0000000000479563

AUTHOR

Silvio Sammartano

showing 78 related works from this author

Sequestering ability of polyaminopolycarboxylic ligands towards dioxouranium(VI) cation

2006

Abstract In the present paper, some results of an investigation (at t = 25 °C by potentiometry, ISE-H+ glass electrode) on the sequestering ability of five different polyaminopolycarboxylic ligands [Nitrilotriacetate (NTA), ethylenediamine-N,N,N′,N′-tetraacetate (EDTA), ethylene glycol-bis(2-aminoethylether)-N,N,N′,N′-tetraacetate (EGTA), diethylenetriamine-N,N,N′,N″,N″-pentaacetate (DTPA), triethylenetetraamine-N,N,N′,N″,N′′′,N′′′-hexaacetate (TTHA)] towards dioxouranium(VI) cation in sodium chloride aqueous solutions, at I = 0.7 mol L−1 are reported. Calculations performed on potentiometric data gave evidence of the formation of the following species (log β in parenthesis): UO2(NTA)H0 (12…

Sequestering abilityEthyleneAqueous solutionLigandSpeciationMechanical EngineeringSodiumPotentiometric titrationMetals and Alloyschemistry.chemical_elementDioxouranium(VI); Polyaminopolycarboxylic ligands; Speciation; Sequestering ability; Stability constantsPolyaminopolycarboxylic ligandsDioxouranium(VI)chemistry.chemical_compoundEGTAchemistryMechanics of MaterialsStability constants of complexesMaterials ChemistrySettore CHIM/01 - Chimica AnaliticaChelationPolyaminopolycarboxylic ligandStability constantsNuclear chemistryJournal of Alloys and Compounds
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Equilibrium Studies in Natural Fluids. A Chemical Speciation Model for the Major Constituents of Seawater.

1994

AbstractThe speciation of CI−, OH− and SO42- in synthetic sea water has been studied by Potentiometric measurements (pH-metric and ISE-Na methods) and by literature data analysis, using a well tested complex formation model. Stability constants, together with distribution of hypothesised species in synthetic sea water, as a function of temperature and salinity, are reported. The speciation model proposed in this work is discussed on the basis of chemical and statistical considerations. Comparison with some literature sea water models is given.

geographyWork (thermodynamics)Chemical Health and Safetygeography.geographical_feature_categoryChemical speciationChemistryHealth Toxicology and MutagenesisComplex formationPotentiometric titrationTemperature salinity diagramsToxicologyEnvironmental chemistryGenetic algorithmSeawaterWater well
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Sequestration of organometallic compounds by natural organic matter. binding of trimethyltin(IV) by fulvic and alginic acids

2006

The binding capacity of fulvic and alginic acids towards trimethyl tin(IV) cation was quantitatively determined in order to evaluate the sequestering ability of toxic organometallic compounds by natural organic matter. Investigations were performed in the pH range of natural waters (5–8.5) where the carboxylate groups, largely present in both sequestering agents, are the main binding sites. A chemical interaction model, according to which both the protonation of polyelectrolyte ligands and the hydrolysis of the organotin cation in NaCl aqueous solution were considered, was used to define the speciation of the systems under investigation. Measurements performed at different ionic strength va…

Aqueous solutionChemistrycomplexationInorganic chemistrysequestrationProtonationGeneral ChemistryPolyelectrolyteInorganic ChemistryHydrolysischemistry.chemical_compoundspeciationIonic strengthStability constants of complexesSettore CHIM/01 - Chimica AnaliticaCarboxylatenatural organic matterorganometallic compoundhuman activitiesAlginic acidApplied Organometallic Chemistry
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Equilibria involved in the diorganotin(IV) and triorganotin(IV) phosphomycin interaction in aqueous solution

2007

Four new diorganotin(IV), (R = Me, Bu), and triorganotin(IV), (R = Me, Ph), derivatives of the phosphomycin disodium salt antibiotic[(1R,2S)-1,2-epoxypropylphosphonate]Na2 have been synthesized and their solid state configuration studied by X-ray crystallography, FT-IR, Mossbauer, UV–Vis spectroscopies. The X-ray diffraction investigation, performed on the bis[trimethyltin(IV)]- phosphomycin, showed that the coordination geometry at all the Sn atoms is trigonal bipyramidal. The structure of the complex forms an unusual polymeric zig-zag planar network. The FT-IR and the 119Sn Mo¨ssbauer studies supported the formation of trigonal bipyramidal (Tbp) molecular structures, both in the diorganot…

chemistry.chemical_classificationAqueous solutionTrimethyltin(IV)LigandChemistryPotentiometric titrationInorganic chemistrySalt (chemistry)ISE-H+ potentiometric studyProtonationGeneral Chemistrydimethyltin(IV)Medicinal chemistryInorganic ChemistryFT-IRMossbauerX-rayOrganotinStability constants of complexesIonic strengthISE-H+ potentiometric study; UV–visible study; dimethyltin(IV); Trimethyltin(IV); phosphomycinUV–visible studyphosphomycinPotentiometric and spectrophotometric titrations
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Thermodynamic parameters for the formation of glycine complexes with magnesium(II), calcium(II), lead(II), manganese(II), cobalt(II), nickel(II), zin…

1995

Abstract Protonation constants and Mg 2+ , Ca 2+ , Pb 2+ , Mn 2+ -, Co 2+ , Ni 2+ , Cu 2+ , Zn 2+  and Cd 2+ glycine complex formation constants have been determined in different aqueous media at different temperatures. Salt effects are explained by a complex formation model which takes into account the formation of weak species. From the temperature dependence of the formation constants, thermodynamic parameters ΔH θ (and in some cases ΔC θ p ) have been obtained. A rigorous analysis of literature data, together with experimental findings, allows recommended formation parameters, in the ranges 0 ≤ I e ≤ 1 mol l −1 ( I e is the effective ionic strength) and 5°C ≤ T ≤ 45°C, to be obt…

Aqueous solutionEnthalpyInorganic chemistrychemistry.chemical_elementIonic bondingProtonationManganeseCondensed Matter PhysicsNickelchemistryStability constants of complexesIonic strengthPhysical chemistryPhysical and Theoretical ChemistryInstrumentationThermochimica Acta
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Modeling ATP protonation and activity coefficients in NaClaq and KClaq by SIT and Pitzer equations.

2006

Abstract The acid–base properties of Adenosine 5′-triphosphate (ATP) in NaCl and KCl aqueous solutions at different ionic strengths (0  I  / mol L − 1  ≤ 5 for NaCl aq , 0  I  / mol L − 1  ≤ 3 for KCl aq ) and at t  = 25 °C were investigated. A selection of literature data on ATP protonation constants and on activity isopiestic coefficients was performed, together with new potentiometric measurements (by ISE-H + , glass electrode). Both literature and new experimental data were used to model the dependence on ionic strength and ionic medium of ATP protonation by SIT (Specific ion Interaction Theory) and Pitzer equations. In addition to values of first and second ATP protonation constants in…

Activity coefficientMolar concentrationactivity coefficientsActivity coefficientPotentiometric titrationInorganic chemistryBiophysicsIonic bondingProtonationProtonationATP; protonation; activity coefficients; Dependence on medium and ionic strength; SIT model; Pitzer modelSodium ChlorideBiochemistryPotassium ChlorideAdenosine TriphosphateElectrochemistrySettore CHIM/01 - Chimica AnaliticaChemistryOrganic ChemistryOsmolar ConcentrationPitzer modelSIT modelATPSpecific ion interaction theoryIonic strengthDependence on medium and ionic strengthPhysical chemistryPitzer equationsBiophysical chemistry
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Speciation of chitosan-phosphate and chitosan-nucleotide systems in an NaCl aqueous solution

2010

AbstractThe speciation of chitosan (310 kDa) with organic (adenosine 5’-monophosphate, AMP, and adenosine 5’-triphosphate, ATP), and inorganic phosphorus containing ligands (phosphate and pyrophosphate) was investigated in NaCl aqueous solutions at I = 0.1mol L−1 and T = 25°C. For all the systems, the investigated results obtained gave evidence for the formation of (chitosan)LHi complex species (L = nucleotides, phosphate and pyrophosphate; i = 1 to 4, but for AMP, i = 1 to 3). The stability data of complex species were used to calculate the sequestering ability of chitosan towards phosphorus compounds considered here, expressed as pL50 i.e., – log(total chitosan concentration) necessary to…

chemistry.chemical_classificationChemical Health and SafetyAqueous solutionChemistryLigandHealth Toxicology and MutagenesisPhosphorusInorganic chemistrychemistry.chemical_elementToxicologyPhosphatePyrophosphateAdenosineChitosanchemistry.chemical_compoundchitosan nucleotides phosphorus containing ligands chemical speciation polyammonium-phosphate interaction polyammonium-nucleotide interactionmedicineNucleotideSettore CHIM/01 - Chimica Analiticamedicine.drug
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Hydrolysis of methyltin(IV) trichloride in aqueous NaCl and NaNO3 solutions at different ionic strengths and temperatures

