Search results for "water uptake"

showing 4 items of 14 documents

Effect of ion exchange capacity and water uptake on hydroxide transport in PSU-TMA membranes: A DFT and molecular dynamics study

2020

Abstract Anion Exchange Membranes (AEMs) are nowadays used in a very wide range of different applications, from electrodialytic systems for water treatment, to Fuel Cells for energy generation. In many of these cases, the AEM is in contact with water molecules, either in aqueous or gas phase, which can strongly interact with the AEM polymer, thus affecting membrane properties. The role of water in fully swollen AEM and its effect on the diffusion of hydroxide is the focus of this work. Density Functional Theory (DFT) based calculations were merged with Molecular Dynamics (MD) simulations coming to a more accurate description of the ionic exchange capacity effect on the hydroxide ion diffusi…

Molecular dynamicWater uptakeSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciMaterials scienceIon exchange capacityThermodynamicsFiltration and Separation02 engineering and technology010402 general chemistry01 natural sciencesBiochemistryIonchemistry.chemical_compoundAlkaline anion exchange membrane fuel cellsGeneral Materials SciencePhysical and Theoretical ChemistryDiffusion (business)Ion exchange membraneAqueous solutionIon exchange021001 nanoscience & nanotechnology0104 chemical sciencesMembranechemistryDensity functional theoryHydroxideDensity functional theory0210 nano-technology
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Physical Aspects of the Atmospheric Aerosol

1982

The atmospheric aerosol is a trace substance of the troposhere as well as the trace gases. Therefore a number of similiarities should be expected. As an example a common model on residence time is developed and discussed in its results. The residence time connects the content of a reservoir (size distribution for aerosols) with its source strength or removal rate. This is presented for the aerosol. In addition other physical properties of the tropospheric aerosol like optical, electrical and water uptake properties are discussed.

TroposphereTropospheric aerosolSource strengthWater uptakeEnvironmental sciencerespiratory systemResidence time (fluid dynamics)Atmospheric sciencescomplex mixturesAerosolTrace gas
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Prise en eau par composites carbone/époxy et leur effet sur le comportement mécanique : application aux réparations de structures en composite par co…

2013

Le travail présenté dans ce mémoire avait pour objectif d’étudier le processus de la pénétration d'eau dans les composites en carbone/époxyde dans un premier temps, et dans un deuxième temps, d’étudier l’effet de la prise en eau par ces matériaux sur les performances mécaniques des composites et leur joints collés. L'intégration de ces phénomènes physiques dans la modélisation numérique est d'une grande importance dans la prédiction de la durabilité d’une structure en composite subissant un vieillissement hygrothermique. Par conséquent, ce travail consiste non seulement en des observations expérimentales, mais aussi en des simulations numériques. Des corrélations entre les résultats obtenus…

[ SPI.OTHER ] Engineering Sciences [physics]/Other[SPI.OTHER] Engineering Sciences [physics]/OtherCarbon/epoxy compositesMechanical performanceTwo-phase diffusion modelResidual Property ModeWater uptake behaviourLinear-exponential traction separation lawComportement d'absorption d'eauModèle de diffusion à deux-phasesModèle RPMJoints collésComposites carbone/époxydeNumerical simulationsLoi de traction-séparation linéaire-exponentielAdhesive bonded jointsPerformances mécaniquesSimulations numériques
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Thermal and Mechanical Characterization of Yarn Samples from Flemish Tapestry of the Sixteenth Century

2022

We propose a physico-chemical approach for theharacterization of the conservation condition of yarns from a Flemish tapestry of the sixteenth century. The aging effect on the yarns’ performance was evaluated by comparison with commercial materials. Water uptake experiments highlighted the aptitude of yarns toward water sorption and their increased hydrophilicity upon aging. Thermogravimetric analysis can be considered a fast approach for the fiber identification and assessment on the material life-time. The dynamic mechanical analysis provided direct evidence on the yarns, conservation state and their performance under different mechanical stresses. The proposed characterization path can be…

dynamic mechanical analysisOrganic ChemistryPharmaceutical ScienceWaterthermogravimetryyarn samplesAnalytical ChemistryChemistry (miscellaneous)Settore CHIM/03 - Chimica Generale E InorganicaDrug Discoveryyarn samples; thermogravimetry; dynamic mechanical analysis; water uptakeMolecular MedicineStress MechanicalPhysical and Theoretical Chemistrywater uptakeMolecules; Volume 27; Issue 23; Pages: 8450
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