Search results for "Mass Transfer"

showing 10 items of 171 documents

Scale-up and viscosity effects on gas–liquid mass transfer rates in unbaffled stirred tanks

2018

Abstract The interest in the process industry on unbaffled stirred tanks has greatly expanded in the last years because they may bring about significant advantages in a number of applications, including biochemical, food and pharmaceutical processes where the presence of baffles is undesirable for several reasons. Despite their application potential, unbaffled vessels still lack fundamental information, due to the fact that only recently their capabilities have started being dug out. The lack of information on scale up effects is possibly the main reason hindering practical applications. In this work the influence of vessel size and liquid viscosity on the mass transfer performance in unbaf…

Gas-“liquid mass transferWork (thermodynamics)Scale-upSettore ING-IND/25 - Impianti ChimiciGeneral Chemical EngineeringBioreactorUnbaffledBaffle02 engineering and technologyViscosityStirred tank020401 chemical engineeringMass transferChemical Engineering (all)0204 chemical engineeringScale (chemistry)Chemistry (all)General ChemistryMechanics021001 nanoscience & nanotechnologyViscosity effectVessel diameterVolume (thermodynamics)SCALE-UPEnvironmental science0210 nano-technologyChemical Engineering Research and Design
researchProduct

Modeling of a continuous photocatalytic reactor for isovaleraldehyde oxidation: Effect of different operating parameters and chemical degradation pat…

2013

International audience; An investigation of isovaleraldehyde (ISOV) photocatalytic oxidation was conducted at initial concentrations ranging from 25 to 150 mg/m3 and different relative humidities (5-90% RH) in order to characterize the process performances close to indoor air conditions. Experiments were carried out in two different reactors: cylinder and flat-plate photoreactor (planar reactor) at different air gap (20-60 mm) and gas residence times (0.67-5.0 s). A plug flow reactor system was developed in order to perform kinetic studies of (i) isovaleraldehyde removal, (ii) selectivity of CO2, (iii) byproducts formation and removal. It appears that ISOV removal efficiencies increased wit…

General Chemical EngineeringAnalytical chemistry02 engineering and technology010501 environmental sciences01 natural sciences7. Clean energyChemical reactionIsovaleraldehydeGeometries of reactorchemistry.chemical_compound[CHIM.GENI]Chemical Sciences/Chemical engineering[CHIM.ANAL]Chemical Sciences/Analytical chemistryMass transferContinuous reactorMass transfer[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringPlug flow reactor modelChemical decomposition0105 earth and related environmental sciencesPhotocatalytic oxidationChromatographyChemistry[SDE.IE]Environmental Sciences/Environmental EngineeringContinuous reactorVOCsGeneral Chemistry021001 nanoscience & nanotechnologyLight intensity0210 nano-technologyAir gapWater vapor
researchProduct

Oxidation of organics in water in microfluidic electrochemical reactors: Theoretical model and experiments

2011

The electrochemical oxidation of organics in water performed in micro reactors on boron doped diamond (BDD) anode was investigated both theoretically and experimentally in order to find the influence of various operative parameters on the conversion and the current efficiency CE of the process. The electrochemical oxidation of formic acid (FA) was selected as a model case. High conversions for a single passage of the electrolytic solution inside the cell were obtained by operating with proper residence times and low distances between cathode and anode. The effect of initial concentration, flow rate and current density was investigated in detail. Theoretical predictions were in very good agr…

General Chemical EngineeringAnalytical chemistryFormic acidWastewaterElectrochemistrylaw.inventionElectric reactorCurrent densitylawMass transferSh numberElectrochemistryMicro deviceMass transferBubble formationMicro reactorMass transfer coefficientChemistryWastewater treatment Electrochemical oxidationLimiting currentSettore ING-IND/27 - Chimica Industriale E TecnologicaCathodeAnodeVolumetric flow rateTheoretical models BoronBDDCurrent densityForecastingElectrochimica Acta
researchProduct

Electrochemical treatment of aqueous solutions containing one or many organic pollutants at boron doped diamond anodes. Theoretical modeling and expe…