1999

The hydrolysis of methyltin(IV) trichloride (CH 3 SnCl 3 ) has been studied in aqueous NaCl and NaNO 3 solutions (0 < l/mol dm -3 ≤1), at different temperatures (15 ≤ T/°C ≤ 45) by potentiometric measurements (H + -glass electrode). By considering the generic hydrolytic reaction pCH 3 Sn 3+ + qH 2 O = (CH 3 Sn) p (OH) q 3p-q +qH + (logβ pq ), we have the formation of five species and logβ 12 = -3.36, logβ 13 = -8.99, logβ 14 = -20.27 and logβ 25 = -7.61. The first hydrolysis step is measurable only at very low pH values and was not determined: a rough estimate of the hydrolysis constant is logβ 11 = -1.5 (± 0.5). The dependence on ionic strength of logβ pq is quite different in NaNO 3 and N…

Hydrolysis constantAqueous solutionChemistryPotentiometric titrationInorganic chemistryIonic bondingGeneral ChemistryGlass electrodelaw.inventionInorganic Chemistrychemistry.chemical_compoundHydrolysisIonic strengthSodium nitratelawApplied Organometallic Chemistry
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Palladium(II) Complexes of Aminopolycarboxylic Ligands in Aqueous Solution

2011

Thebindingcapacityof fiveaminopolycarboxylicligands(APCs)(nitrilotriacetate(NTA),ethylenediamine-N,N,N 0 , N 0 -tetraacetate (EDTA), (S,S)-ethylenediamine-N,N 0 -disuccinic acid (S,S-EDDS), diethylenetriamine-N,N,N 0 ,N 00 ,N 00 -pentaacetate (DTPA), and triethylenetetraamine-N,N,N 0 ,N 00 ,N 000 ,N 000 -hexaacetate (TTHA)) toward the palladium(II) ion was studied by potentiometric titrations (ISE-H + electrode) in NaNO3 and in NaClO4/NaI (at different molar ratios) solutions and by spectrophotometric titrations (only in NaClO4), at I = 0.1 mol 3 kg � 1 and at T = 298.15 K. The high stability of Pd 2+ -complexones species inhibits the formation of sparingly soluble hydroxo species until pH …

Aqueous solutionLigandcomplexoneGeneral Chemical EngineeringPotentiometric titrationInorganic chemistryPalladium(II)chemistry.chemical_elementcomplexeProtonationsequestrationGeneral ChemistryIonchemistry.chemical_compoundEDDSchemistryTitrationSettore CHIM/01 - Chimica Analiticaaqueous solutionPalladiumNuclear chemistry
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Risedronate complexes with Mg2+, Zn2+, Pb2+, and Cu2+: Species thermodynamics and sequestering ability in NaCl(aq) at different ionic strengths and a…

2021

Abstract In this paper, potentiometry and calorimetry were used to determine the thermodynamics of interaction between risedronate and four bivalent metal cations, namely: Mg2+, Zn2+, Pb2+, and Cu2+ in aqueous NaCl solutions at different ionic strengths and at T = 298.15 K. The data analysis allowed us to ascertain that the main species formed were the MLH2, MLH, ML and M2L; however scarcely soluble species precipitated at acidic pH values, between 4 and 7 depending on the metal cation involved, probably due to the formation of the neutral M2L(s) species. Comparison of the stability constants with other similar ligands suggests that metal complexation occurs through the phosphonate with an …

Sequestering abilityAqueous solutionLigandIonic bondingThermodynamicsCalorimetryRisedronic acidCondensed Matter PhysicsPhosphonateAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsMetalchemistry.chemical_compoundchemistryIonic strengthSolution thermodynamicsvisual_artPotentiometryMaterials Chemistryvisual_art.visual_art_mediumMoleculeSettore CHIM/01 - Chimica AnaliticaChelationPhysical and Theoretical ChemistrySpectroscopyJournal of Molecular Liquids
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Interaction of UO2(2+) with ATP in aqueous ionic media.

2005

Interaction of dioxouranium(VI) (uranyl) ion with ATP was studied by ligand/proton and metal/hydroxide displacement technique, at very low ionic strength and at I=0.15 mol L(-1), in aqueous Me4NCl and NaCl solutions, at t=25 degrees C. Measurements were carried out in the pH range 3-8.5, before the formation of precipitate. Computer analysis allowed us to find the quite stable species UO2(ATP)H2(0), UO2(ATP)H-, UO2(ATP)2-, UO2(ATP)2(6-), UO2(ATP)2H2(4-) and UO2(ATP)(OH)3- whose formation constants are (at I=0 mol L(-1)) logbeta(112)=18.21, logbeta(111)=14.70, logbeta(110)=9.14, logbeta(120)=12.84, logbeta(122)=24.82, and logbeta(11-1)=2.09, respectively. Different values were obtained in th…

SpeciationInorganic chemistryIonic mediaBiophysicsIonic bondingLigandsBiochemistryComplexeIonMetalchemistry.chemical_compoundAdenosine TriphosphateMetals HeavySettore CHIM/01 - Chimica AnaliticaAqueous solutionLigandHydrolysisOrganic ChemistryWaterHydrogen-Ion ConcentrationUranylUranium CompoundsDioxouranium(VI)ATPchemistryStability constants of complexesvisual_artDependence on medium of stability constantvisual_art.visual_art_mediumHydroxideBiophysical chemistry
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Modeling the acid-base properties of molybdate(VI) in different ionic media, ionic strengths and temperatures, by EDH, SIT and Pitzer equations

2017

This paper reports the results of a study on the determination of the protonation constants of MoO42 −, in NaClaq, NaNO3aq, KClaq, at different ionic strengths (0 &lt; I/mol dm− 3 ≤ 5.0 in NaClaq, 0 &lt; I/mol dm− 3 ≤ 3.0 in NaNO3aq and KClaq) and temperatures (278.15 ≤ T/K ≤ 318.15 in NaClaq, only 298.15 K in NaNO3aq and KClaq), by potentiometric (ISE-H+ glass electrode) and spectrophotometric (UV/Vis) titrations. After a critical analysis of results and literature findings, the proposed speciation model takes into account the formation of two monomeric and four heptameric species, namely: MoO4H−, MoO4H2, (MoO4)7H86 −, (MoO4)7H95 −, (MoO4)7H104 − and (MoO4)7H113 −. Due to the complexity of…

Solid-state chemistryAtomic and Molecular Physics and OpticBase (chemistry)Thermodynamic parameterSpeciationInorganic chemistryThermodynamicsIonic bondingchemistry.chemical_elementProtonationProtonationCondensed Matter PhysicMolybdate010402 general chemistry01 natural scienceschemistry.chemical_compoundMolybdenum Protonation Thermodynamic parameters Aqueous solutions SpeciationMaterials ChemistryAqueous solutionPhysical and Theoretical ChemistrySpectroscopyMolybdenumchemistry.chemical_classificationAqueous solution010405 organic chemistryElectronic Optical and Magnetic MaterialCondensed Matter PhysicsAtomic and Molecular Physics and Optics0104 chemical sciencesElectronic Optical and Magnetic MaterialschemistryMolybdenumPitzer equationsJournal of Molecular Liquids
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Palladium(II) sequestration by phytate in aqueous solution. Speciation analysis and ionic medium effects.

