Search results for "electrolyte"

showing 10 items of 746 documents

Corrosion resistance of passive films on different stainless steel grades in food and beverage industry

2020

Abstract Passive films were grown on 304 L, 316 L and Duplex stainless steels by immersion at open circuit potential in solutions mimicking food and beverage industry environments. In acidic food stainless steel surfaces are covered by Cr rich passive films, and generalized dissolution occurs on their surface with consequent ions release into the electrolyte. In fatty food the concentration of released ions is significantly lower since generalized corrosion does not occur, but the loss on MnS inclusions strongly reduces the polarization resistance in this environment especially for 304 L due to its higher localized corrosion susceptibility with respect to the other grades.

Materials scienceFood industry020209 energyGeneral Chemical EngineeringBeverage industryFatty foods02 engineering and technologyElectrolyteStainless steelCorrosion0202 electrical engineering electronic engineering information engineeringImmersion (virtual reality)General Materials SciencePolarization (electrochemistry)DissolutionEISOpen-circuit voltagedigestive oral and skin physiologyfungiMetallurgytechnology industry and agricultureGeneral Chemistry021001 nanoscience & nanotechnologySettore ING-IND/23 - Chimica Fisica ApplicataPolarization resistanceICP-OESPassivity0210 nano-technologyCorrosion Science
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Electrochemical conversion of CO2 to HCOOH at tin cathode in a pressurized undivided filter-press cell

2018

Abstract The electrochemical reduction of carbon dioxide to formic acid was performed for the first time in a pressurized filter-press cell with a continuous recirculation of the electrolytic solution (0.9 L) at a tin cathode. It was shown that the performances of the system are comparable or slightly better than that of a batch system with a smaller volume (0.05 L). The selection of proper values of both current density and CO2 pressure allowed to achieve quite high values of faradaic efficiencies. Long-time electrolyses have shown that the system is stable and that it can allow to generate quite high concentrations of HCOOH (about 0.4 M).

Materials scienceFormic acidScale-upGeneral Chemical Engineeringchemistry.chemical_elementFormic acid02 engineering and technologyElectrolyte010402 general chemistryElectrochemistry01 natural scienceslaw.inventionchemistry.chemical_compoundlawPressureElectrochemistryChemical Engineering (all)Electrochemical reduction of carbon dioxideElectrochemical reductionSettore ING-IND/27 - Chimica Industriale E Tecnologica021001 nanoscience & nanotechnologyCathode0104 chemical sciencesFilter presschemistryVolume (thermodynamics)Chemical engineering0210 nano-technologyTinCO2reductionElectrochimica Acta
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Influence of the anion on diffusivity and mobility of ionic liquids composite polybenzimidazol membranes

2020

[EN] The study of proton conductivity processes has received increasing attention in the past decades due to their potential applications in fields such as electrochemical devices and fuel cells. Despite the high number of composite membranes which have been described for this purpose, fundamental studies of the conduction phenomena in polymeric membranes are scarce. In this article, we study on the effect of the anion on ionic conductivity of ionic liquid composite polybenzimidazole (PBI) membranes. These membranes, which contain 1-butyl-3-methylimidazolium (BMIM) with different counterions ([Cl]-, [NCS]-, [NTf2]- and [BF4]-) were analyzed by electrochemical impedance spectroscopy (EIS) in…

Materials scienceGeneral Chemical EngineeringAnalytical chemistry02 engineering and technologyConductivity010402 general chemistryThermal diffusivityPolybenzimidazoleIonic liquids01 natural sciencesIonchemistry.chemical_compoundIonic transportConductivity Ionic transportElectrochemistryIonic conductivityMobilitychemistry.chemical_classificationConductivity021001 nanoscience & nanotechnologyPolybenzimidazoleIonic liquids0104 chemical sciencesDielectric spectroscopyMembranechemistryMAQUINAS Y MOTORES TERMICOSIonic liquidCounterion0210 nano-technologyElectrochemical impedance spectroscopyPolymer electrolytesElectrochimica Acta
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Characterizing archaeological bronze corrosion products intersecting electrochemical impedance measurements with voltammetry of immobilized particles

