Search results for "Gibbs"

showing 10 items of 164 documents

Aqueous Solubility Diagrams for Cementitious Waste Stabilization Systems. 4. A Carbonation Model for Zn-Doped Calcium Silicate Hydrate by Gibbs Energ…

2002

A thermodynamic Gibbs energy minimization (GEM) solid solution-aqueous solution (SSAS) equilibrium model was used to determine the solubility of Zn from calcium silicate hydrate (CSH) phases doped with 0, 0.1, 1, 5, and 10% Zn at a unity (Ca+Zn)/Si molar ratio. Both the stoichiometry and standard molar Gibbs energy (G(o)298) of the Zn-bearing end-member in the ideal ternary Zn-bearing calcium silicate hydrate (CZSH) solid solution were determined by a "dual-thermodynamic" (GEM-DT) estimation technique. The SSAS model reproduces a complex sequence of reactions suggested to occur in a long-term weathering scenario of cementitious waste forms at subsurface repository conditions. The GEM model …

Manufactured MaterialsAnalytical chemistryMineralogyengineering.materialPortlanditesymbols.namesakechemistry.chemical_compoundEnvironmental ChemistrySolubilityCalcium silicate hydrateDissolutionSilicatesGeneral ChemistryCalcium CompoundsModels TheoreticalRefuse DisposalGibbs free energyZincSolubilitychemistryCarbonatationCalcium silicateengineeringsymbolsThermodynamicsEnvironmental PollutionHydrateEnvironmental Science & Technology
researchProduct

Counting common perpendicular arcs in negative curvature

2013

Let $D^-$ and $D^+$ be properly immersed closed locally convex subsets of a Riemannian manifold with pinched negative sectional curvature. Using mixing properties of the geodesic flow, we give an asymptotic formula as $t\to+\infty$ for the number of common perpendiculars of length at most $t$ from $D^-$ to $D^+$, counted with multiplicities, and we prove the equidistribution in the outer and inner unit normal bundles of $D^-$ and $D^+$ of the tangent vectors at the endpoints of the common perpendiculars. When the manifold is compact with exponential decay of correlations or arithmetic with finite volume, we give an error term for the asymptotic. As an application, we give an asymptotic form…

Mathematics - Differential GeometryGeneral Mathematics[MATH.MATH-DS]Mathematics [math]/Dynamical Systems [math.DS]37D40 37A25 53C22 30F4001 natural sciencesDomain (mathematical analysis)Bowen-Margulis measurecommon perpendicularequidistributiondecay of correlation0502 economics and businessortholength spectrummixingAsymptotic formulaSectional curvatureTangent vectorMathematics - Dynamical Systems0101 mathematicsExponential decayskinning measurelaskeminenMathematicsconvexityApplied Mathematicsta111010102 general mathematics05 social sciencesMathematical analysisRegular polygonnegative curvatureRiemannian manifoldGibbs measureManifoldKleinian groups[MATH.MATH-DG]Mathematics [math]/Differential Geometry [math.DG]countingMathematics::Differential Geometrygeodesic arc050203 business & management
researchProduct

Polymer solutions: Equilibrium clusters versus shear clusters

2021

Abstract Polymer solutions are inhomogeneous on mesoscopic scales as a result of chemical bonds linking their monomeric units. This situation leads to polymer clusters within which the polymer concentration c cluster is only a small fraction of the overall concentration c. The ratio c/ c cluster (overlap parameters Ω ) quantifies the number of clusters that need to overlap to yield c. Equilibrium clusters (minimization of Gibbs energy) and shear clusters (minimization of entropy production) differ fundamentally where Ω equil ≥ Ω shear . Only in the vicinity of the glass transition temperature and at high concentration the opposite is the case. Experimental information on Ω equil as a functi…

Mesoscopic physicsYield (engineering)Materials sciencePolymers and PlasticsEntropy productionOrganic ChemistryThermodynamics02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesGibbs free energyCondensed Matter::Soft Condensed MatterShear (sheet metal)symbols.namesakeVolume fractionMaterials ChemistryCluster (physics)symbols0210 nano-technologyGlass transitionPolymer
researchProduct