2010

Environmental context.In the last 20 years, the demand for palladium and other platinum-group elements has intensified, causing a significant increase in their concentration in the environment, with particular accumulation in urban areas. Knowledge about Pd2+ speciation in aqueous media is fundamental for the understanding of its biological and environmental activity in contaminated areas. Phytic acid appears to be a good sequestering agent towards Pd2+ under various conditions, indicating its potential use in the remediation of contaminated sites. Abstract. Palladium(II) speciation in the presence of phytate (Phy12–) was studied by H+ ion selective electrode (ISE) potentiometry at 25°C in…

chemistry.chemical_classificationAqueous solutionMetal ions in aqueous solutionInorganic chemistryFluorescence spectrometrychemistry.chemical_elementcomplexes stability constantsPhytateIon selective electrodeDivalentMetalchemistryComplexesGeochemistry and PetrologyChemistry (miscellaneous)Ionic strengthvisual_artvisual_art.visual_art_mediumEnvironmental ChemistrySettore CHIM/01 - Chimica AnaliticaStability constantsComplexes; Stability constants; Phytate; PalladiumPalladiumPalladium
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Chemical speciation of nucleotide 5′-monophosphates in the presence of biogenic amines

2001

The interaction of adenosine-, uridine-, inosine- and guanosine-5’-monophosphates with protonated ethylenediamine, putrescine, cadaverine, spermidine and spermine, was studied potentiometrically, a...

CadaverineChemical Health and SafetyStereochemistryHealth Toxicology and MutagenesisSpermineEthylenediamineToxicologyMedicinal chemistryBiogenic PolyaminesUridineSpermidinechemistry.chemical_compoundchemistrynucleotide 5′-monophosphates; biogenic polyamines; nucleotide 5′-monophosphate-polyammonium cation complexes; speciationmedicinePutrescineInosinemedicine.drug
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Thermodynamic and spectroscopic study of the binding of dimethyltin(IV) by citrate at 25°C

2006

Thermodynamic (potentiometric and calorimetric) and spectroscopic ( 1 H NMR, 119 Sn Mossbauer) studies were performed in aqueous solution in order to characterize the interaction of dimethyltin(IV) cation with citrate ligand. Six species {(CH 3 ) 2 Sn(cit) - ; [(CH 3 ) 2 Sn] 2 (cit) 2 2- ; (CH 3 ) 2 Sn(cit)H 0 ; (CH 3 ) 2 Sn(cit)OH 2- ; [(CH 3 ) 2 Sn] 2 (cit)OH 0 ; [(CH 3 ) 2 Sn] 2 (cit)(OH) 2 - } were found. All the species formed in this system are quite stable and formation percentages are fairly high. For example, at pH = 7.5 and C (CH3)2Sn = C cit = 10 mmol l -1 , E% for [(CH 3 ) 2 Sn] 2 (cit)(OH) 2 - and (CH 3 ) 2 Sn(cit)OH 2- species reaches 65%. Overall thermodynamic parameters obta…

spectroscopyAqueous solutionthermodynamic propertiesdimethyltin(IV) complexesChemistryLigandStereochemistryPotentiometric titrationthermodynamic propertiethermodynamic properties; calorimetry; spectroscopy; potentiometry; dimethyltin(IV) complexesGeneral ChemistryTricarboxylateInorganic ChemistryMetalOctahedronpotentiometryvisual_artMössbauer spectroscopyvisual_art.visual_art_mediumProton NMRPhysical chemistrySettore CHIM/01 - Chimica Analiticacalorimetry
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Stability−Charge and Stability−Structure Relationships in the Binding of Dicarboxylic Ligands by Open-Chain Polyammonium Cations

2000

The stability of complexes formed by 5 dicarboxylic ligands with 11 open-chain polyammonium cations (40 systems) was studied potentiometrically, in aqueous solution, at 25 °C. In all the systems ALHr species (A = amine, L = dicarboxylic ligand, r = 1 ... n; diamines n = 3, triamines n = 4, tetraamines n = 4 or 5) were found. Formation constants for the various complexes studied in this work, together with data for the analogous systems previously studied (20 systems), were examined as a function of charges involved in the formation reaction and of the structure of both the dicarboxylic ligand and the polyammonium cation. Structure generally has little effect on stability, while charges play…

chemistry.chemical_classificationAqueous solutionLigandChemistryStereochemistryGeneral Chemical EngineeringCarboxylic acidGeneral ChemistryMedicinal chemistrychemistry.chemical_compoundDicarboxylic acidStability constants of complexesDiamineAmine gas treatingEquilibrium constantJournal of Chemical &amp; Engineering Data
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Understanding the Solution Behavior of Epinephrine in the Presence of Toxic Cations: A Thermodynamic Investigation in Different Experimental Conditio…

2020

The interactions of epinephrine ((R)-(&minus

EnthalpyInorganic chemistryPharmaceutical ScienceIonic bondingProtonation02 engineering and technologyCalorimetry010402 general chemistry01 natural sciencesArticleAnalytical Chemistrylcsh:QD241-441chemistry.chemical_compoundlcsh:Organic chemistryDrug Discoverytoxic cationSettore CHIM/01 - Chimica Analiticatoxic cationsepinephrinePhysical and Theoretical ChemistryChemistryOrganic Chemistryenthalpy and entropy changesOxidesMethylmercury Compoundsdependence on ionic strength021001 nanoscience & nanotechnologysequestering ability0104 chemical sciencesSpecific ion interaction theoryChemistry (miscellaneous)Ionic strengthBenzyl alcoholThermodynamicsUraniumMolecular MedicineTitration0210 nano-technologyenthalpy and entropy changeMolecules
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Equilibrium studies in natural waters: Speciation of phenolic compounds in synthetic seawater at different salinities

1995

Interactions between some phenolic compounds and macro-constituents of synthetic seawater (Na{sup +}, K{sup +}, Ca{sup 2+}, Mg{sup 2+}, Cl{sup {minus}}, and SO{sub 4}{sup 2{minus}}), at 20, 35, and 45 {per_thousand} salinity, have been investigated potentiometrically by using the [H]-glass electrode. The formation constants of phenol, o- and p-cresol, o-a dn p-nitrophenol complexes with sodium, potassium, calcium, and magnesium ions have been determined in the ionic strength range 0 {le} I {le} 1 mol/L. A comparison between the apparent protonation constants of phenols determined in synthetic seawater, and those simulated by a suitable complex formation model, is discussed. The possibility …

Health Toxicology and MutagenesisPotassiumSodiumInorganic chemistryAnalytical chemistrychemistry.chemical_elementArtificial seawaterProtonationchemistryStability constants of complexesIonic strengthEnvironmental ChemistrySeawaterMagnesium ion
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Evaluation of the sequestering ability of different complexones towards Ag+ ion

2014

Abstract The interaction between Ag+ cation and different ligands was evaluated as a function of temperature and ionic strength by means of potentiometric techniques. Six aminopolycarboxylic (APCs) and aminopolyphosphonic (APPs) ligands were chosen, namely four APCs: nitrilotriacetic acid (NTA), ethylene-glycol-bis(2-aminoethylether)-N,N,N’,N’-tetraacetic acid (EGTA), ethylenediamine-N,N,N’,N’-tetraacetate (EDTA) and diethylenetriamine-N,N,N’,N”,N”-pentaacetic acid (DTPA)] and two APPs: [(1-hydroxyethane-1,1-diyl)bis(phosphonic acid) (HEDP) and [[(Phosphonomethyl)imino]bis[2,1-ethanediylnitrilobis(methylene)]] tetrakis-phosphonic acid (DTPP). Different mononuclear species with general formu…

LigandPotentiometric titrationInorganic chemistryNitrilotriacetic acidCondensed Matter PhysicsSilver aminipolycarboxylates aminopolyphosphonates ionic strength sequestration.Atomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsIonMetalchemistry.chemical_compoundchemistryStability constants of complexesIonic strengthvisual_artMaterials Chemistryvisual_art.visual_art_mediumSettore CHIM/01 - Chimica AnaliticaPhysical and Theoretical ChemistryMethyleneSpectroscopy
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Speciation of trialkyltin(IV) cations in natural fluids

2004

The hydrolysis of (CH(3))(3)Sn(+), (C(2)H(5))(3)Sn(+) and (C(3)H(7))(3)Sn(+) has been studied in a Synthetic Seawater (SSW) ionic medium simulating the major composition of natural seawater, at different salinities (5 less than or equal to S less than or equal to 45), and at t = 25 degreesC. Interactions with anionic components of SSW, considered as single sea salt, are determined by means of a complex formation model. By potentiometric measurements (ISE-H(+) and ISE-F(-) electrodes), the model has been extended to also consider interactions of organotins with carbonate and fluoride ions, which are other important components of seawater. Literature and new values of hydrolysis constants in …

chemistry.chemical_classificationfood.ingredientChemistryHydrolysisSea saltmedia_common.quotation_subjectInorganic chemistryIonic bondingArtificial seawaterSalt (chemistry)General ChemistryOceanographytrialkyltin(IV)SpeciationHydrolysisfoodIonic strengthEnvironmental ChemistrySeawaterIonic strength Protonation protonation constantsHydrolysis; trialkyltin(IV); Natural FluidsNatural FluidsWater Science and Technologymedia_commonMarine Chemistry
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Polyacrylate Protonation in Various Aqueous Ionic Media at Different Temperatures and Ionic Strengths

