Search results for "Dynamics"

showing 10 items of 9782 documents

A novel thermodynamic approach for the complexation study of toxic metal cations by a landfill leachate

2018

Landfill leachates can contaminate nearby aquifers. The hazards deriving from this contamination also depend on the chemical speciation of various contaminants. A novel approach is proposed here to face this problem from a chemical thermodynamics point of view. The complexing ability of the soluble fraction of a landfill leachate (collected from Bellolampo, Palermo, Italy) towards Pb2+, Cd2+ and Cu2+ has been investigated at T = 298.15 K in NaClaq at I = 0.1 mol dm−3. The soluble fraction of the landfill leachate was first characterized by different analytical techniques. Then, its acid–base properties were studied by ISE-H+ potentiometric titrations and modelled by the so-called diprotic-l…

Aqueous solutionChemistryPotentiometric titrationInorganic chemistry02 engineering and technologyGeneral Chemistry010501 environmental sciences021001 nanoscience & nanotechnology01 natural sciencesCatalysisMetalAnodic stripping voltammetryLandfill leachate sequestering ability complexation toxic metalsChemical thermodynamicsSequestrantvisual_artMaterials Chemistryvisual_art.visual_art_mediumTitrationSettore CHIM/01 - Chimica AnaliticaLeachate0210 nano-technology0105 earth and related environmental sciences
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Enthalpic and entropic contributions of water molecules to the functional T → R transition of human hemoglobin in solution

1992

Generalized solvent-mediated forces contribute to free energy at the functional T → R transition of human hemoglobin A (HbA). Their contribution is here sorted out quantitatively in both its enthalpic and entropic parts, along with the average number of water molecules involved. The latter (about 75 waters in average) must be considered together with HbA as one statistically defined functional unit for oxygen transport. Their configurations are expected to undergo frequent structural rearrangements. Lifetimes of statistically relevant configurations do not need to (although, of course, they may) exceed by more than a factor 5 the normal H-bond lifetimes of the pure solvent. Compared to the …

Aqueous solutionChemistryStereochemistryEnthalpyOxygen transportThermodynamicsCondensed Matter PhysicsAtomic and Molecular Physics and OpticsGeneralized forcesPhase spaceMoleculePhysical and Theoretical ChemistrySolvent effectsCurse of dimensionalityInternational Journal of Quantum Chemistry
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Internal Structure and Dynamics of the Decamer D(ATGCAGTCAG) 2 In Li + -H 2 O Solution: A molecular Dynamics Simulation Study

2003

Molecular dynamics simulation of the decamer d(ATGCAGTCAG) 2 in aqueous solution, electroneutralized by Li + ions has been carried out. Emphasis is on the verification of the equilibrium conditions and the related structural and dynamical properties. Applicability of the kinetic part of Boltzmann's H function as a measure of thermodynamic equilibrium is tested. Overall structural stability has been confirmed by different RMSDs. Conformational and helicoidal parameters have been analyzed statistically and dynamically. Dynamical analysis reveals the existence of dynamical sub-states, which typically appear as abrupt changes from a mean level to another in the value of parameter. In statistica…

Aqueous solutionChemistryThermodynamic equilibriumGeneral Chemical EngineeringThermodynamicsGeneral ChemistryCondensed Matter PhysicsKinetic energyMeasure (mathematics)IonMolecular dynamicssymbols.namesakeStructural stabilityModeling and SimulationBoltzmann constantsymbolsGeneral Materials ScienceStatistical physicsInformation SystemsMolecular Simulation
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Shear Induced Demixing and Rheological Behavior of Aqueous Solutions of Poly(N-isopropylacrylamide)

2003

The interrelation between the phase separation behavior and the rheological performance of aqueous solutions of high molecular weight (M w = 1 600 kg/mol) poly(N-isopropylacrylamide) was investigated. The system demixes upon heating and the cloud point temperature, T cp decreases steadily with rising polymer concentration up to 10 wt.-%. The application of shear supports phase separation and reduces T cp markedly. This observation is interpreted in terms of destruction of intersegmental clusters formed in the quiescent state owing to favorable interactions. Intrinsic viscosities and Huggins coefficients as well as the viscosities, η at higher polymer concentrations are closely connected wit…

Aqueous solutionChromatographyPolymers and PlasticsChemistryOrganic ChemistryThermodynamicsConcentration effectCondensed Matter PhysicsLower critical solution temperatureShear ratechemistry.chemical_compoundPolymer chemistryMaterials ChemistryPoly(N-isopropylacrylamide)Physical and Theoretical ChemistryShear flowOrder of magnitudePhase diagramMacromolecular Chemistry and Physics
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Effect of Large Changes in Temperature and Pressure on the Thermodynamic Properties of Micellization and on the Distribution Constant of a Polar Solu…

1996

Density measurements of pentanol (PentOH)−dodecyltrimethylammonium bromide (DTAB)−water mixtures as functions of both alcohol and surfactant (mS) concentrations were carried out at 0.1 MPa from 45 to 75 °C and at 19 MPa from 25 to 130 °C. The standard (infinite dilution) partial molar volumes and expansibilities of DTAB in water and the corresponding properties in the micellar phase were calculated from the experimental data. As far as PentOH in DTAB micellar solutions is concerned, with the exception of the standard partial molar volume (V°R) data at 130 °C and 19 MPa, all the V°R vs mS trends are monotonic curves with mS. The data of V°R as a function of mS were treated by means of an equ…