2012

The electrochemical oxidation of organics in water at boron doped diamonds (BDD) was experimentally investigated with the aim to discuss the correlations among the conversion of the pollutants and the instantaneous current efficiency ICE with the operative conditions. A simple theoretical model previously developed for the oxidation of oxalic acid accounting for the cases of mass transfer control, oxidation reaction control and mixed kinetic regimes was adopted and extended to challenge its predictive capability in the case of organics of different nature and in systems with more pollutants. A quite good agreement, between theoretical predictions and experimental data pertaining to the elec…

General Chemical EngineeringRadicalChlorine compoundOxalic acidInorganic chemistryPollution Anodic oxidationElectrochemistryCarboxylic acidRedoxIndustrial and Manufacturing Engineeringchemistry.chemical_compoundElectron transferAOPs; BDD; Diamond anode; Oxygen evolution; Theoretical models Boron; Carboxylic acids; Chlorine compounds; Diamonds; Electrochemical oxidation; Electron transitions; Free radical reactions; Pollution Anodic oxidationMass transferDiamond anodeEnvironmental ChemistryAOPElectron transitionAqueous solutionOxygen evolutionGeneral ChemistrySettore ING-IND/27 - Chimica Industriale E TecnologicaFree radical reactionTheoretical models BoronElectrochemical oxidationchemistryDiamondBDDOxygen evolutionChemical Engineering Journal
researchProduct

Extraction of glyphosate by a supported liquid membrane technique.

2000

The possible application of the supported liquid membrane (SLM) technique for the extraction of glyphosate is presented. For the extraction of this compound the SLM system has been applied with utilisation of Aliquat 336 as a cationic carrier incorporated into the membrane phase. The extraction efficiency of glyphosate [N-(phosphonomethyl)glycine] is dependent on the donor phase pH, carrier concentration in the organic phase and NaCl concentration in the acceptor phase. The optimal extraction conditions are: donor phase pH>11, acceptor phase of 2 M NaCl solution and the organic phase composed of 20% (w/w) Aliquot 336 solution in di-hexyl ether. Counter-coupled transport of chloride anions f…

GlycineEtherAliquat 336BiochemistryChlorideAnalytical Chemistrysupported liquid membraneschemistry.chemical_compoundextraction methodsglyphosateMass transferPhase (matter)medicineChromatographyMembranesClinical Laboratory TechniquesHerbicidesOrganic ChemistryExtraction (chemistry)Osmolar ConcentrationElectrophoresis CapillaryGeneral MedicinepesticidesHydrogen-Ion ConcentrationAcceptorQuaternary Ammonium CompoundsMembranechemistrymedicine.drugJournal of chromatography. A
researchProduct

Influence of the boundary conditions on heat and mass transfer in spacer-filled channels

2017

The purpose of this study is to discuss some problems which arise in heat or mass transfer in complex channels, with special reference to the spacer-filled channels adopted in membrane processes. Among the issues addressed are the consistent definition of local and mean heat or mass transfer coefficients; the influence of the wall boundary conditions; the influence of one-side versus two-side heat/mass transfer. Most of the results discussed were obtained by finite volume CFD simulations concerning heat transfer in Membrane Distillation or mass transfer in Electrodialysis and Reverse Electrodialysis, but many of the conclusions apply also to different processes involving geometrically compl…

HistoryMaterials scienceConvective heat transferFilm temperature02 engineering and technologyMechanicsHeat transfer coefficientElectrodialysis021001 nanoscience & nanotechnologyChurchill–Bernstein equationComputer Science ApplicationsEducationPhysics and Astronomy (all)020401 chemical engineeringMass transferReversed electrodialysisHeat transfer0204 chemical engineering0210 nano-technology
researchProduct

Study of the chemically activated sublimation of ZnSe

1999

Abstract The reactions and processes involved in the growth of ZnSe by chemically activated sublimation in a H 2 atmosphere are studied. The rate of transport as a function of source and substrate temperatures and the difference between them are determined from close spacing vapour transport experiments. According to this process, ZnSe layers are deposited on sapphire substrates by short distance chemically assisted sublimation. The experimental results are analysed and the thermodynamic constants of the transport are determined using a theoretical model for kinetically controlled processes, assuming water to act as sublimation catalyst. A preliminary optical and structural characterisation…