2000

The protonation constants of the polyacrylate anion (molecular mass 2000 Da) in Et4NI, Me4NCl, LiCl, LiNO3, NaCl, NaNO3, and KCl aqueous solution, were determined in a wide range of ionic strengths. A three-parameter approximation was used to express protonation constants as a function of the dissociation degree α, and their dependence on ionic strength was considered using a simple polynomial expansion. Differences in log KH between different data in different media were interpreted in terms of weak complex formation between polyacrylate and alkali metal cations. Measurements were also performed at different temperatures (15 ≤ T/°C ≤ 55) in order to calculate enthalpy and entropy changes f…

Aqueous solutionChemistryIonic strengthGeneral Chemical EngineeringEnthalpyInorganic chemistryIonic bondingProtonationGeneral ChemistryAlkali metalPolyelectrolyteIonJournal of Chemical &amp; Engineering Data
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Speciation Studies of Bifunctional 3-Hydroxy-4-Pyridinone Ligands in the Presence of Zn2+ at Different Ionic Strengths and Temperatures

2019

The acid&ndash

acid–base properties3 hydroxy 4 pyridinonePharmaceutical ScienceIonic bondingProtonation02 engineering and technologyAnalytical Chemistry03 medical and health sciencessymbols.namesakechemistry.chemical_compoundacid base propertiesZn-complexationDrug Discoveryspecific ion interaction theorySettore CHIM/01 - Chimica AnaliticaPhysical and Theoretical ChemistryBifunctionalEquilibrium constant030304 developmental biologyVan 't Hoff equation0303 health sciencesLigandOrganic Chemistryextended Debye Hückel3-hydroxy-4-pyridinone3 hydroxy 4 pyridinone; speciation; acid base properties; extended Debye Hückel; Zn-complexation; specific ion interaction theory; van’t Hoff equation; sequestering ability021001 nanoscience & nanotechnologysequestering abilityextended Debye–Hückel3. Good healthvan’t Hoff equationSpecific ion interaction theorychemistryspeciationChemistry (miscellaneous)Ionic strengthsymbolsMolecular MedicinePhysical chemistry0210 nano-technologyacid–base propertie
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Modelling of proton and metal exchange in the alginate biopolymer.

2005

Acid-base behaviour of a commercial sodium alginate extracted from brown seaweed (Macrocystis pyrifera) has been investigated at different ionic strengths (0.1or=I/mol l(-1)or=1.0) and in different supporting electrolytes (Et4NI, NaCl, KCl, LiCl, NaCl+MgCl2), with the aim of examining the influence of ionic medium on the proton-binding capacity and of quantifying the strength of interaction with light metal ions in the perspective of speciation studies in natural aqueous systems. Potentiometric ([H+]-glass electrode) and titration calorimetric data were expressed as a function of the dissociation degree (alpha) using different models (Henderson-Hasselbalch modified, Högfeldt three parameter…

Alginic acid; Proton- and metal-binding capacity; Thermodynamic parameters; Ionic strength dependence; Models for medium dependence and ion associationProton bindingAlginatesIonic strength dependenceInorganic chemistryPotentiometric titrationIonic bondingProtonationElectrolytePhaeophytaBiochemistryAnalytical ChemistryBiopolymersGlucuronic Acidalginic acid proton and metal-binding capacity Thermodynamics parameters Ionic strength dependence models for medium dependence and ion associationAlginic acidMagnesium ionAqueous solutionMolecular StructureChemistryHexuronic AcidsProton- and metal-binding capacityThermodynamic parametersIonic strengthMetalsProtonsModels for medium dependence and ion associationAnalytical and bioanalytical chemistry
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Quantitative parameters for the sequestering capacity of polyacrilates towards alkaline earth metal ions

2002

The complex formation constants of polyacrylic (PAA) ligands (1.4</=logN</=2.4, N=number of monomer units) with calcium and magnesium ions were determined in different ionic media at different ionic strengths, 0</=I</=1 mol l(-1), at t=25 degrees C. Experimental pH-metric data in the presence of Ca(2+) or Mg(2+) were firstly analysed in terms of apparent protonation constants, logK(H*), using the "three parameter model" proposed by Hogfeldt; differences in logK(H*), determined in different ionic media, were interpreted in terms of complex species formation. The only species present in the system M-PAA (M=Ca(2+) or Mg(2+)) is ML(2): attempts to find species of different stoichiometry were un…

MetalAlkaline earth metalStability constants of complexesIonic strengthChemistryvisual_artInorganic chemistryvisual_art.visual_art_mediumIonic bondingProtonationMagnesium ionAnalytical ChemistryIon
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Sequestration of organomettalic compounds by synthetic and naturally occuring polycarboxylate ligands. Binding of monomethylmercury(II) by polyacryli…

2007

The sequestering capacity of synthetic and naturally occurring polycarboxylate ligands towards mono- methylmercury(II) was evaluated by stability quantitative data on the interaction of CH3Hgþ with different molecular weight synthetic polyacrylates (2 and 20 kDa average M.wt) and alginate (70– 100 kDa) extracted from brown algae Macrocystis pyrifera. The influence of ionic medium was evaluated by measurements on the CH3Hgþ-polyacrylate systems in NaNO3 medium at different ionic strengths (0.10, 0.25, 0.50 and 0.75mol Lÿ1), and a Debye–Hu¨ ckel type equation was used for the dependence of complex formation constants on ionic strength. Measurements on the CH3Hgþ - alginate system were carried…

Chemical Health and SafetybiologyChemistryHealth Toxicology and MutagenesisComplex formationIonic bondingmonomethylmercury; sequestration by organic matter; polyacrylic and alginic acidsToxicologybiology.organism_classificationBrown algaemonomethylmercuryBinding abilityType equationpolyacrylic and alginic acidsmonomethylmercury sequestration by organic matter polyacrylic and alginic acids speciation equilibrium analysis complex species formationIonic strengthOrganic chemistrySettore CHIM/01 - Chimica Analiticasequestration by organic matterNuclear chemistryGroup 2 organometallic chemistry
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Formation and Stability of Cadmium(II)/Phytate Complexes by Different Electrochemical Techniques. Critical Analysis of Results

2010

In the present work the stability constants of various cadmium(II)/phytate (Phy) species were determined at T = 298.15 K in NaNO3(aq) at I = 0.1 mol·L−1 by DP-ASV (Differential Pulse Anodic Stripping Voltammetry) and by potentiometric titrations using an ISE-Cd2+. Cyclic voltammograms were also recorded to check the electrochemical behavior of cadmium in the presence of phytate. The results were analyzed together with previous data determined by ISE-H+ measurements. Data obtained were used to provide an exhaustive speciation scheme for the phytate/cadmium(II) system at different conditions, as well as a comprehensive representation of the binding ability of phytate toward cadmium(II). Diffe…

CadmiumChemistryInorganic chemistryPotentiometric titrationBiophysicsAnalytical chemistrychemistry.chemical_elementElectrochemistryBiochemistryPhytate Cadmium Voltammetry ISE-Cd2+ SpeciationBinding abilityAnodic stripping voltammetryPhytate; Cadmium; Voltammetry; ISE-Cd; SpeciationStability constants of complexesSettore CHIM/01 - Chimica AnaliticaPhysical and Theoretical ChemistryMolecular BiologyVoltammetry
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Speciation of polyelectrolytes in natural fluids Protonation and interaction of polymethacrylates with major components of seawater.

