Search results for "Process (engineering)"

showing 10 items of 931 documents

A Tool for Energy Management and Cost Assessment of Pumps in Waste Water Treatment Plants

2017

Waste Water Treatment Plants (WWTPs) are generally considered energy intensive. Substantial energy saving potentials have been identified by several authors. Pumps consume around 12% of the overall WWTP energy consumption. In this paper we propose a methodology that uses the sensors commonly installed in WWTPs, such as volume and energy sensors, to perform energy benchmarking on pumps. The relationship between energy efficiency and flow rate is used to detect specific problems, and potential solutions are proposed, taking into consideration economical and environmental criteria (cost of externalities in energy production). The methodology integrates energy benchmarking, data-mining, and eco…

Waste managementbusiness.industryEnergy management020209 energy02 engineering and technologyBenchmarkingEnergy consumptionWaste treatment020401 chemical engineering0202 electrical engineering electronic engineering information engineeringProduction (economics)Environmental scienceEnvironmental impact assessment0204 chemical engineeringProcess engineeringbusinessEnergy (signal processing)Efficient energy use
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Organic Compounds Evaluation from Fumes Generated in Laboratory by Bio-recycled Asphalt Mixtures

2021

Using bio-binder and bio-additives as recycling agents for asphalt mixtures with high-content of reclaimed asphalt (RA) is proving to be feasible. It is still not clear whether this combination might provide new hazardous emissions from airborne binder fumes. The health hazard related to airborne bitumen fume generation is primarily relevant for paving crews while there is little opportunity for exposure related to asphalt plant workers. In this study, measurements of gaseous organic compounds from airborne binder fumes of selected bio-asphalt mixtures have been measured during the laboratory mixing process, by using a thermo-mixer equipped with a chimney at University Gustave Eiffel. Param…

Waste managementreclaimed asphaltorganic compoundMechanical EngineeringMixing (process engineering)Bio-materialfumetestMechanics of MaterialsHazardous wasteAsphaltHealth hazardEnvironmental scienceGeneral Materials Science
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Design, modeling, and simulation of a photovoltaic water pumping system

2018

Electric pumps cannot be fed in those areas where they are not connected to the electric public distribution grid. In those areas, it is useful to feed electric pumps by means of the electricity generated from renewable energy sources plants. Among these, the Solar Water Pumping Systems feed electric pump thanks to the electricity generated by a photovoltaic plant. In this paper, a whole SWPS is fully designed, modelled, and simulated in Matlab environment. The proposed implementation is an useful tool for SWPS testing.

Water pumpingbusiness.industryMPPTPhotovoltaic systemWaterPhysics::OpticsSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciMaximum power point trackingRenewable energySolar waterAncillary functionSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaPumpingEnvironmental scienceElectricityDesign modelingbusinessMATLABProcess engineeringPhotovoltaiccomputercomputer.programming_language2018 IEEE International Conference on Industrial Technology (ICIT)
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Self-sufficient PV-H2 Alternative Energy Objects

2016

Energy storage becomes more important as mankind switch to renewable energy, away from fossil resources. Traditional way – batteries - offer a limited number of cycles, require regular maintenance; nevertheless gravitational storage, flywheels, compressed air are mainly large scale and expensive methods. The hydrogen as energy carrier and hydrogen fuel cells are possible option to store different amounts of energy for relatively long times with low losses. Different solutions for self-sufficient sun/wind energy objects are analysed - the solar radiation collecting systems, wind power generators, and high pressure electrolysis technologies for hydrogen production and the metal-hydride energy…

Wind powerPrimary energyChemistrybusiness.industry020209 energyУДК 620.92Electrical engineeringenergy storage; metal-hydride; electrolysis technologies; photovoltaic cells02 engineering and technologyхранение энергии; металлогидрид; электролизер; фотоэлектрический преобразователь021001 nanoscience & nanotechnologyEnergy technologyEnergy storageRenewable energyзберігання енергії; металогідриди; електролізер; фотоелектричний перетворювачAccumulator (energy)0202 electrical engineering electronic engineering information engineeringAlternative energyGrid energy storage0210 nano-technologybusinessProcess engineeringJournal of Mechanical Engineering
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Overview and Essentials of Biomass Gasification Technologies and Their Catalytic Cleaning Methods

2016

Obtaining a tar-free biosyngas from biomass gasification processes has been the subject of many studies in the past 2 decades, and it still remains the major technologic and economic challenge. Unfortunately, the countless publications about gasification technologies and different techniques permitting reduction of the tar present at the outlet of gasifier reactors usually confuse inexperienced persons who attempt to further research this subject. More than presenting the basis of biomass gasification technologies and positioning them among other bioenergies, this work mainly aims at reviewing and comparing the different methods developed in order to produce a tar-free biosyngas. In this wa…

Wood gas generatorCleaning methodsbusiness.industry020209 energyGeneral Chemical EngineeringEnergy Engineering and Power TechnologyTar02 engineering and technologyRaw materialFuel TechnologyChemical engineering0202 electrical engineering electronic engineering information engineeringEnvironmental scienceBiomass gasificationProcess engineeringbusinessEnergy & Fuels
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Towards the first proof of the concept of a Reverse ElectroDialysis - Membrane Distillation Heat Engine