Influence of pH and temperature on the early stage of mica alteration

2012

Mineral dissolution and precipitation reactions actively participate in controlling fluid chemistry during water–rock interaction. In this study, the changes in the biotite and muscovite basal surface nano-morphology were evaluated during interaction with fluids of different pH (pH = 1.1, 3.3 and 5.7) at different temperatures (T =2 5, 120, and 200 C). Results show that at the nanometre scale resolution of the atomic force microscope (AFM), dissolution generates etch pits with a stair-shaped pattern over the (0 0 1) surface. The flux of dissolved elements decreases when pH increases. However, at pH 5.7, a change was found in the flux after 42 h of reaction when abundant gibbsite and kaolini…

Mineral010504 meteorology & atmospheric sciencesChemistryMuscovite[SDU.STU]Sciences of the Universe [physics]/Earth Sciencesengineering.material010502 geochemistry & geophysics01 natural sciencesPollutionSettore GEO/08 - Geochimica E Vulcanologiaphyllosilicate - water interface neogenic phase formation AFM nanogeochemistryCrystallographyChemical engineeringGeochemistry and PetrologyengineeringEnvironmental ChemistryKaoliniteNanometreMicaGibbsiteDissolutionBiotiteComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciences
researchProduct

On the pyrolytic decomposition of cadmium carbonate

1996

The pyrolytic decomposition of cadmium carbonate was studied by thermogravimetry (TG), derivative thermogravimetry (DTG), differential thermoanalysis (DTA) and exoemission of electrons (EEE).

MineralogyDecompositionGibbs free energyThermogravimetrychemistry.chemical_compoundsymbols.namesakechemistryDifferential thermal analysisCadmium oxidesymbolsPyrolytic carbonPyrolysisDerivative (chemistry)Nuclear chemistryJournal of Thermal Analysis
researchProduct

N-doped carbon networks: alternative materials tracing new routes for activating molecular hydrogen.

2014

The fragmentation of molecular hydrogen on N-doped carbon networks was investigated by using molecular (polyaromatic macrocycles) as well as truncated and periodic (carbon nanotubes) models. The computational study was focused on the ergonicity analysis of the reaction and on the properties of the transition states involved when constellations of three or four pyridinic nitrogen atom defects are present in the carbon network. Calculations show that whenever N-defects are embedded in species characterized by large conjugated π-systems, either in polyaromatic macrocycles or carbon nanotubes, the corresponding H2 bond cleavage is largely exergonic. The fragmentation Gibbs free energy is affect…

Models MolecularMacrocyclic CompoundsHydrogenNitrogenchemistry.chemical_elementCarbon nanotubeConjugated systemCatalysislaw.inventionsymbols.namesakeFragmentation (mass spectrometry)lawCarbon networkDopingOrganic chemistryBond cleavageExergonic reactionChemistryNanotubes CarbonOrganic ChemistryChemistry (all)General ChemistryTransition stateCarbonGibbs free energyNanotubeMacrocycleChemical physicssymbolsDensity functional calculationHydrogenChemistry (Weinheim an der Bergstrasse, Germany)
researchProduct

Calculation of partition coefficient and hydrophobic moment of the secondary structure of lysozyme

2001

A method that permits a semiquantitative estimate of the partitioning of any solute between any two media is presented. As an example, the partition coefficients and hydrophobic moment of the secondary structure of lysozyme are calculated. Program GSCAP is written as a version of Pascal's solvent-dependent conformational analysis (SCAP) program. The dipole moments calculated for the helices are trebled with respect to that for the sheet. For helices, the main contribution to the water-accessible surface area is the hydrophobic term, while the hydrophilic part dominates in the sheet. Molecular globularity and the three studied partition coefficients differentiate between helices and sheet.