2002

Acid–base properties of two sodium polymethacrylates (W= 4000 and 5400 Da) were studied potentiometrically in aqueous solution at 25 °C. Measurements were made in different salt solutions: LiCl 0.1–1.5, NaCl 0.1–2, KCl 0.1–2, Et4NI 0.1–0.75 mol l − 1 , and in artificial seawater in the salinity range 10 S 45. Protonation data were analysed by two different models and the dependence of the relative parameters on ionic strength were calculated. Measurements performed in interacting media (alkali metal chlorides and artificial seawater) were interpreted in terms of complex formation, and the relative formation parameters are reported. Previous data on the interaction of a higher molecular weig…

chemistry.chemical_classificationAqueous solutionChemistryIonic strengthInorganic chemistrySalt (chemistry)Artificial seawaterProtonationSeawaterAlkali metalPolyelectrolyteAnalytical ChemistryTalanta
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Speciation of dimethyltin(IV) – and trimethyltin(IV) – carbocysteinate and – glutamate systems in aqueous media

2008

The formation of complex species in the dimethyltin(IV) and trimethyltin(IV)-carboxymethyl-L-cysteinate (carbocysteinate) systems in NaClaq, at different ionic strengths, and in a multicomponent Na+, K+, Ca2+, Mg2+, Cl- and SO42- medium representative of the seawater major composition, is discussed. Experimental results give evidence for the formation of the following species (L¼carbocysteinate): [(CH3)2Sn(L)]0, [(CH3)2Sn(HL)]+, [(CH3)2Sn(OH)(L)]-, [(CH3)2Sn(OH)2(L)]2- in the DMT–CCYS system, and [(CH3)3Sn(HL)]0, [(CH3)3Sn(L)]- and [(CH3)3Sn(OH)(L)]2- in the TMT-CCYS system. The ionic strength dependence of formation constants was taken into account by an extended Debye Huckel type equation…

organotin(IV) compounds; carboxymethyl-L-cysteinate; glutamateChemical Health and SafetyAqueous mediumChemistrydependence on ionic strength of formation constantHealth Toxicology and Mutagenesismedia_common.quotation_subjectInorganic chemistryComplex formationorganotin(IV) compoundGlutamate receptormixed ionic mediaIonic bondingglutamateToxicologycarboxymethyl-L-cysteinateSpeciationspeciationcomplex formationOrganic chemistrySettore CHIM/01 - Chimica Analiticamedia_commonChemical Speciation &amp; Bioavailability
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Sequestration of alkyltin(IV) cations by complexation with amino-polycarboxylic chelating agents

2013

Abstract The binding capacity of four amino-polycarboxylic ligands (APCs) [nitrilotriacetate (NTA), ethylenediamine- N , N , N′ , N′ -tetraacetate (EDTA), (S,S)-ethylenediamine- N , N ′-disuccinic acid (S,S-EDDS) and diethylenetriamine- N , N , N′ , N″ , N″ -pentaacetate (DTPA)] towards mono-, di- and tri-alkyltin(IV) cations [(CH 3 )Sn 3 + , (CH 3 ) 2 Sn 2 + , (C 2 H 5 ) 2 Sn 2 + , (CH 3 ) 3 Sn + or (C 2 H 5 ) 3 Sn + ] was studied, in aqueous solutions, by ISE-H + potentiometry, at I  = 0.1 mol L − 1 (NaCl) and at T  = 298.15 K. In all the systems R x Sn (4 − x)+  − APC (R = CH 3 or C 2 H 5 ) a strong 1:1 species is formed together with protonated, hydroxo and dinuclear complexes. The valu…

Aqueous solutionComplexation in aqueous solutionStereochemistryLigandEthylenediamineProtonationAlkyltin(IV) cations; Amino-polycarboxylic ligands; Complexation in aqueous solution; Sequestration ability of complexones;Condensed Matter PhysicsMedicinal chemistryAtomic and Molecular Physics and OpticsAlkyltin(IV) cationElectronic Optical and Magnetic MaterialsIonAmino-polycarboxylic ligandchemistry.chemical_compoundSequestration ability of complexoneschemistryDiethylenetriamineMaterials ChemistryChelationSettore CHIM/01 - Chimica AnaliticaPhysical and Theoretical ChemistrySimple correlationSpectroscopy
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Acid−Base Properties of Synthetic and Natural Polyelectrolytes: Experimental Results and Models for the Dependence on Different Aqueous Media

2008

Protonation constants of several natural and synthetic humates and fulvates were determined by ISE-H+ potentiometry in different ionic media (alkali metal halides and tetraethylammonium iodide) at different ionic strengths and T ) 298.15 K. Experimental data obtained in previous studies of different synthetic (polyacrylates, polymethacrylates, polyacrylate-co-maleate) and naturally occurring (alginate, humic substances) polycarboxylates were also taken into account in the general analysis of acid-base properties of polyelectrolytes. Protonation constants were expressed as a function of the dissociation degree (R) using three models, namely, a simple linear model, the Ho¨gfeldt three-paramet…

acid-base properiteAcrylate polymerdiprotic-like modelTetraethylammonium iodideGeneral Chemical EngineeringInorganic chemistryHalideIonic bondingProtonationGeneral ChemistryUronic acidAlkali metalPolyelectrolytethermodynamicchemistry.chemical_compoundchemistrySettore CHIM/01 - Chimica AnaliticapolyelectrolyteJournal of Chemical &amp; Engineering Data
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Protonation constants and association of polycarboxylic ligands with the major components of seawater

2000

Apparent protonation constants, log βjH*, of 11 carboxylic acids were determined potentiometrically ([H+]-glass electrode) in artificial seawater containing six of the major components (Na+, K+, Mg2+, Ca2+, Cl-, and SO42-) at different salinities:  S (‰) = 5, 15, 25, 35, 45. Values of log βjH* were fitted by the simple polynomial equation log βjH* = log TβjH + a1S1/2 + a2S + a3S3/2 (log TβjH = protonation constants at infinite dilution; a1, a2, a3 = empirical parameters), for mono-, di-, and tricarboxylates. For carboxylic anions with charge < −3, a better fit was obtained using the equation log βjH* = log TβjH + b1I + b0z* log(1 + b2I) (b0, b1, b2 = empirical parameters, z* = square sum of…

StereochemistryGeneral Chemical EngineeringPotentiometric titrationAnalytical chemistryArtificial seawaterProtonationGeneral ChemistryIonDilutionchemistry.chemical_compoundchemistryIonic strengthSeawaterCarboxylate
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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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Thermodynamics of Proton Binding of Halloysite Nanotubes

2016

In this paper, new information on physical and chemical properties of the widely used nanostructured Halloysite mineral are reported. Given that the Halloysite has a tubular structure formed by a variable number of wrapped layers containing Si-OH and Al-OH groups, their proton binding affinity was measured at different ionic strengths and ionic media by means of potentiometric measurements in heterogeneous phase. One protonation constant for the Si-OH groups and two for the Al-OH groups were determined. The protonation constant values increase with increasing of the ionic strength in all the ionic media. This suggests that the presence of a background electrolyte stabilizes the protonated s…

Proton bindingInorganic chemistrySurfaces Coatings and FilmIonic bondingProtonation02 engineering and technologyElectrolyteengineering.material010402 general chemistry01 natural sciencesHalloysiteIonSettore CHIM/01 - Chimica AnaliticaSurface chargePhysical and Theoretical ChemistrySettore CHIM/02 - Chimica FisicaChemistryElectronic Optical and Magnetic Material021001 nanoscience & nanotechnology0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsEnergy (all)General EnergyIonic strengthengineering0210 nano-technologyACID-BASE PROPERTIES; MOLECULAR-WEIGHT LIGANDS; CLAY NANOTUBES; AQUEOUS-SOLUTION; IONIC-STRENGTH; ACTIVITY-COEFFICIENTS; WEAK COMPLEXES; FORMATION-CONSTANTS; CONTROLLED-RELEASE; SUSTAINED-RELEASE
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Aqueous solution chemistry of alkyltin(IV) compounds for speciation studies in biological fluids and natural waters

2012

Abstract Organotin(IV) cations behave as Lewis acids of different strength depending on the charge, according to the following acidity scale: RSn3+ > R2Sn2+ > R3Sn+. For this reason they can react with Lewis bases containing –O, –N, –S donor groups to form complex species of different stability. Complex formation of organotin(IV) moieties with a great number of inorganic and organic ligands in aqueous solution is reviewed here in the light of their environmental and biological impact. To this end, complex species formation was considered in different ionic media and at different ionic strengths, with reference to the composition of natural waters and biological fluids. In particular, the in…

Inorganic and organic ligandAqueous solutionSpeciationInorganic chemistryEnthalpyIonic bondingPhosphateHydrolysiMedicinal chemistryChloridePolyelectrolyteSequestration ability of different ligandInorganic Chemistrychemistry.chemical_compoundHydrolysischemistryAlkyltin(IV) complexeMaterials ChemistrymedicineAqueous solutionSettore CHIM/01 - Chimica AnaliticaLewis acids and basesPhysical and Theoretical Chemistrymedicine.drugCoordination Chemistry Reviews
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Interactions of Dioxouranium(VI) with Amines in Aqueous Solution

