Search results for " Io"

showing 10 items of 2766 documents

An experimental investigation on ionic shortcut currents reduction in Acid-Base Flow Battery systems

2022

Acid Base Flow Battery membrane processes ionic shortcut current
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Room temperature acid sonication ICP-MS multielemental analysis of milk

2005

Abstract Room temperature acid sonication of milk samples is proposed as a fast alternative methodology for the determination of the total content of 45 elements (Li, Al, Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, As, Se, Rb, Sr, Y, Mo, Ag, Cd, In, Sn, U, Sb, Te, Cs, Ba, Hg, Pb, Bi, Th, La, Ce, Pr, Nd, Sm, Eu, Gd, Dy, Ho, Er, Tm, Yb, Lu, Hf and Ta) in milk by inductively coupled plasma mass spectrometry (ICP-MS). The aforementioned procedure involves a 10 min sample pre-treatment. Measurements were made in quantitative and semiquantitative (Totalquant ® ) modes of analysis using Rh as internal standard and Be, Ge, Tb and Re for internal calibration of the equipment in the semiquantitative mode. The…

Acid digestionIsotopeChemistrySonicationPolyatomic ionAnalytical chemistryMass spectrometryBiochemistryAnalytical ChemistryEnvironmental ChemistryIsobaric processDirect analysisInductively coupled plasma mass spectrometrySpectroscopyAnalytica Chimica Acta
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Geochemistry of REE, Zr and HF in a wide range of pH and water composition: The Nevado del Ruiz volcano hydrothermal system (Colombia)

2015

International audience; The geochemical behaviour of Rare Earth Elements, Zr and Hf was investigated in the thermal waters of Nevado del Ruiz volcano system. A wide range of pH, between 1.0 and 8.8, characterizes these fluids. The acidic waters are sulphate dominated with different Cl/SO4 ratios. The important role of the pH and the ionic complexes for the distribution of REE, Zr and Hf in the aqueous phase was evidenced. The pH rules the precipitation of authigenic Fe and Al oxyhydroxides producing changes in REE, Zr, Hf amounts and strong anomalies of Cerium. The precipitation of alunite and jarosite removes LREE from the solution, changing the REE distribution in acidic waters.Y–Ho and Z…

Acidic waterGeochemistrychemistry.chemical_element[SDU.STU]Sciences of the Universe [physics]/Earth SciencesFractionationengineering.materialHydrothermal circulationGeochemistry and PetrologyRare earth elementJarositeIonic complexeZirconiumFe-Al oxyhydroxideAcidic waters; Fe-Al oxyhydroxides; Hafnium; Ionic complexes; Rare earth elements; Zirconium; Geochemistry and Petrology; GeologyGeologyYttriumAuthigenicAlunite6. Clean waterCeriumchemistry13. Climate actionengineeringZirconiumHafniumGeology
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Increated central corneal thickness in acromegalic patients

2009

Acromegalia Spessore corneal IOP TonometriaSettore MED/30 - Malattie Apparato Visivo
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Kinetics and mechanism of group transfer polymerization of N-butyl acrylate catalyzed by Hgl2 /(CH3 )3 Sil in toluene

1994

The group transfer polymerization (GTP) of n-butyl acrylate (nBuA) using 1-methoxy-1-(trimethylsiloxy)-2-methyl-1-propene (MTS) as an initiator, mercuric iodide (HgI2) as a catalyst in toluene at room temperature gives a very good control of molecular weight and narrow molecular weight distribution. (Mw/Mn < 1.2). Kinetic studies in this system reveal that this reaction is rather slow, half-lives being in the range of hours. The kinetic order of the apparent rate constant of propagation with respect to initiator and catalyst concentrations were found to be near to unity. However, the first-order time-conversion plots exhibit considerable induction periods. Upon addition of trimethylsilyl io…

AcrylatePolymers and PlasticsOrganic ChemistryTrimethylsilyl iodideCondensed Matter PhysicsPhotochemistryTolueneCatalysischemistry.chemical_compoundReaction rate constantchemistryPolymerizationNucleophilePolymer chemistryMaterials ChemistryMolar mass distributionMacromolecular Symposia
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Developments towards in-gas-jet laser spectroscopy studies of actinium isotopes at LISOL

2015

To study exotic nuclides at the borders of stability with laser ionization and spectroscopy techniques, highest efficiencies in combination with a high spectral resolution are required. These usually opposing requirements are reconciled by applying the in-gas-laser ionization and spectroscopy (IGLIS) technique in the supersonic gas jet produced by a de Laval nozzle installed at the exit of the stopping gas cell. Carrying out laser ionization in the low-temperature and low density supersonic gas jet eliminates pressure broadening, which will significantly improve the spectral resolution. This article presents the required modifications at the Leuven Isotope Separator On-Line (LISOL) facility…

ActiniumNuclear and High Energy PhysicsRocket engine nozzleSeparator (oil production)chemistry.chemical_elementactinium[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]7. Clean energy01 natural sciencesResonance ionization spectroscopylaw.inventionAtmospheric-pressure laser ionizationlawIonization0103 physical sciencesPhysics::Atomic Physics[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]010306 general physicsSpectroscopyInstrumentationGas jetJet (fluid)ta114010308 nuclear & particles physicsChemistrygas cellLaserActiniumresonance ionization spectroscopygas jetAtomic physicsGas cellNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Polycarboxylic acids in sea water: acid–base properties, solubilities, activity coefficients, and complex formation constants at different salinities