2017

Application of electrochemical impedance measurements to microparticulate deposits of copper corrosion products attached to graphite electrodes in contact with 0.10 M aqueous HClO4 electrolyte is described. The impedance measurements were sensitive to the applied potential and the amount of solid sample and were modeled taking into account the contribution of the uncovered base electrode. Several pairs of circuit elements provide monotonic variations which are able to characterize different corrosion compounds regardless the amount of microparticulate solid on the electrode. Application to a set of archaeological samples from the archaeological Roman site of Gadara (Jordan, 4th century AD) …

Materials scienceGeneral Chemical EngineeringArchaeological bronze02 engineering and technologyElectrolyteengineering.material010402 general chemistryElectrochemistry01 natural sciencesCorrosionElectrochemistryElectrochemical Impedance MeasurementsBronzeVoltammetryElectrical impedanceVoltammetry of immobilized particlesMeasurementsMetallurgy021001 nanoscience & nanotechnologyArchaeologyElectrochemical Impedance0104 chemical sciencesPINTURAElectrodeengineeringErosion corrosion of copper water tubes0210 nano-technology
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Aluminium oxide — Poly(vinyl acetate) composite electrolyte for electrochromic devices

1997

This report describes composite proton electrolytes composed of nanosize activated aluminium oxide particles with different surface acidity suspended in a poly(vinyl acetate)/glycerine matrix. The conductivity of the composite was found to increase by going from basic to neutral to acidic aluminium oxide. Tests in laminated electrochromic devices with tungsten oxide and nickel hydroxide films showed that the acidic electrolyte is compatible with WO3, the basic electrolyte is compatible with Ni(OH)2, and the neutral electrolyte is compatible with both of the electrodes.

Materials scienceGeneral Chemical EngineeringComposite numberInorganic chemistryGeneral EngineeringGeneral Physics and AstronomyElectrolyteConductivityElectrochromic devicesElectrochemistrychemistry.chemical_compoundchemistryVinyl acetateAluminium oxideHydroxideGeneral Materials ScienceIonics
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Control of flow separation using electromagnetic forces

2003

Introduction If a fluid is electrically conductive, its flow may be controlled using electromagnetic forces. Meanwhile, this technique is a recognized tool even on an industrial scale for handling highly conductive materials like liquid metals. However, also fluids of low electrical conductivity as considered in the present study, like sea--water and other electrolytes, permit electromagnetic flow control. Experimental results on the prevention of flow separation by means of a streamwise, wall parallel Lorentz force acting on the suction side of inclined flat plates and hydrofoils will be presented. Force Configuration The stripwise arrangement of permanent magnets and electrodes of alterna…

Materials scienceGeneral Chemical EngineeringIndustrial scaleGeneral Physics and AstronomyElectrically conductiveMechanicsElectrolytePhysics::Classical PhysicsPhysics::Fluid DynamicsFlow separationsymbols.namesakeFlow control (fluid)Classical mechanicsElectrical resistivity and conductivitysymbolsElectromagnetic flowPhysical and Theoretical ChemistryLorentz force
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ZnO/ZnS heterostructures for hydrogen production by photoelectrochemical water splitting

2016

This work studies the photoelectrochemical behavior of novel ZnO/ZnS heterostructures obtained by means of anodization in water and glycerol/water/NH4F electrolytes with different Na2S additions under controlled hydrodynamic conditions. For this purpose different techniques such as Field Emission Scanning Electronic Microscopy (FE-SEM) with EDX, Raman spectroscopy and photoelectrochemical water splitting tests under standard AM 1.5 conditions have been carried out. The obtained results showed that the hydrodynamic conditions promoted an ordered nanotubular morphology which facilitates electron-hole separation and consequently, the photoelectrochemical activity for water splitting is enhance…