2010

The interaction of the dioxouranium(VI) ion with five low molecular weight polyamines (ethylenediamine, putrescine, cadaverine, spermidine, and spermine) and with poly(allyl)amine (15 kDa) was studied potentiometrically (ISE-H + glass electrode) at T ) 298.15 K. Investigations were carried out in NaNO3 ionic medium, at I ) 0.1 mol · L -1 (and 0.5 mol · L -1 for poly(allyl)amine only), in the pH range 3.5 to 5.5, before the formation of uranyl insoluble species. The results gave evidence for the formation of two species, namely, UO2L 2+ and UO2L(OH) + for the diamine systems (ethylenediamine, putrescine, cadaverine), UO2L 2+ and UO2LH 3+ for spermidine, and UO2LH 3+ and UO2LH2 4+ for spermin…

CadaverineGeneral Chemical EngineeringInorganic chemistryEthylenediamineGeneral Chemistrydioxouranium; sequestrationMedicinal chemistrySpermidinestability constantschemistry.chemical_compoundchemistryaminespeciationStability constants of complexesuranylDiaminePutrescineQualitative inorganic analysisSettore CHIM/01 - Chimica AnaliticaPolyamine
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Binding of acrylic and sulphonic polyanions by open-chain polyammonium cations

2000

Abstract The interactions between some acrylic and sulphonic polyanions and some protonated amines (diamines NH 2 -(CH 2 ) x -NH 2 , x =2,…,10; linear tri-, tetra-, penta- and hexa-amines) were studied potentiometrically in aqueous solution, at 25°C. For both types of polyanions AL 2 H i (L − , monomer of polyanion, A, amine) species are formed, with i =1,…, n ( n =number of amino groups in the amine). The stability of these species is strictly dependent on the polyammonium cation charge, and fairly independent of the type of amine (in diamine species maximum stability is observed for x =4, 5). Acrylic and sulphonic polyanion complexes are considerably stronger than analogous species formed…

chemistry.chemical_compoundAqueous solutionChemistryStability constants of complexespolymers; polyamines; polysulphonatesDiaminePolyacrylic acidPolymer chemistryAcid–base titrationAmine gas treatingProtonationPolyelectrolyteAnalytical ChemistryTalanta
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Hydrolysis and chemical speciation of (C2H5)2Sn2+, (C2H5)3Sn+ and (C3H7)3Sn+ in aqueous media simulating the major composition of natural waters

2001

The hydrolysis of (C 2 H 5 ) 2 Sn 2+ , (C 2 H 5 ) 3 Sn + and (n-C 3 H 7 ) 3 Sn + has been studied, by potentiometric measurements ([H + ]-glass electrode), in NaNO 3 , NaCl, NaCl/Na 2 SO 4 mixtures and in a synthetic seawater (SSWE), as an ionic medium simulating the major composition of natural seawater, at different ionic strengths (0 ≤ I ≤ 5 mol dm -3 ) and salinities (15 ≤ S ≤ 45), and at t = 25 °C. Five hydrolytic species for (C 2 H 5 ) 2 Sn 2+ , three for (C 2 H 5 ) 3 Sn + and two for (C 3 H 7 ) 3 Sn + are found. Interactions with the anion components of SSWE, considered as single-salt seawater, are determined by means of a complex formation model. A predictive equation for the calcul…

Inorganic Chemistrychemistry.chemical_compoundAqueous solutionchemistryIonic strengthPotentiometric titrationSodium sulfateInorganic chemistryPitzer equationsIonic bondingArtificial seawaterGeneral ChemistryEquilibrium constantApplied Organometallic Chemistry
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Modelling of natural synthetic polyelectrolyte interactions in natural waters by using SIT, Pitzer and Ion Pairing approaches

2006

Abstract In this paper SIT and Pitzer models are used for the first time to describe the interactions of natural and synthetic polyelectrolytes in natural waters. Measurements were made potentiometrically at 25 °C in single electrolyte media, such as Et 4 NI and NaCl (for fulvic acid 0.1  − 1 S single salt ” BA, with cation B and anion A representing all the major cations (Na + , K + , Mg 2+ , Ca 2+ ) and anions (Cl − , SO 4 2− ) in natural sea water, respectively. The ion pair formation model was also applied to fulvate and alginate in artificial sea water by examining the interaction of polyanions with the single sea water cation. Results were compared with those obtained from previous sp…

chemistry.chemical_classificationChemistryArtificial seawatermedia_common.quotation_subjectNatural waterInorganic chemistryArtificial seawaterSalt (chemistry)General ChemistryElectrolyteOceanographyPitzerIon Pair modelsPolyelectrolyteIonSpeciationNatural and synthetic polyelectrolytes; Specific ion Interaction Theory (SIT); Pitzer; Ion Pair models; Dependence on medium and ionic strength; Alginic and fulvic acids; Artificial seawaterDependence on medium and ionic strengthNatural and synthetic polyelectrolytesEnvironmental ChemistrySeawaterSpecific ion Interaction Theory (SIT)Alginic and fulvic acidsWater Science and Technologymedia_common
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Sequestration of biogenic amines by alginic and fulvic acids.

2006

The interaction of natural (alginic and fulvic acids) and synthetic (polyacrylic acid 2.0 kDa) polyelectrolytes with some protonated polyamines [diamines: ethylendiamine, 1,4-diaminobutane (or putrescine), 1,5-diaminopentane (or cadaverine); triamines: N-(3-aminopropyl)-1,4diaminobutane (or spermidine), diethylenetriamine; tetramine: N.N'-bis(3-aminopropyl)-1,4-diaminobutane (or spermine); pentamine: tetraethylene-pentamine; hexamine: pentaethylenehexamine] was studied at T=25 degrees C by potentiometry and calorimetry. Measurements were performed without supporting electrolyte, in order to avoid interference, and results were reported at I=0 mol L(-1). For all the systems, the formation of…

polyammonium-polycarboxylate interactionsAlginatesPolymersBiogenic aminesInorganic chemistryFulvic acidCarboxylic AcidsBiophysicsProtonationCalorimetryBiochemistryMedicinal chemistryElectrolyteschemistry.chemical_compoundbiogenic amineGlucuronic AcidPolyaminesBenzopyransAlginic acidPolyacrylic acidCadaverineChemistryHexuronic AcidsOrganic ChemistryPolyacrylic acidPentaminesequestrationPolyelectrolytesPolyelectrolyteQuaternary Ammonium CompoundsBiogenic amines; Fulvic acid; Alginic acid; Polyacrylic acid; sequestrationModels ChemicalDiethylenetriamineThermodynamicsAmine gas treatingProtonsMathematics
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Binding of fluoride and carbonate by open chain polyammonium cations

2004

The formation of open chain polyammonium cation-fluoride and -carbonate complexes was studied by potentiometric and calorimetric techniques at t=25 degrees C. Several species of H(i)AL (A=amine; L=F(-), CO(3)(2-)) are formed in both systems with a mean stability log K=1.0zeta (zeta=|z(anion)xz(cation)|) and log K=2.0zeta for fluoride and carbonate, respectively. The comparison with analogous systems (chloride and acetate for fluoride and hydrogenphosphate, sulfate and malonate for carbonate) showed that fluoride and carbonate form the most stable species with open chain polyammonium cations, among low molecular weight anions. The N-alkyl substitution does not play negligible role in the sta…

Open chain polyammonium cationCarbonatePotentiometric titrationInorganic chemistryComplex formationCalorimetryThermodynamic parametersMedicinal chemistryChlorideAnalytical Chemistrychemistry.chemical_compoundMalonatechemistryPotentiometrymedicineCarbonateSettore CHIM/01 - Chimica AnaliticaAmmoniumAmine gas treatingSulfateFluorideFluorideAnion coordination chemistrymedicine.drugTalanta
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Speciation of organotin compounds in NaCl aqueous solution: interaction of mono-, di- and tri-organotin(IV) cations with nucleotide 5′ monophosphates

