Search results for "electricity production"

showing 10 items of 13 documents

The role of biomass in the production of electricity in agriculture. Current state and development opportunities

2012

The farming sector is currently affected by a continuous fall in the number of people employed in the sector and underemployment in farming families. This is largely due to the world economic crisis and the constant increase in the cost of primary goods coupled with a fall in value of agricultural products. This has caused, in various weak areas of many regions in Italy, a tendency towards rural depopulation with evident signs of land abandonment, leaving the area vulnerable to the risk of hydrogeological instability. It is therefore of the utmost importance to promote activities aimed at diversifying the rural economy by offering incentives to create/increase non-farming activities. Amongs…

Biomacrop residueelectricity productionSettore AGR/02 - Agronomia E Coltivazioni Erbacee
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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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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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A method for detecting malfunctions in PV solar panels based on electricity production monitoring

2017

In this paper a new method is developed for automatically detecting outliers or faults in the solar energy production of identical sets (sister arrays) of photovoltaic (PV) solar panels. The method involves a two-stage unsupervised approach. In the first stage, "in control" energy production data are created by using outlier detection methods and functional principal component analysis in order to remove global and local outliers from the data set. In the second stage, control charts for the "in control" data are constructed using both a parametric method and three non-parametric methods. The control charts can be used to detect outliers or faults in the production data in real-time or at t…

Functional principal component analysisRenewable Energy Sustainability and the EnvironmentComputer sciencebusiness.industryElectricity production monitoring020209 energyPhotovoltaic systemStatistical quality control02 engineering and technologyAnomaly detectionStatistical process controlcomputer.software_genreSolar energyOutlier0202 electrical engineering electronic engineering information engineeringGeneral Materials ScienceControl chartAnomaly detectionData miningbusinesscomputerPhotovoltaic solar panel sister arraysParametric statistics
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Electricity Production from Yeast Wastewater in Membrane-Less Microbial Fuel Cell with Cu-Ag Cathode

2023

Wastewater has high potential as an energy source. Therefore, it is important to recover even the smallest part of this energy, e.g., in microbial fuel cells (MFCs). The obtained electricity production depends on the process rate of the electrodes. In MFC, the microorganisms are the catalyst, and the cathode is usually made of carbon material (e.g., with the addition of Pt). To increase the MFC efficiency (and reduce costs by reducing use of the noble metals), it is necessary to search the new cathode materials. In this work, the electricity production from yeast wastewater in membrane-less microbial fuel cells with Cu-Ag cathode was analyzed. In the first place, the measurements of the sta…

cathodebio-electrochemical systemenvironmental engineeringControl and Optimizationyeast wastewaterRenewable Energy Sustainability and the EnvironmentMFCEnergy Engineering and Power TechnologyBuilding and Constructionbio-electricitymicrobial fuel cellCu-Ag catalystmicrobial fuel cell; MFC; bio-electrochemical system; bio-electricity; electricity production; cathode; Cu-Ag alloy; Cu-Ag catalyst; environmental engineering; yeast wastewaterelectricity productionElectrical and Electronic EngineeringEngineering (miscellaneous)Cu-Ag alloyEnergy (miscellaneous)Energies; Volume 16; Issue 6; Pages: 2734
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Elektroutlenianie odpadowego syntetycznego oleju silnikowego w wodnym roztworze H2SO4

2017

W pracy przedstawiono badania nad możliwością wykorzystania odpadowego syntetycznego oleju silnikowego do bezpośredniego wytwarzania energii elektrycznej. Pomiary przeprowadzono w zakresie temperatur 293–333 K. Obejmowały one elektroutlenianie emulsji odpadowego (zużytego) syntetycznego oleju silnikowego na elektrodzie platynowej w wodnym roztworze H2SO4. Do wytworzenia emulsji wykorzystano niejonowy środek powierzchniowo czynny Syntanol DS-10. Maksymalna uzyskana gęstość prądu wyniosła 22 mA/cm2 (dla temp. 333 K). Wykazano więc, że istnieje możliwość bezpośredniego wytwarzania prądu elektrycznego z odpadowego syntetycznego oleju silnikowego, a więc zasilania nim ogniw paliwowych.

elektroutlenianieenvironmental engineeringused synthetic engine oilelectrooxidationodpadowy olej silnikowypaliwofuel cellodnawialne źródła energiiogniwa paliwoweinżynieria środowiskaelectricity productionrenewable energy sourcesfuelwytwarzanie energii elektrycznejInżynieria Ekologiczna
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Ogniwo paliwowe zasilane emulsją oleju rzepakowego