Aqueous solutionDistribution constantGeneral EngineeringThermodynamicsPartial molar propertyDilutionGibbs free energychemistry.chemical_compoundsymbols.namesakechemistryBromidePhase (matter)Micellar solutionssymbolsPhysical and Theoretical ChemistryThe Journal of Physical Chemistry
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Heat Capacity of Transfer of (Ethylene oxide)13-(propylene oxide)30-(ethylene oxide)13 from Water to the Aqueous Anionic Surfactant Solutions at 298 …

2004

Heat capacities of transfer (ACpt) of unimeric (ethylene oxide)(13)-(propylene oxide)(30)-(ethylene oxide)(13) from water to the aqueous surfactant solutions as functions of the surfactant concentrations (m(S)) were determined at 298 K. The surfactants investigated are sodium hexanoate, sodium heptanoate, sodium octanoate, sodium undecanoate, and sodium dodecanoate. For short alkyl chain surfactants, the profiles of the DeltaCp(t) versus ms curves show maxima and minima; for long alkyl chain surfactants, the maximum becomes sharper and moved to lower ms values whereas the minimum tends to disappear. These experimental trends are different from those of the enthalpy in agreement with the fac…

Aqueous solutionEthylene oxideSodiumInorganic chemistryEnthalpychemistry.chemical_elementThermodynamicsSurfaces and InterfacesCondensed Matter PhysicsHeat capacityGibbs free energysymbols.namesakechemistry.chemical_compoundchemistryPulmonary surfactantElectrochemistrysymbolsGeneral Materials SciencePolyethylene oxides Micelles scattering DLSSpectroscopyEquilibrium constant
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Reactor model for fast reactions in the micro-bubble column and validation

2007

A simple reactor model for predicting conversions in a micro-bubble column is described. It assumes fast reactions so that the gaseous component is readily consumed at the gas-liquid interface. Then, gas-liquid mass transfer becomes determining. As input parameters for the model, the hydrodynamics, specific interfacial area, and mass transport need to be described. Two fast model reactions, the catalytic oxidation of butyraldehyde and the absorption of CO2 in aqueous NaOH, show the applicability of the model but also its limits. The model was used for predicting reaction performance in dependence of operating conditions, in particular to get maximum conversion with the antagonistic paramete…

Aqueous solutionGeneral Chemical EngineeringAnalytical chemistryThermodynamicsGeneral ChemistryResidence time (fluid dynamics)TolueneIndustrial and Manufacturing EngineeringVolumetric flow ratechemistry.chemical_compoundchemistryCatalytic oxidationMass transferPhysics::Chemical PhysicsAbsorption (electromagnetic radiation)ButyraldehydeIndustrial and Engineering Chemistry Research
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Viscous Synergy of Pure Monoalcohol Mixtures in Water and Its Relation to Concentration

2004

Pure or aqueous alcohols are the solvents most widely used in industry, including in the manufacture of pharmaceuticals and cosmetic products. However, water–alcohol mixtures generate hydrogen-bonded molecular associations that lead to volume contraction and an increase in viscosity greater than that expected in the absence of any interaction between the components of the mixture. This phenomenon is referred to as viscous synergy. The present study investigates viscous synergy in monoalcohol systems containing up to five carbon atoms, since beyond hexanol all alcohols are practically insoluble in water. In all cases, determinations were made of the proportions of water and alcohol for which…

Aqueous solutionHydrogen bondBiophysicsSolvationThermodynamicschemistry.chemical_elementAlcoholBiochemistrychemistry.chemical_compoundViscositychemistryOrganic chemistryPhysical and Theoretical ChemistryVolume contractionMolecular BiologyCarbonHexanolJournal of Solution Chemistry
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The Silica-Water Interface: How the Silanols Determine the Surface Acidity and Modulate the Water Properties.

2015

Silica is the most abundant metal oxide and the main component of the Earth's crust. Its behavior in contact with water plays a critical role in a variety of geochemical and environmental processes. Despite its key role, the details of the aqueous silica interface at the microscopic molecular level are still elusive. Here we provide such a detailed understanding of the molecular behavior of the silica-water interface, using density functional theory based molecular dynamics (DFTMD) simulations, where a consistent treatment of the electronic structure of solvent and surface is provided. We have calculated the acidity of the silanol groups at the interface directly from the DFTMD simulations,…

Aqueous solutionHydrogen bondInorganic chemistryOxideComputer Science ApplicationsSolventSilanolchemistry.chemical_compoundMolecular dynamicschemistryChemical engineeringMoleculeDensity functional theoryPhysical and Theoretical ChemistryJournal of chemical theory and computation
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Ab Initio Liquid Water Dynamics in Aqueous TMAO Solution

2015

Ab initio molecular dynamics (AIMD) simulations in trimethylamine N-oxide (TMAO)-D2O solution are employed to elucidate the effects of TMAO on the reorientational dynamics of D2O molecules. By decomposing the O-D groups of the D2O molecules into specific subensembles, we reveal that water reorientational dynamics are retarded considerably in the vicinity of the hydrophilic TMAO oxygen (O(TMAO)) atom, due to the O-D···O(TMAO) hydrogen-bond. We find that this reorientational motion is governed by two distinct mechanisms: The O-D group rotates (1) after breaking the O-D···O(TMAO) hydrogen-bond, or (2) together with the TMAO molecule while keeping this hydrogen-bond intact. While the orientatio…

Aqueous solutionLiquid waterAb initioTrimethylamineRadial distributionForce field (chemistry)Surfaces Coatings and FilmsAb initio molecular dynamicschemistry.chemical_compoundchemistryComputational chemistryChemical physicsMaterials ChemistryMoleculePhysical and Theoretical ChemistryThe Journal of Physical Chemistry B
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