2004

Formation constants for complex species of mono-, di- and tri-alkyltin(IV) cations with some nucleotide 5'-monophosphates (AMP, UMP, IMP and GMP) are reported, at T=25°C and at I = 0.16 mol 1 -1 (NaCI). The investigation was performed in the light of speciation of organometallic compounds in natural fluids in the presence of nucleotides whose biological importance is well recognized. The simple and mixed hydrolytic complex species formed in all the systems investigated in the pH range 3-9 are (L = nucleotide; M = organotin cation R x Sn (4-x)+ , with x = 1 to 3): ML + , ML(OH)° and ML(OH) 2 - for the system CH 3 Sn 3+ -L (L = AMP, IMP, UMP); ML 0 and ML(OH)-for the system (C 2 H 5 ) 2 Sn 2+…

chemistry.chemical_classificationAqueous solutionStereochemistrymedia_common.quotation_subjectSodiumchemistry.chemical_elementGeneral ChemistryMedicinal chemistryInorganic ChemistrySpeciationHydrolysischemistryStability constants of complexesPh rangeNucleotideGroup 2 organometallic chemistrymedia_commonApplied Organometallic Chemistry
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Hydrolysis of dioxouranium(VI): a calorimetric study in NaClaq and NaClO4aq, at 25°C

2004

Abstract We report the results of a calorimetric study on the hydrolysis of UO 2 2+ in different ionic media (NaClO 4 aq , NaCl aq ) at 25 °C. Experiments in NaCl were performed at different ionic strength, at I ≤1 mol l −1 . The species considered in both ionic media were UO 2 (OH) + , (UO 2 ) 2 (OH) 2 2+ and (UO 2 ) 3 (OH) 5 + , and in addition (UO 2 ) 3 (OH) 4 2+ and (UO 2 ) 3 (OH) 7 − in NaCl aq . The dependence on ionic strength of enthalpy changes in NaCl aq was expressed by the simple linear equation Δ H pq =Δ H ° pq + aI 1/2 ( a , empirical parameter). Comparison with literature findings is given and some recommended values are reported.

Aqueous solutionChemistryIonic strength dependenceEnthalpyInorganic chemistryIonic bondingCalorimetryCalorimetryCondensed Matter PhysicsSodium perchlorateUranylchemistry.chemical_compoundHydrolysisReaction enthalpyIonic strengthPhysical chemistrySettore CHIM/01 - Chimica AnaliticaPhysical and Theoretical ChemistryHydrolysis of UO22+InstrumentationThermochimica Acta
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Polyacrylates in aqueous solution. The dependence of protonation on molecular weight, ionic medium and ionic strength

2003

Abstract The protonation constants of polyacrylates with different molecular weights ( W =2000–750 000 Da) were determined in different ionic media (alkali metal chlorides and nitrates, tetraalkylammonium chlorides), at 25 °C, by potentiometric measurements (H + –glass electrode). Literature data were also considered. Different models used to analyse protonation data were compared: the first was the modified Henderson–Hasselbalch two-parameter equation, and the second was the three-parameter equation proposed by Hogfeldt. The dependence on the ionic strength of the different supporting electrolytes and all the protonation parameters involved in the two models showed the trend Et 4 N + ≫Li +…

Aqueous solutionPolymers and PlasticsChemistryGeneral Chemical EngineeringPotentiometric titrationInorganic chemistryIonic bondingProtonationGeneral ChemistryBiochemistryGlass electrodePolyelectrolytelaw.inventionSpecific ion interaction theorylawIonic strengthMaterials ChemistryEnvironmental ChemistryReactive and Functional Polymers
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Uranium(VI) sequestration by polyacrylic and fulvic acids in aqueous solution

2011

Stability data on the formation of dioxouranium(VI) species with polyacrylic (PAA) and fulvic acids (FA) are reported with the aim to define quantitatively the sequestering capacity of these high molecular weight synthetic and naturally occurring ligands toward uranium(VI), in aqueous solution. Investigations were carried out at t = 25 °C in NaCl medium at different ionic strengths and in absence of supporting electrolyte for uranyl–fulvate (\( {{\text{UO}}_{2}}^{2+} \)–FA) and uranyl–polyacrylate (\( {{\text{UO}}_{ 2}}^{ 2+ } \)–PAA, PAA MW 2 kDa) systems, respectively. The experimental data are consistent with the following speciation models for the two systems investigated: (i) UO2(FA1),…

Aqueous solutionSupporting electrolyteLigandHealth Toxicology and MutagenesisDioxouranium(VI) cation Uranium sequestration Uranyl–polycarboxylate interactions Fulvic acid Polyacrylic acid Metal complexes in aqueous solutionPolyacrylic acidPublic Health Environmental and Occupational Healthchemistry.chemical_elementIonic bondingUraniumUranylPollutionAnalytical ChemistryIonchemistry.chemical_compoundNuclear Energy and EngineeringchemistryPhysical chemistryRadiology Nuclear Medicine and imagingSettore CHIM/01 - Chimica AnaliticaSpectroscopyNuclear chemistry
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Hydrolysis of Monomethyl-, Dimethyl-, and Trimethyltin(IV) Cations in Fairly Concentrated Aqueous Solutions at I = 1 mol L-1 (NaNO3) and T = 298.15 K…

2011

The hydrolysis of methyltin(IV) cations at fairly high concentrations was investigated to evaluate the formation of polynuclear species in aqueous solution. The hydrolysis of monomethyltin(IV), dimethyltin(IV), and trimethyltin(IV) was studied by potentiometry at T = 298.15 K and at I = 1 mol L-1 in NaNO3 aqueous solutions. The results obtained gave evidence for the formation of the following polynuclear species, in addition to the mononuclear species already reported, which were also considered in the models proposed for the three systems investigated: [(CH3)Sn(OH)3]0, [(CH3)Sn(OH)4]-, [((CH3)Sn)2(OH)4]2+, [((CH3)Sn)2(OH)5]+, [((CH3)Sn)2(OH)7]-, [((CH3)Sn)3(OH)5]4+, [((CH3)Sn)3(OH)7]2þ, [(…

NUCLEAR-MAGNETIC-RESONANCE; HYDROXO COMPLEXES; IONIC-STRENGTH DEPENDENCE; SN-119 NMR-SPECTROSCOPYAqueous solutionChemistryStereochemistryHYDROXO COMPLEXESGeneral Chemical EngineeringGeneral ChemistryMedicinal chemistrySN-119 NMR-SPECTROSCOPYHydrolysisIONIC-STRENGTH DEPENDENCEMolespeciation organotin hydrolysis polynuclear speciesSettore CHIM/01 - Chimica AnaliticaNUCLEAR-MAGNETIC-RESONANCE
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Hydrolysis of (CH3)Hg+ in Different Ionic Media:  Salt Effects and Complex Formation

1998

The hydrolysis of monomethylmercury(II) was studied potentiometrically, in NaNO3, Na2SO4, and NaCl aqueous solution, in a wide range of ionic strengths (NaNO3, 0 ≤ I ≤ 3.25; Na2SO4, 0 ≤ I ≤ 1; NaCl, 0 ≤ I ≤ 3 mol dm-3) and at t = 25 °C. For the reaction (CH3)Hg+ = (CH3)Hg(OH)° + H+, we found log K1 = −4.528 (I = 0 mol dm-3). The species [(CH3)Hg]2(OH)+ was also found, with log β2 = −2.15. Monomethylmercury(II) forms quite strong complexes with Cl- (log K = 5.45, I = 0 mol dm-3) and SO42- (log K = 2.64, I = 0 mol dm-3). The dependence on ionic strength of formation constants was considered by using a Debye−Huckel type equation. Hydrolysis and complex formation constants (at different ionic s…

chemistry.chemical_classificationAqueous solutionChemistryGeneral Chemical EngineeringInorganic chemistryAnalytical chemistryIonic bondingSalt (chemistry)General Chemistrychemistry.chemical_compoundHydrolysisIonic strengthStability constants of complexesSodium sulfatePitzer equationsJournal of Chemical &amp; Engineering Data
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Interaction of methyltin(IV) compounds with carboxylate ligands. Part 1: formation and stability of methyltin(IV)–carboxylate complexes and their rel…

2006

Quantitative data on the stability of mono-, di- and trimethyltin(IV)-carboxylate complexes (acetate, malonate, succinate, malate, oxydiacetate, diethylenetrioxydiacetate, tricarballylate, citrate, butanetetracarboxylate and mellitate) are reported at t=25°C and I → 0 mol l - 1 . Several mononuclear, mixed proton, mixed hydroxo and polynuclear species are formed in these systems. As expected, the stability trend is mono- > di- > trimethyltin(IV) and mono < di < tri < tetra < hexa for the organotin moieties and carboxylate ligands investigated, respectively. Moreover, ligands containing, in addition to carboxylic,-O-and-OH groups show a significantly higher stability with respect to analogou…

methyltin(IV) cationLigandStereochemistryMetal ions in aqueous solutionGeneral ChemistryHEXAMedicinal chemistryInorganic Chemistrymethyltin(IV)–carboxylate complexeschemistry.chemical_compoundMalonatechemistryspeciationStability constants of complexesmethyltin(IV) cationsChemical stabilitySettore CHIM/01 - Chimica AnaliticaCarboxylatemethyltin(IV)–carboxylate complexeBinding sitecarboxylate ligandmethyltin(IV) cations; carboxylate ligands; methyltin(IV)–carboxylate complexes; speciationcarboxylate ligands
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Speciation of chitosan with low and high molecular weight carboxylates in aqueous solution