Inorganic ChemistryStereochemistryChemistryMass transferKineticsMaterials ChemistrySapphireAnalytical chemistrySublimation (phase transition)Condensed Matter PhysicsShort distanceCatalysisJournal of Crystal Growth
researchProduct

Sorption and diffusion properties of volatile phenols into cork

2010

International audience; The sorption and diffusion properties of seven common volatile phenols in hydro-alcoholic medium placed in contact with natural cork were investigated to determine the influence of cork closures on the concentration of these compounds in wine. Weighted cork samples were immersed in model wine solutions containing selected concentrations of each compound and were sampled over time. Sorption coefficients ranged between 125 and 306 mg of aroma compound per kg of cork, while diffusion coefficients varied from 0.8 to 4.1 × 10−11 m2/s. Sorption isotherms of guaiacol and 4-propylguaiacol, respectively, the lowest and highest sorbed compounds of an homologous series of guaia…

InteractionDiffusionModel wineCorkengineering.material01 natural sciencescomplex mixturesAnalytical Chemistrychemistry.chemical_compound0404 agricultural biotechnologySuberinAroma compoundOrganic chemistry[CHIM]Chemical SciencesMass transferAromaWinebiology010401 analytical chemistryfood and beveragesSorption04 agricultural and veterinary sciencesGeneral MedicineInterfacebiology.organism_classification040401 food sciencePhenolic compounds0104 chemical scienceschemistryengineeringGuaiacolCorkFood ScienceNuclear chemistry
researchProduct

Analysis and Design of Induction Liquid Metal Processes Using Advanced Numerical Modelling

2019

Comprehensive knowledge of the turbulent flows, heat and mass transfer processes in the melt of induction applications is required to realize efficient metallurgical processes. Therefore, the process oriented development, design and optimization of induction furnaces for melting and casting of metals require praxis oriented simulation and analysis of the complex in-stationary turbulent melt flows and temperature distributions as well as the heat and mass transfer processes in the liquid metal. The studies, presented in this paper, demonstrate the possibilities of using advanced three-dimensional transient numerical modelling for successful simulation of the melt flow as well as heat and mas…

Liquid metalMaterials scienceComputer simulation020208 electrical & electronic engineeringMechanical engineeringCrucibleInduction furnace02 engineering and technology01 natural sciences010305 fluids & plasmasCasting (metalworking)Mass transfer0103 physical sciences0202 electrical engineering electronic engineering information engineeringMagnetic levitationMelt flow index2019 XXI International Conference Complex Systems: Control and Modeling Problems (CSCMP)
researchProduct

Numerical and experimental study of liquid metal stirring by rotating permanent magnets

2018

In this work, we study liquid gallium stirring by rotating permanent magnets. We demonstrate possibility of easily creating different flow patterns by rotating permanent magnets, which can be industrially important for controlling heat and mass transfer processes in the system. Unlike the typical approach of simulating magnet rotation as a transient problem and time-averaging the Lorentz forces, we solve the magnet rotation as a harmonic (frequency domain) problem, which leads to forces equal to time-averaged ones and decreases the simulation time considerably. Numerical results are validated using qualitative flow structure results from the neutron radiography visualization of tracer parti…

Liquid metalMaterials sciencePermanent magnetsNumerical modelsUltrasonic Doppler velocimeters02 engineering and technologyQuantitative dataRotationHeat and mass transfer process020501 mining & metallurgyPhysics::Fluid DynamicsMagnetohydrodynamicssymbols.namesakeFrequency domainsneutron radiographyLiquid metal stirringTransient problemsFrequency domain analysisddc:530Mass transferUDVMagnetic materialsMetal meltingNumerical and experimental studyData visualizationnumerical modellingMechanicsVelocimetry0205 materials engineeringFrequency domainMagnetNumerical resultsHarmonicsymbolsUltrasound Doppler velocimetryDewey Decimal Classification::500 | Naturwissenschaften::530 | PhysikTransient (oscillation)Lorentz forceLiquid metalsIOP Conference Series: Materials Science and Engineering
researchProduct