2016

This paper reports the results of the investigations carried out in synthetic sea water at different salinities for different classes of polycarboxylic acids. The investigations can be summarized as follows: (a) Determination of the protonation constants in such multicomponent solution in a salinity range 15 ≤ S ≤ 45, at t = 25 °C, for the linear dicarboxylic acids HOOC-(CH2) n –COOH (0 ≤ n ≤ 8), and aromatic polycarboxylic acids (o-phthalic and 1,2,4-benzenetricarboxylic acids). For malonic, succinic, 1,2,3-benzenetricarboxylic, and 1,2,3,4-benzenetetracarboxylic acids, investigations were also carried out at t = 10 and 37 °C; (b) Determination of the total and intrinsic solubility (S T an…

Activity coefficientBase (chemistry)Inorganic chemistryChemistry (all).Salt (chemistry)ProtonationProtonation02 engineering and technologyCalorimetry010402 general chemistry01 natural sciencesMetal complexDeprotonationProtonation Solubility Synthetic sea water Salt effect Metal complex Calorimetry020401 chemical engineeringSalt effectSettore CHIM/01 - Chimica Analitica0204 chemical engineeringSolubilitychemistry.chemical_classificationAqueous solutionGeneral ChemistrySynthetic sea water0104 chemical sciencesSolubilitychemistrySpecific ion interaction theoryMonatshefte für Chemie - Chemical Monthly
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Modeling S-carboxymethyl-L-cysteine protonation and activity coefficients in sodium and tetramethylammonium chloride aqueous solutions by SIT and Pit…

2007

Solubility and acid–base properties of S-carboxymethyl-l-cysteine (carbocysteine, ccys) in NaClaq and tetramethylammonium chloride, (CH3)4NClaq ,a tt =2 5 ◦ C and at different ionic strengths were investigated. Solubility was studied at 1.0 ≤ I (mol L −1 ) ≤ 5.0 for NaClaq and 1.0 ≤ I (mol L −1 ) ≤ 3.0 for (CH3)4NClaq, while potentiometric measurements (by ISE-H + , glass electrode) were performed at 0.1 ≤ I (mol L −1 ) ≤ 5.0 for NaClaq and 0.5 ≤ I (mol L −1 ) ≤ 3.0 for (CH3)4NClaq. Solubility data allowed us to determine Setschenow constants and activity coefficients of neutral carbocysteine (H2ccys). Dependence on ionic strength and ionic medium of protonation constants and activity coeff…

Activity coefficientChemistryGeneral Chemical EngineeringPotentiometric titrationInorganic chemistryAnalytical chemistryGeneral Physics and AstronomyProtonationchemistry.chemical_compoundSpecific ion interaction theoryIonic strengthTetramethylammonium chloridePitzer equationsPhysical and Theoretical ChemistrySolubilityCarbocysteine; Solubility; Protonation; Activity coefficients; Dependence on medium and ionic strength
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Solubility and acid-base properties and activity coefficients of chitosan in different ionic media and at different ionic strengths, at T=25°C

2009

Studies on the acid-base properties and solubility of a polyammonium polyelectrolyte (chitosan) with different molecular weights (MW 310 and 50 kDa), were performed at T=25 °C, in the pH range 2.5–7. The protonation of chitosan was investigated by potentiometry ([H+]-glass electrode) in NaCl, NaNO3 and mixed NaNO3+Na2SO4 ionic media, at different ionic strengths. Protonation constants were calculated as a function of dissociation degree α by means of two different models, namely, a simple linear model and the modified Henderson–Hasselbalch equation. Experimental data were also fitted using a model independent of α (Diprotic-like model), according to which the acid-base properties can be sim…

Activity coefficientChemistryInorganic chemistryIonic bondingProtonationChitosan Acid-base properties Solubility Activity coefficients Ion pair formationCondensed Matter PhysicsSettore CHIM/12 - Chimica Dell'Ambiente E Dei Beni CulturaliAtomic and Molecular Physics and OpticsDissociation (chemistry)Electronic Optical and Magnetic MaterialsSpecific ion interaction theoryIonic strengthStability constants of complexesMaterials ChemistrySettore CHIM/01 - Chimica AnaliticaPhysical and Theoretical ChemistrySolubilitySpectroscopyJournal of Molecular Liquids
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Hydrolysis and chemical speciation of dioxouranium(VI) ion in aqueous media simulating the major ion composition of seawater

2004

Abstract The hydrolysis and chemical speciation of the dioxouranium(VI) ion at 25 °C was studied in a number of binary electrolytes (LiCl, NaCl, MgCl2, CaCl2, Na2SO4) and some mixtures (NaCl–Na2SO4, NaNO3–Na2SO4, CaCl2–MgCl2) as well as artificial seawater (SSWE) as a function of ionic strength. The results in LiCl, CaCl2 and MgCl2 solutions confirmed the formation of (UO2)2(OH)22+, (UO2)3(OH)42+, (UO2)3(OH)5+ and (UO2)3(OH)7− species (at I=0 mol l−1: log Tβ22=−5.76, log Tβ34=−11.82, log Tβ35=−15.89 and log Tβ37=−29.26). For NaNO3, NaCl and artificial seawater the hydrolysis constant for the formation of the UO2(OH)+ species was also determined (at I=0 mol l−1: log Tβ11=−5.19). The results …

Activity coefficientHydrolysis constantUranium speciationAqueous solutionChemistryHydrolysisInorganic chemistryPitzer parametersIonic bondingArtificial seawaterGeneral ChemistryDependence on ionic strengthOceanographyUranylIon pair formationIonDioxouranium(VI)chemistry.chemical_compoundIonic strengthEnvironmental ChemistryChemical speciationHydrolysis; Dioxouranium(VI); Chemical speciation; Seawater; Dependence on ionic strength; Dependence on ionic medium; Pitzer parameters; Ion pair formationSeawaterDependence on ionic mediumWater Science and Technology
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