2019

Abstract The coupling of Reverse Electrodialysis with Membrane Distillation is a promising option for the conversion of waste heat into electricity. This study evaluates the performances of the integrated system under different operating conditions, employing validated model and correlations. This work provides a detailed description of the behaviour of a real RED-MD heat engine and indicates the set of inlet concentrations, velocities and equipment size which returns the highest cycle exergy efficiency. These operating conditions were selected for the pilot plant developed within the EU-funded project RED Heat to Power. For the first time, a perspective analysis was also included, consider…

Work (thermodynamics)020209 energyGeneral Chemical EngineeringReverse Electrodialysis Heat EngineMembrane distillation02 engineering and technologyMembrane distillation7. Clean energyWaste heat recovery unitReversed electrodialysisWaste heatReverse electrodialysi0202 electrical engineering electronic engineering information engineeringOsmotic powerGeneral Materials ScienceChemical Engineering (all)Process engineeringSalinity Gradient PowerWaste heat recoveryHeat engineWater Science and Technologybusiness.industryMechanical EngineeringChemistry (all)General Chemistry021001 nanoscience & nanotechnology6. Clean waterReverse ElectroDialysisExergy efficiencyEnvironmental scienceMaterials Science (all)0210 nano-technologybusiness
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Thermolytic reverse electrodialysis heat engine: model development, integration and performance analysis

2019

Abstract Salinity gradient heat engines represent an innovative and promising way to convert low-grade heat into electricity by employing salinity gradient technology in a closed-loop configuration. Among the aqueous solutions which can be used as working fluid, ammonium bicarbonate-water solutions appear very promising due to their capability to decompose at low temperature. In this work, an experimentally validated model for a reverse electrodialysis heat engine fed with ammonium bicarbonate-water solutions was developed. The model consists of two validated sub-models purposely integrated, one for the reverse electrodialysis unit and the other for the stripping/absorption regeneration uni…

Work (thermodynamics)Absorption (acoustics)Settore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciMaterials science020209 energySettore ING-IND/25 - Impianti ChimiciEnergy Engineering and Power Technology02 engineering and technology7. Clean energyStripping (fiber)020401 chemical engineeringReversed electrodialysis0202 electrical engineering electronic engineering information engineering0204 chemical engineeringProcess engineeringHeat engineThermolytic salts Salinity gradient heat engine Regeneration unit Reverse electrodialysis Ammonium bicarbonate solutions Waste heat recoveryRenewable Energy Sustainability and the Environmentbusiness.industry6. Clean waterFuel TechnologyMembraneNuclear Energy and EngineeringExergy efficiencyWorking fluidbusinessEnergy Conversion and Management
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Optimizing and Modeling the drying process of the Natural Gas through the Taguchi method

2018

The aim of this study is to highlight the optimization method of the drying process of natural gas, using the Taguchi method. The natural gas undergoes several stages from its extraction until reaching its end consumer. As the natural gas contains several impurities and a certain quantity of water and vapors, the drying process is very important to obtain a product of high quality. Gas dehydration can be obtained through several methods, the method presented here being the absorption method - by use of a drying station with triglycol. This method is considered to be the most convenient one taking into account the obtained results. Nevertheless, cost reducing is the main objective for compan…

Work (thermodynamics)Absorption (acoustics)Taguchi methodsbusiness.industryNatural gasScientific methodEnvironmental scienceExtraction (military)Point (geometry)Process engineeringbusinessTechnical Agreement2018 10th International Conference on Electronics, Computers and Artificial Intelligence (ECAI)
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Towards an AMTEC-like device based on non-alkali metal for efficient, safe and reliable direct conversion of thermal to electric power

2018

Alkali Metal ThermoElectric Converters directly convert heat into electric energy and have promising applicability in the field of sustainable and renewable energy. The high theoretical efficiency, close to Carnot's cycle, the lack of moving parts, and the interesting operating temperature range drive the search for new materials able to ensure safe and reliable operation at competitive costs.The present work focuses on the design of a non-alkali metal based cell and on the fabrication of a testing device to validate the design work. The selection of a new operating fluid for the cell improves durability, reliability and safety of the device. Finally, we discuss possible applications to alr…

Work (thermodynamics)Computer sciencebusiness.industry02 engineering and technologyConverters010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesRenewable energysymbols.namesakeReliability (semiconductor)Thermoelectric effectsymbolsElectric power0210 nano-technologyProcess engineeringbusinessCarnot cycleThermal energy2018 AEIT International Annual Conference
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Process intensification in a photocatalytic membrane reactor: Analysis of the techniques to integrate reaction and separation

2017

Abstract Different methods to integrate reaction and separation in a membrane reactor are studied in the present work, with the aim being to highlight the pros and cons of the different alternatives and the effects of the intervening parameters. The coupling of the two processes can take place inside a single apparatus or using separate units. If a single apparatus is utilized, the coupling is more direct, but separate units offer higher degrees of freedom for the design with more opportunities to optimize the system without constraints. However, when using separate units, the integration of the two unit operations depends largely on the parameters intervening in the coupling procedure. The…

Work (thermodynamics)General Chemical EngineeringMembrane reactor02 engineering and technologyPéclet numberDegrees of freedom (mechanics)010402 general chemistry01 natural sciencesIndustrial and Manufacturing Engineeringsymbols.namesakePervaporationPhotocatalysiEnvironmental ChemistryChemical Engineering (all)Process engineeringSettore ING-IND/24 - Principi Di Ingegneria ChimicaMembrane reactorChemistrybusiness.industryIntegrated proceChemistry (all)Environmental engineeringProcess (computing)General Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesCoupling (computer programming)Process intensificationYield (chemistry)symbolsPervaporationSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technologybusiness
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