Materials scienceGeneral Chemical EngineeringInorganic chemistry02 engineering and technologyElectrolyte010402 general chemistry01 natural sciencesINGENIERIA QUIMICAsymbols.namesakeZINCRAMAN-SPECTROSCOPYANODIZATIONTIO2 NANOTUBESHydrogen productionAnodizingELECTROLYTESPHOTOCATALYTIC ACTIVITYHeterojunctionGeneral Chemistry021001 nanoscience & nanotechnologyHYDRODYNAMIC CONDITIONSEVOLUTION0104 chemical sciencesARRAYSElectroquímicaField electron emissionsymbolsWater splitting0210 nano-technologyRaman spectroscopySENSITIZED ZNODark current
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Modeling bimetallic corrosion under thin electrolyte films

2011

A finite element model (FEM) was developed to calculate the potential distribution in the electrolyte in the case of bimetallic corrosion between iron and zinc electrodes, taking into account mass transport of oxygen in the solution. This model was first compared with experimental results obtained by scanning vibrating electrode technique (SVET) on a galvanized steel cut-edge in immersion conditions in a 0.03 M NaCl electrolyte. A good agreement was obtained between the calculated and experimental current densities. The model predicted the evolution of the galvanic coupling as function of the electrolyte thickness and for various iron–zinc surface area ratios. Different coupling regimes wer…

Materials scienceGeneral Chemical EngineeringMetallurgyGeneral ChemistryElectrolyteConductivityGalvanizationCathodic protectionCorrosionsymbols.namesakeElectrodesymbolsGeneral Materials ScienceThin filmComposite materialBimetallic stripCorrosion Science
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An ultrasonic-assisted process for copper recovery in a des solvent: Leaching and re-deposition

2017

Abstract The continuous growth of the electronic equipment market has led to an increased amount of scraping that it becomes necessary to recover. A hydrometallurgical method for copper and precious metal recovery from e-waste must consist of a number of steps: leaching, ion separation and subsequent electrochemical re-deposition of the target metal. Although this task is achievable in aqueous solutions, it requires strong acid or cyanide solutions. The aim of the study is to develop a new environmentally benign process by using a Deep Eutectic Solvent (DES), a form of cheap and safe ionic liquid, as an electrolyte for both leaching and electrodeposition. The experiments were conducted in a…

Materials scienceGeneral Chemical EngineeringSonicationInorganic chemistryEnergy Engineering and Power Technologychemistry.chemical_element02 engineering and technologyElectrolyteSolvent extraction and electrowinning010402 general chemistry01 natural sciencesIndustrial and Manufacturing Engineeringchemistry.chemical_compound[CHIM]Chemical SciencesComputingMilieux_MISCELLANEOUSAqueous solutionProcess Chemistry and TechnologyGeneral Chemistry021001 nanoscience & nanotechnologyCopper0104 chemical sciencesDeep eutectic solventchemistryLeaching (metallurgy)0210 nano-technologyCholine chloride
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Graphene electrochemical responses sense surroundings

2012

Abstract Graphite oxide (GO) paper, obtained by direct filtration of exfoliated GO in water over PTFE membrane filters, was reduced by using hydrazine vapours. The graphene-paper thus obtained was characterized by the combination of different techniques. The electrochemical characterization by cyclic voltammetry, chronoamperometry and chronopotentiometry presents a strong influence of the working conditions: temperature, electrolyte concentration and current on the electrochemical responses, indicating a good ability of the material to sense ambient and working conditions. Electrochemical devices based on graphene are expected to work as dual, and simultaneous, sensing-actuators.

Materials scienceGrapheneGeneral Chemical EngineeringInorganic chemistryGraphite oxide02 engineering and technologyElectrolyteChronoamperometry010402 general chemistry021001 nanoscience & nanotechnologymedicine.diseaseElectrochemistry01 natural sciences0104 chemical scienceslaw.inventionchemistry.chemical_compoundchemistrylawElectrochemistrymedicineCyclic voltammetry0210 nano-technologyVapoursGraphene oxide paperElectrochimica Acta
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