied energy consumption, especially in the residential sector, and consequently the limitation of the direct and indirect utilization of fossil fuels, for the indoor heating, cooling, and ventilation services. Indeed, the residential sector is affected by a high energy demand, thus the choice of improved materials is fundamental to improve the sustainability. All phases: construction, building life, and dismantling are impacting in terms of resource and energy consumption, both associated with the emissions of pollutants in…

Control and Optimization0211 other engineering and technologiesEnergy Engineering and Power Technology020101 civil engineering02 engineering and technologyengineering.materialUSablelcsh:Technology0201 civil engineeringThermal insulation021105 building & constructionThermalElectrical and Electronic EngineeringProcess engineeringEngineering (miscellaneous)LimeSettore ING-IND/11 - Fisica Tecnica Ambientalebio-composite materiallcsh:TRenewable Energy Sustainability and the Environmentbusiness.industryFossil fuelEnergy consumptionAcoustic absorber Bio-composite material Thermal insulationSustainabilityengineeringthermal insulationEnvironmental scienceacoustic absorberbusinessEmbodied energyEnergy (miscellaneous)Energies
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The Membrane-Less Microbial Fuel Cell (ML-MFC) with Ni-Co and Cu-B Cathode Powered by the Process Wastewater from Yeast Production

2020

Research related to measurements of electricity production was combined with parallel wastewater parameter reduction in a membrane-less microbial fuel cell (ML-MFC) fed with industry process wastewater (from a yeast factory). Electrodes with Ni–Co and Cu–B catalysts were used as cathodes. A carbon electrode (carbon cloth) was used as a reference due to its widespread use. It was demonstrated that all analyzed electrodes could be employed as cathodes in ML-MFC fed with process wastewater from yeast production. Electricity measurements during ML-MFC operations indicated that power (6.19 mW) and current density (0.38 mA·cm−2) were the highest for Ni–Co electrodes. In addition, during the explo…

Control and OptimizationMicrobial fuel cellyeast wastewatermicrobial fuel cell; electricity production; oxygen electrode; Ni–Co cathode; Cu–B cathode; yeast wastewater; environmental engineeringEnergy Engineering and Power Technologychemistry.chemical_element02 engineering and technology010501 environmental sciences01 natural scienceslcsh:Technologylaw.inventionmicrobial fuel celllawElectrical and Electronic EngineeringEngineering (miscellaneous)Clark electrode0105 earth and related environmental sciencesenvironmental engineeringRenewable Energy Sustainability and the Environmentlcsh:TChemical oxygen demand021001 nanoscience & nanotechnologyPulp and paper industryCathodeCu–B cathodeWastewaterchemistryElectrodeoxygen electrodeelectricity productionAeration0210 nano-technologyNi–Co cathodeCarbonEnergy (miscellaneous)Energies
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Fossil Fuel and Biofuel Boilers in Ukraine: Trends of Changes in Levelized Cost of Heat

2022

An increase in the share of renewables in heat supply systems is a promising direction to reach sustainable development goals and decarbonization. Decision makers should consider various factors, including energy market prices, the availability of biofuels, boiler and auxiliary equipment costs, logistic costs, and the taxation system. In the European Union, the energy crisis causes a rapid increase in fossil fuel prices. Moreover, the use of fossil fuels results in greenhouse gas emissions, which threatens the achievement of sustainable development goals. We studied the influence of the delivery cost and the value of environmental tax rates on the levelized cost of heat. Low-capacity boiler…

Control and OptimizationRenewable Energy Sustainability and the EnvironmentEnergy Engineering and Power Technologylevelized cost of heatbiofuel; levelized cost of heat; heat supply; thermal energy; delivery costs; environmental tax rates; solid fuel boilerBuilding and Constructionheat supplysolid fuel boilerthermal energybiofueldelivery costsElectrical and Electronic EngineeringEngineering (miscellaneous)environmental tax ratesEnergy (miscellaneous)Energies
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Controllable Solid Rocket Motor Nozzle Operations in Conditions of Limited-Amplitude Fluctuations

2009

A nonlinear multi scale analysis of a controllable solid rocket motor operating in conditions ranging from high-amplitude fluctuations in combustion chamber to conditions lying in limit cycle is presented and the motor behavior subsequent to some relevant nozzle operations is investigated. Effects of acoustic-vorticity-entropy wave coupling, wave steepening, rotational/viscous flow losses, steep-fronted wave losses are taken into account and oscillatory energy losses in pintle-nozzle, unsteady combustion and chamber geometry changes resulting from grain regression are included. The analysis provides evidence that the unsteady energy balance and the motor wave amplitude evolution are influen…

Controllable Rocket Motor Limit CycleEngineeringbusiness.industryNozzleMechanicsCombustionPhysics::Fluid DynamicsScale analysis (statistics)Nonlinear systemAmplitudeLimit cycleSettore ING-IND/07 - Propulsione AerospazialeCombustion chamberSolid-fuel rocketbusinessSimulation45th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit
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Screening boreal energy crops and crop residues for methane biofuel production

2008

Abstract The purpose of the study was to screen potential boreal energy crops and crop residues for their suitability in methane production and to investigate the effect of harvest time on the methane production potential of different crops. The specific methane yields of crops, determined in 100–200 d methane potential assays, varied from 0.17 to 0.49 m 3  CH 4  kg −1 VS added (volatile solids added) and from 25 to 260 m 3  CH 4  t ww −1 (tonnes of wet weight). Jerusalem artichoke, timothy-clover grass and reed canary grass gave the highest potential methane yields of 2900–5400 m 3  CH 4  ha −1 , corresponding to a gross energy yield of 28–53 MWh ha −1 and ca. 40,000–60,000 km ha −1 in pas…

Crop residueRenewable Energy Sustainability and the EnvironmentBiomassForestryMethaneEnergy cropchemistry.chemical_compoundAgronomychemistryBiogasBioenergyBiofuelEnvironmental scienceEnergy sourceWaste Management and DisposalAgronomy and Crop ScienceBiomass and Bioenergy
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