Search results for "Fuel Technology"

showing 10 items of 323 documents

Sorption characteristics of heavy metal ions by a natural zeolite

2005

Zeolites have been shown to be effective adsorbents for the removal of heavy metals from aqueous solutions. A natural material from Cuba, containing zeolite, has been used for the removal of several metal ions, namely Cu2+, Zn2+, and Ni2+, to evaluate its potential use as a low-cost adsorbent. Batch experiments have been conducted to evaluate the process kinetics and the removal equilibrium at different pH values, metal and zeolite concentrations. Pseudo-second order kinetics and Freundlich equilibrium parameters have been obtained. Results suggested that this natural zeolite has a high potential for heavy metal retention. The selectivity of the studied metals was determined as Cu2+ ≫ Zn2+ …

Aqueous solutionRenewable Energy Sustainability and the EnvironmentChemistryGeneral Chemical EngineeringMetal ions in aqueous solutionOrganic ChemistryInorganic chemistrySorptionPollutionInorganic ChemistryMetalFuel TechnologyAdsorptionvisual_artvisual_art.visual_art_mediumFreundlich equationZeoliteWaste Management and DisposalEquilibrium constantBiotechnologyJournal of Chemical Technology & Biotechnology
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Evaluation of biosorbents for Cu removal from wastewater in the presence of EDTA

2007

BACKGROUND: This paper evaluates the use of several biosorbents for Cu removal from aqueous solutions in the absence and presence of ethylenediaminetetraacetic acid (EDTA). The objective was to determine the applicability of the sorption process after conventional physicochemical wastewater treatment, or as primary treatment, replacing the physicochemical process. RESULTS: Fixed-bed experiments were performed at Cu influent concentrations of 2 and 20 mg dm−3 and EDTA doses between 0 and 10 mg dm−3. At low Cu concentration without EDTA, Cu uptake capacity followed the order Posidonia oceanica > chitosan > chitin > Scharlau AC > Darco AC, with a maximum, at C/C0 = 0.2, of 23.2 mg g−1. In the …

Aqueous solutionRenewable Energy Sustainability and the EnvironmentGeneral Chemical EngineeringOrganic ChemistryBiosorptionEnvironmental engineeringSorptionEthylenediaminetetraacetic acidPollutionInorganic ChemistryChitosanchemistry.chemical_compoundFuel TechnologychemistryWastewatermedicineWaste Management and DisposalEffluentBiotechnologyNuclear chemistryActivated carbonmedicine.drugJournal of Chemical Technology & Biotechnology
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Photocatalytic formation of H2 and value-added chemicals in aqueous glucose (Pt)-TiO2 suspension

2016

Abstract Commercial and home prepared bare and Pt-supported TiO2 samples were used as the photocatalysts for the aqueous photo-conversion of glucose at ambient pressure and temperature. Aerobic and anaerobic conditions were used to study the products of glucose degradation both in the liquid (arabinose, erythrose, gluconic acid, glucaric acid, fructose and formic acid) and gaseous (H2 and CO2) phases. The distribution of these molecules was different in the presence of the various powders, depending on the structural and physico-chemical properties of the materials, and Pt resulted essential for the anaerobic production of H2. The home prepared samples resulted more active than the commerci…

ArabinoseFormic acidInorganic chemistryPartial oxidationEnergy Engineering and Power TechnologyCondensed Matter Physic02 engineering and technology010402 general chemistry01 natural sciencesGlucaric Acidchemistry.chemical_compoundPhotocatalysiTiO2Aqueous solutionRenewable Energy Sustainability and the EnvironmentBrookiteFructose021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesGlucoseFuel TechnologychemistryErythrosevisual_artH2Gluconic acidvisual_art.visual_art_mediumHigh value chemicalSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technologyInternational Journal of Hydrogen Energy
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Deep learning strategies for automatic fault diagnosis in photovoltaic systems by thermographic images

2021

Abstract Losses of electricity production in photovoltaic systems are mainly caused by the presence of faults that affect the efficiency of the systems. The identification of any overheating in a photovoltaic module, through the thermographic non-destructive test, may be essential to maintain the correct functioning of the photovoltaic system quickly and cost-effectively, without interrupting its normal operation. This work proposes a system for the automatic classification of thermographic images using a convolutional neural network, developed via open-source libraries. To reduce image noise, various pre-processing strategies were evaluated, including normalization and homogenization of pi…

Artificial neural networkContextual image classificationRenewable Energy Sustainability and the EnvironmentComputer sciencebusiness.industry020209 energyDeep learningEnergy Engineering and Power TechnologyPattern recognitionSobel operatorAutomatic Fault recognition Convolutional Neural Network Photovoltaics TensorFlow Infrared Thermography02 engineering and technologyPerceptronConvolutional neural networkThresholdingThermographic inspectionFuel Technology020401 chemical engineeringNuclear Energy and Engineering0202 electrical engineering electronic engineering information engineeringArtificial intelligence0204 chemical engineeringbusinessEnergy Conversion and Management
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Impacts of electricity pricing on techno-economic performance of photovoltaic-battery centered microgrid

2021

The energy management technique in a microgrid, plays very crucial role for making it more economic viable during the electricity energy pricing dynamics. It is vital to investigate the impact of e...