2017

W pracy przedstawiono badania nad możliwością wykorzystania oleju rzepakowego jako substancji czynnej do zasilania ogniwa paliwowego. W tym celu zbudowano testowe ogniwo paliwowe. Ogniwo zasilano emulsją oleju rzepakowego. Jako detergent zastosowano Syntanol DS-10. Wykorzystano anodę z katalizatorem platynowym oraz katodę z katalizatorem Ni-Co. Pomiary przeprowadzono w temperaturze 293–333K. Maksymalna uzyskana gęstość prądu wynosiła 2 mA/cm2, natomiast maksymalna moc ogniwa 21 mW (dla temp. 333K). Wykazano, więc możliwość bezpośredniego dostarczania oleju rzepakowego (w formie emulsji) na anodę. Uzyskana moc ogniwa była stosunkowo niska, jednak istnieje możliwość zbudowania ogniwa paliwowe…

elektroutlenianieolej rzepakowyodnawialne źródła energiienvironmental engineeringuel cellcanola oilelectrooxidationogniwa paliwoweinżynieria środowiskaelectricity productionrenewable energy sourceswytwarzanie energii elektrycznejInżynieria Ekologiczna
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Feasibility of Waste Engine Oil Electrooxidation with Ni-Co and Cu-B Catalysts

2022

To implement a circular economy policy, methods of using waste products as a starting point for other technologies are constantly researched. One of the waste products that should be disposed of after use is waste engine oil (WEO). Despite the permanent introduction of the electrification of cars, the number of combustion vehicles (and, thus, the production of WEO) is constantly increasing. For these reasons, the reuse of WEOs is extremely important; e.g., to use these oils for energy purposes. One of the potential uses of this type of oil is as fuel for fuel cells (for direct electricity production). To lower the production costs of electrodes for fuel cells, catalysts that do not contain …

environmental engineeringControl and OptimizationRenewable Energy Sustainability and the EnvironmentEnergy Engineering and Power Technologyuse of by-productBuilding and ConstructionNi-Co catalystfuel cellwaste engine oilelectricity productionElectrical and Electronic Engineeringwaste engine oil; use of by-product; Cu-B catalyst; Ni-Co catalyst; electricity production; environmental engineering; fuel cellEngineering (miscellaneous)Cu-B catalystEnergy (miscellaneous)Energies
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Preparation and Analysis of Ni–Co Catalyst Use for Electricity Production and COD Reduction in Microbial Fuel Cells

2019

Microbial fuel cells (MFCs) are devices than can contribute to the development of new technologies using renewable energy sources or waste products for energy production. Moreover, MFCs can realize wastewater pre-treatment, e.g., reduction of the chemical oxygen demand (COD). This research covered preparation and analysis of a catalyst and measurements of changes in the concentration of COD in the MFC with a Ni&ndash

environmental engineeringMaterials scienceMicrobial fuel cellbusiness.industryChemical oxygen demandCatalysisCathodeCatalysisAnodeRenewable energylaw.inventionmicrobial fuel cellWastewaterChemical engineeringlawNi–Co catalystoxygen electrodeelectricity productionPhysical and Theoretical ChemistryAerationbusinessCatalysts
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Możliwość bezpośredniego zasilania ogniwa paliwowego biopaliwem

2017

Praca przedstawia analizę możliwości zasilania ogniw paliwowych biopaliwami. Analizy dokonano na podstawie rozpoznania pozycji literaturowych oraz badań własnych. Przeanalizowano wykorzystanie biogazu, wodoru pozyskanego metodami biologicznymi, wykorzystanie alkoholu metylowego oraz olejów roślinnych. Wykazano, że w przypadku metanolu istotnym jest poszukiwanie katalizatorów nie zawierających metali szlachetnych, natomiast w przypadku olejów roślinnych uzyskiwane wartości gęstości prądu nie pozwalają obecnie na zbudowanie ogniwa paliwowego o dużej wydajności. Wykazano, że jednak istnieje możliwość zasilania ogniw paliwowych biopaliwami, jednak konieczne są jednak, prace zmierzające do podwy…

fuel cellodnawialne źródła energiienvironmental engineeringsustainable development: ogniwa paliwowezrównoważony rozwójbiopaliwainżynieria środowiskarenewable energy sourcesbezpośrednie pozyskiwanie energii elektrycznejbiofuelsdirect electricity production
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