Search results for "THERMODYNAMICS"

showing 10 items of 2774 documents

Transport coefficients of n-butane into and through the surface of silicalite-1 from non-equilibrium molecular dynamics study

2009

We have studied coupled heat and mass transfer of n-butane through a membrane of silicalite-1. A description of the surface was given using non-equilibrium thermodynamics, and transport coefficients were determined. Three independent coefficients were found for the whole surface: the resistance to heat transfer, the coupling coefficient and the resistance to mass transfer. These coefficients were defined in stationary state. All resistances are significant, and show that the surface acts as a barrier to transport. A new scheme was devised to find the enthalpy of adsorption, from two particular coupling coefficients, namely the measurable heats of transfer. The method yields the enthalpy of …

ChemistryDiffusionTransport coefficientEnthalpyNon-equilibrium thermodynamicsThermodynamicsGeneral ChemistryCondensed Matter Physicssymbols.namesakeGibbs isothermAdsorptionMechanics of MaterialsMass transferHeat transfersymbolsGeneral Materials ScienceMicroporous and Mesoporous Materials
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Activity mediated phase separation: Can we understand phase behavior of the nonequilibrium problem from an equilibrium approach?

2016

We present results for structure and dynamics of mixtures of active and passive particles, from molecular dynamics (MD) simulations and integral equation theory (IET) calculations, for a physically motivated model. The perfectly passive limit of the model corresponds to the phase-separating Asakura-Oosawa model for colloid-polymer mixtures in which, for the present study, the colloids are made self-propelling by introducing activity in accordance with the well known Vicsek model. Such activity facilitates phase separation further, as confirmed by our MD simulations and IET calculations. Depending upon the composition of active and passive particles, the diffusive motion of the active specie…

ChemistryDynamics (mechanics)General Physics and AstronomyNon-equilibrium thermodynamicsActive systems02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesIntegral equationMolecular dynamicsPhase (matter)0103 physical sciencesStatistical physicsLimit (mathematics)Physical and Theoretical Chemistry010306 general physics0210 nano-technologyThe Journal of Chemical Physics
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Key Ingredients for Mastery of Chemical Microwave Processes

2012

ChemistryElectric fieldKey (cryptography)ThermodynamicsDielectric lossEngineering physicsMicrowaveMicrowaves in Organic Synthesis
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DSC study on hyaluronan drying and hydration

2011

Abstract The processes of hyaluronan (HYA) drying and hydration were studied using differential scanning calorimetry. In the first approach the isoconversional Kissinger–Akahita–Sunose (KAS) method was applied in order to determine actual activation energies of evaporation of pure water and water from concentrated HYA solutions. Since the evaporation is a single-step process, the activation energies for pure water provided results consistent with tabulated values of evaporation enthalpies. In the course of water evaporation from hyaluronan solution a break in increasing enthalpy followed by a decrease below 0.34 g of water per 1 g of HYA was observed. This result confirmed earlier observati…

ChemistryEnthalpySettore AGR/13 - Chimica AgrariaEvaporationThermodynamicsCondensed Matter PhysicsDSChyaluronanDifferential scanning calorimetryScientific methodFree waterBound waterThermal analysisPhysical and Theoretical ChemistryThermal analysisInstrumentationWater content
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Micellization in Model Surfactant Systems

1999

Formation of micelles in model lattice surfactant systems was studied by a novel methodology based on grand-canonical Monte Carlo simulations. The methodology involves combining free-energy information from a series of simulations in small systems by histogram reweighting. The solution osmotic pressure as a function of overall volume fraction of surfactant shows a sharp break at the critical micelle concentration (cmc) at sufficiently low temperatures. Studies in larger systems at appropriate values of the surfactant chemical potential are used to investigate the size distribution of micellar aggregates. The methodology allows for a clear distiction between micellization and macroscopic pha…

ChemistryEnthalpyThermodynamics of micellizationMonte Carlo methodThermodynamicsSurfaces and InterfacesCondensed Matter PhysicsMicellePulmonary surfactantCritical micelle concentrationVolume fractionElectrochemistryOsmotic pressureGeneral Materials ScienceSpectroscopyLangmuir
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Transfer coefficients for the liquid–vapor interface of a two-component mixture

2011

Abstract We present the excess entropy production for heat and mass transport across an interface of a non-ideal two-component mixture, using as interface variables the excess densities proposed by Gibbs. With the help of these variables we define the interface as an autonomous system in local equilibrium and study its transport properties. The entropy production determines the conjugate fluxes and forces, and equivalent forms are given. The forms contain finite differences of intensive variables into and across the surface as driving forces. These expressions for the fluxes serve as boundary conditions for integration across heterogeneous systems that are far from global equilibrium. The r…

ChemistryEntropy productionApplied MathematicsGeneral Chemical EngineeringEnthalpyFinite differenceThermodynamicsGeneral ChemistryIndustrial and Manufacturing EngineeringThermal conductivityMass transferHeat transferBoundary value problemOrder of magnitudeChemical Engineering Science
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Cover Feature: Visible Light‐Induced Sulfonylation/Arylation of Styrenes in a Double Radical Three‐Component Photoredox Reaction (Chem. Eur. J. 38/20…

2019

ChemistryFeature (computer vision)Component (thermodynamics)Organic ChemistryPhotoredox catalysisCover (algebra)General ChemistryPhotochemistryCatalysisVisible spectrumChemistry – A European Journal
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Convective mass transfer to partially recessed and porous electrodes

2003

Abstract The diffusional problem of a rotating porous electrode has been analysed based on the mass transfer equations for a partially blocked electrode. It is shown that the porous geometry leads to a dependence of the current on rotation rate identical to that corresponding to a coupled diffusion-activated electron transfer mechanism. The apparent rate constant, however, is related only to the geometry of the porous surface. It is shown that the characteristic diffusional length corresponds to the pore dimension modified by a term including the transition from linear to spherical diffusional geometry at the pore entrance. The theory is compared with experimental results for the reduction …

ChemistryGeneral Chemical EngineeringAnalytical chemistryElectrochemical kineticsThermodynamicsTortuosityAnalytical ChemistryElectron transferMass transferElectrodeElectrochemistryRotating disk electrodePorosityElectrode potentialJournal of Electroanalytical Chemistry
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A kinetic interpretation of a negative time constant in impedance equivalent circuits for the dissolution/passive transition

2007

Abstract A theoretical impedance function is proposed for the active/passive transition of nickel in an acid sulphate medium. It is considered that passivating species progressively covers the electrode surface. This approximated model predicts the appearance of negative time constants in the impedance spectra when coverage coefficient θ values for passive species are greater than 0.5.

ChemistryGeneral Chemical EngineeringNegative resistanceElectrodeInorganic chemistryElectrochemistryTime constantEquivalent circuitThermodynamicsKinetic energyElectrical impedanceDissolutionDielectric spectroscopyElectrochimica Acta
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Calculations of Starting Currents and Frequencies in Frequency-Tunable Gyrotrons

2012

Cold cavity and self-consistent formalisms for starting current and frequency calculations in frequency-tunable gyrotrons are summarized. Numerical solution schemes of the corresponding equations are discussed. A specific case is analyzed in detail.

ChemistryGeneral EngineeringGeneral Physics and AstronomyThermodynamicsCurrent (fluid)Rotation formalisms in three dimensionsComputational physicsJapanese Journal of Applied Physics
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