Battery (electricity)Energy pricingVDP::Teknologi: 500::Miljøteknologi: 610Renewable Energy Sustainability and the Environmentbusiness.industryEnergy management020209 energyPhotovoltaic systemElectricity pricingEnergy Engineering and Power TechnologyTechno economic02 engineering and technologyEnvironmental economicsFuel Technology020401 chemical engineeringNuclear Energy and Engineering0202 electrical engineering electronic engineering information engineeringEconomicsElectricityMicrogrid0204 chemical engineeringbusinessEnergy Sources, Part A: Recovery, Utilization, and Environmental Effects
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A thermo-alkaline lipase from a new thermophileGeobacillus thermodenitrificansAV-5 with potential application in biodiesel production

2015

BACKGROUND A thermophilic lipase-producing Geobacillus thermodenitrificans strain AV-5 was isolated from the Mushroom Spring of Yellowstone National Park in WY, USA and studied as a source of lipase for transesterification of vegetable oils to biodiesel. RESULTS A maximum activity of 330 U mL−1 was produced on 2% (v/v) waste cooking oil at 50 °C, pH 8, aeration rate of 1 vvm and agitation speed of 400 rpm. However, the higher lipase productivity (14.04 U mL−1 h−1) was found at a volumetric oxygen transfer coefficient (kLa) value of 18.48 h−1. The partially purified lipase had a molecular weight, temperature and pH optimum of 50 kDa, 65 °C and pH 9, respectively, and was thermo-alkali stable…

BiodieselbiologyRenewable Energy Sustainability and the EnvironmentChemistryGeneral Chemical EngineeringThermophileOrganic ChemistrySubstrate (chemistry)TransesterificationPollutionInorganic ChemistryFuel TechnologyBiochemistryBiodiesel productionbiology.proteinFermentationFood scienceAerationLipaseWaste Management and DisposalBiotechnologyJournal of Chemical Technology & Biotechnology
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Gasification of pelletized renewable fuel for clean energy production

2011

Abstract The main aim of the study was to develop and investigate a small-scale experimental gasification technique for the effective thermal decomposition of pelletized renewable fuels (wood sawdust, wheat straw). The technical solution of the biomass gasifier for gasification of renewable fuels presents a downdraft gasifier with controllable additional heat energy supply to the biomass using the radial propane flame injection into the bottom part of the biomass layer. From the kinetic study of the mass conversion rate of pelletized biomass and variations of the composition of produced gas it is concluded that the process of biomass gasification is strongly influenced by the amount of addi…

Biomass to liquidWood gas generatorGeneral Chemical EngineeringOrganic ChemistryEnergy Engineering and Power TechnologyBiomassRenewable fuelsStrawPulp and paper industryCombustionFuel Technologyvisual_artvisual_art.visual_art_mediumEnvironmental scienceSawdustPyrolysisFuel
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Towards controlling PCDD/F production in a multi-fuel fired BFB boiler using two sulfur addition strategies. Part II: Thermodynamic analysis

2014

Abstract A staged equilibrium process model was developed for a bubbling fluidized bed boiler firing SRF, bark and sludge. The model was used to study the influence of sulfur addition strategies (S-pellet additive and peat co-firing) on the behavior of copper, bromine, and alkalis. Aerosol samples collected from the backpass of the boiler were used to validate the chemistry predicted by the model. The model revealed that Cu existed as Cu 2 S (s3) in the reducing zone, and CuCl (g) (for all test cases) and CuO (s) (during peat co-firing) in the oxidation zones. CuBr 3(g) was also present after the introduction of tertiary air. However the model failed to predict the formation of CuSO 4 , an …

BrominePeatsulfur additionChemistryGeneral Chemical EngineeringOrganic ChemistryPelletsAnalytical chemistryBoiler (power generation)Energy Engineering and Power Technologychemistry.chemical_elementstaged equilibrium modelingfluidized bed boilersCombustionpelletsCopperAerosolDe novo synthesisFuel TechnologycopperpeatPCDD/Fta215ta116combustionFuel
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Modelling Cd(II) removal from aqueous solutions by adsorption on a highly mineralized peat. Batch and fixed-bed column experiments

2006

This paper evaluates the potential use of a locally available organic soil amendment as a low-cost adsorbent. The removal of cadmium from aqueous solutions was studied by means of kinetic, batch and fixed-bed experiments. Batch experiments were conducted to evaluate the process kinetics and the removal equilibrium over a broad pH range. Pseudo-second-order kinetics and Freundlich equilibrium parameters were obtained. Six column experiments were carried out at different flow-rates and feed concentrations. Breakthrough curves showed higher metal retention than expected from the batch adsorption isotherms. Column modelling assuming rate-controlled pore diffusion was successfully performed. The…

CadmiumAqueous solutionChromatographyRenewable Energy Sustainability and the EnvironmentGeneral Chemical EngineeringDiffusionOrganic ChemistryKineticsAmendmentchemistry.chemical_elementHydrochloric acidPollutionInorganic Chemistrychemistry.chemical_compoundFuel TechnologyAdsorptionchemistryChemical engineeringFreundlich equationWaste Management and DisposalBiotechnologyJournal of Chemical Technology & Biotechnology
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Cadmium and Zinc Adsorption onto Activated Carbon: Influence of Temperature, pH and Metal/Carbon Ratio

1996

The adsorption characteristics of cadmium and zinc onto a granular activated carbon were studied. Cadmium and zinc removals increased on raising pH and temperature, and decreased on raising the molar metal/carbon ratio. The adsorption processes were modelled using the surface complex formation (SCF) Triple Layer Model (TLM) with an overall bidentate species. A dependence of the SCF constant on pH, the molar metal/carbon ratio and temperature was observed, and a correlation for log K ads was determined. The SCF model successfully predicted cadmium and zinc removals.

CadmiumDenticityAqueous solutionRenewable Energy Sustainability and the EnvironmentChemistryGeneral Chemical EngineeringOrganic ChemistryInorganic chemistrychemistry.chemical_elementZincPollutionInorganic ChemistryMetalFuel TechnologyAdsorptionvisual_artvisual_art.visual_art_mediummedicineWaste Management and DisposalCarbonBiotechnologyActivated carbonmedicine.drugJournal of Chemical Technology & Biotechnology
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