Models MolecularQuantitative Biology::BiomoleculesChromatographyOrganic ChemistrySolvationGeneral MedicineBiochemistryProtein Structure SecondaryAnalytical ChemistryGibbs free energyCondensed Matter::Soft Condensed MatterPartition coefficientchemistry.chemical_compoundsymbols.namesakeDipolechemistrysymbolsThermodynamicsMoleculeMuramidaseLysozymeProtein secondary structureJournal of Chromatography A
researchProduct

A Molecular Electron Density Theory Study of the Synthesis of Spirobipyrazolines through the Domino Reaction of Nitrilimines with Allenoates

2019

The reaction of diphenyl nitrilimine (NI) with methyl 1-methyl-allenoate yielding a spirobipyrazoline has been studied within molecular electron density theory (MEDT) at the MPWB1K/6-311G(d) computational level in dichloromethane. This reaction is a domino process that comprises two consecutive 32CA reactions with the formation of a pyrazoline intermediate. Analysis of the relative Gibbs free energies indicates that both 32CA reactions are highly regioselective, the first one being also completely chemoselective, in agreement with the experimental outcomes. The geometries of the TSs indicate that they are associated to asynchronous bond formation processes in which the shorter distance invo…

Models Molecular[3+2] cycloaddition reactionsMolecular ConformationPharmaceutical SciencePyrazoline010402 general chemistrynitrilimines7. Clean energy01 natural sciencesArticleallenoatesAnalytical Chemistrylcsh:QD241-441symbols.namesakechemistry.chemical_compoundlcsh:Organic chemistryNucleophileCascade reactionComputational chemistryDrug DiscoverySpiro CompoundsPhysical and Theoretical ChemistryDichloromethaneCycloaddition ReactionMolecular Structure010405 organic chemistryChemistryNitrilimineOrganic Chemistrydomino reactionsmolecular electron density theoryRegioselectivityspirobipyrazolinesModels Theoretical0104 chemical sciencesGibbs free energyChemistry (miscellaneous)ElectrophilesymbolsMolecular MedicineIminesmolecular mechanismMolecules
researchProduct

Phase diagrams calculated for sheared ternary polymer blends

1997

Abstract On the basis of the generalized Gibbs energy of mixing G γ (which is the sum of the Gibbs energy for zero shear and the energy the system stores in steady flow) phase diagrams were calculated as a function of shear rate γ for ternary model blends. This modelling uses simple equations for the description of the stagnant systems (Flory-Huggins) and for the contributions resulting from flow. Surface and alignment effects are neglected. A new procedure, which does not require the derivatives of G γ with respect to composition, was used to that end. Choosing typical values for the binary interaction parameters and molar masses, four classes of ternary systems were studied in greater det…

Molar massAnnihilationPolymers and PlasticsChemistryOrganic ChemistryThermodynamicsAtmospheric temperature rangeGibbs free energyShear ratesymbols.namesakeMaterials ChemistrysymbolsShear flowTernary operationPhase diagramPolymer
researchProduct

Ab initio simulations of oxygen interaction with surfaces and interfaces in uranium mononitride

2012

Abstract The results of DFT supercell calculations of oxygen behavior upon the UN (0 0 1) and (1 1 0) surfaces as well as at the tilt grain boundary are presented. Oxygen adsorption, migration, incorporation into the surface N vacancies on (0 0 1) and (1 1 0) surfaces have been modeled using 2D slabs of different thicknesses and supercell sizes. The temperature dependences of the N vacancy formation energies and oxygen incorporation energies are calculated. We demonstrate that O atoms easily penetrate into UN surfaces and grain boundaries containing N vacancies, due to negative incorporation energies and a small energy barrier. The Gibbs free energies of N vacancy formation and O atom incor…

Nuclear and High Energy PhysicsCondensed Matter - Materials ScienceAb initioMaterials Science (cond-mat.mtrl-sci)FOS: Physical scienceschemistry.chemical_elementOxygenGibbs free energyCrystallographysymbols.namesakeCondensed Matter::Materials ScienceAdsorptionNuclear Energy and EngineeringchemistryChemical physicsVacancy defectAtomsymbolsSupercell (crystal)Physics::Atomic and Molecular ClustersGeneral Materials ScienceGrain boundaryPhysics::Chemical Physics
researchProduct