2009

Quantitative data on the speciation of chitosan (310 kDa) with low and high molecular weight carboxylates in aqueous solution are reported. The following carboxylic ligands were considered: monocarboxylate (butyrate); dicarboxylates (malonate, succinate, azelate); tricarboxylate (1,2,3-propa- netricarboxylate); tetracarboxylate (1,2,3,4-butanetetracarboxylate); polyacrylates (2.0 and 20 kDa); polymethacrylate (5.4 kDa). The investigation was performed by potentiometry at t 1/4 25 C, at low ionic strength (without addition of supporting electrolyte) and at I 1/4 0:15 mol L 1 (NaCl). For all the systems the formation of (chitosan)LHi species was found (L 1/4 carboxylic ligand; i 1/4 1 to 4 de…

Chemical Health and SafetyAqueous solutionpolyammonium-polycarboxylate interactionsSupporting electrolyteLigandHealth Toxicology and MutagenesisInorganic chemistrychitosan; polyammonium-polycarboxylate interactions; Chemical speciation; sequestration; effect of ionic strength on sequestrationsequestrationToxicologyTricarboxylateMedicinal chemistrychitosan polyammonium polycarboxylate speciation sequestration ionic strenght.Chitosanchemistry.chemical_compoundMalonatechemistryIonic strengthChemical speciationSettore CHIM/01 - Chimica Analiticaeffect of ionic strength on sequestrationCarboxylatechitosanChemical Speciation &amp; Bioavailability
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Interaction of methyltin(IV) compounds with carboxylate ligands. Part 2: Formation thermodynamic parameters, predictive relationships and sequesterin…

2008

Thermodynamic data of mono-, di- and tri-methyltin(IV)-carboxylate complexes (acetate, malonate, succinate, oxydiacetate, diethylenetrioxydiacetate, malate, citrate, 1,2,3-tricarballylate, 1,2,3,4-butanetetracarboxylate, 1,2,3,4,5,6-benzenehexacarboxylate) in aqueous solution are reported at t = 25 °C and I = 0 mol l−1. Thermodynamic parameters obtained were analysed to formulate empirical predictive relationships as a function of different parameters, such as the number of carboxylate groups of the ligand and the charge of the alkyltin(IV) cation. Sequestration diagrams of citrate and 1,2,3-tricarballylate towards alkyltin(IV) cations at different pH values are also reported and discussed.…

Aqueous solutionLigandempirical relationshipInorganic chemistrymethyltin(IV) complexeGeneral ChemistryCalorimetryMedicinal chemistryInorganic Chemistrychemistry.chemical_compoundspeciation in aqueous solutionMalonatechemistrythermodynamic parameterSettore CHIM/01 - Chimica AnaliticaCarboxylatethermodynamic parametersempirical relationshipsmethyltin(IV) complexes; thermodynamic parameters; calorimetry; empirical relationships; speciation in aqueous solutionmethyltin(IV) complexescalorimetry
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Sequestering Ability of Aminopolycarboxylic (APCs) and Aminopolyphosphonic (APPs) Ligands Toward Palladium(II) in Aqueous Solution

2014

The binding capacity of three aminopolycarboxylates [nitrilotriacetic acid (NTA), ethylene-glycol-bis(2-aminoethyl ether)-N,N,N,N-tetraacetic acid (EGTA), and diethylenetriamine-N,N,N,NN-pentaacetic acid (DTPA)] and two aminopolyphosphonates {(1-hydroxyethane-1,1-diyl)bis(phosphonic acid) (HEDP) and [[(phosphonomethyl)imino]bis[2,1-ethanediylnitrilobis(methylene)]] tetrakis-phosphonic acid (DTPP)} toward palladium(II) ion was studied by potentiometric and spectrophotometric titrations at different temperatures (283.15 ≤ T/K ≤ 318.15) and ionic strengths (0.1 ≤ I/mol·dm -3 ≤ 1.0) in NaClO4. The hydrolysis of Pd2+ and the protonation of ligands were always taken into account in the speciation…

chemistry.chemical_classificationAqueous solutionGeneral Chemical EngineeringIodidePotentiometric titrationInorganic chemistryNitrilotriacetic acidchemistry.chemical_elementEtherProtonationGeneral ChemistryMedicinal chemistrycomplex formation Aminopolycarboxylic and aminopolyphosphonic ligands spectrophotometry palladium sequestration.chemistry.chemical_compoundchemistrySettore CHIM/01 - Chimica AnaliticaMethylenePalladium
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On the Complexation of Cu(II) and Cd(II) With Polycarboxyl Ligands. Potentiometric Studies With ISE-H+, ISE-Cu2+, and ISE-Cd2+

2009

The interaction of Cu2+ and Cd2+ ions with polyacrylates (PAA, 2 kDa and 100 kDa), polymetacrylate(PMA, 5.4 kDa), and alginate (AA, 70 kDa to 100 kDa) was studied by potentiometry, using ISE-Cu2+, ISE-Cd2+, and ISE-H+ electrodes. The investigations were performed in NaNO3 aqueous solutions, in the ionic strength range 0.10 e I (mol ·L-1) e 0.75, at T ) 298.15 K. The “diprotic-like model” was used to explain the acid-base behavior of the polycarboxylates under investigation (for this model, the monomeric unit of the polyelectrolyte is considered as a dicarboxylate). The results give evidence for the formation of the ML species in all the systems investigated. In addition, the MLH species was…

inorganic chemicalsAcrylate polymerchemistry.chemical_classificationSequestering abilitypolycarboxylic acidsLigandGeneral Chemical EngineeringIonic strength dependencePotentiometric titrationInorganic chemistryGeneral ChemistryUronic acidComplexation Potentiometric study polyelectrolytesPolysaccharidePolyelectrolytechemistry.chemical_compoundchemistryIonic strengthSodium nitrateSettore CHIM/01 - Chimica Analiticapolycarboxylic acids; Sequestering ability; Ionic strength dependenceNuclear chemistryJournal of Chemical &amp; Engineering Data
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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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SALMO and S3M: A Saliva Model and a Single Saliva Salt Model for Equilibrium Studies.

2014

A model of synthetic saliva (SALMO, SALiva MOdel) is proposed for its use as standard medium inin vitroequilibrium and speciation studies of real saliva. The concentrations come out from the literature analysis of the composition of both real saliva and synthetic saliva. The chief interactions of main inorganic components of saliva, as well as urea and amino acids, are taken into account on the basis of a complex formation model, which also considers the dependence of the stability constants of these species on ionic strength and temperature. These last features allow the modelling of the speciation of saliva in different physiological conditions deriving from processes like dilution, pH, a…

SalivaArticle Subjectlcsh:BiotechnologyComplex formationIonic bondingSalt (chemistry)BiochemistryInorganic Chemistryfluids and secretionsstomatognathic systemlcsh:TP248.13-248.65lcsh:Inorganic chemistrySettore CHIM/01 - Chimica Analiticachemistry.chemical_classificationChromatographybusiness.industryChemistryOrganic ChemistryBiochemistry Saliva.lcsh:QD146-197BiotechnologyDilutionstomatognathic diseasesIonic strengthbusinessResearch ArticleBioinorganic chemistry and applications
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Speciation of low molecular weight ligands in natural fluids: protonation constants and association of open chain polyamines with the major component…

2000

Abstract The interaction of five open chain polyamines (ethylenediamine (en), diethylenetriamine (dien), trietylenetetramine (trien), tetraethylenepentamine (tetren), spermine (sper)) with the major components of seawater was studied potentiometrically at 25°C, in an artificial seawater (containing Na+, K+, Mg2+, Ca2+, Cl− and SO42−) at different salinities (5–45‰). Potentiometric data were interpreted in terms of both the apparent protonation constants of polyamines and the formation constants of complexes formed by unprotonated or protonated amines and the cation and the anion of seawater (the inorganic content of seawater being considered as a single 1:1 salt). Some empirical relationshi…

Aqueous solutionPotentiometric titrationInorganic chemistryArtificial seawaterEthylenediamineProtonationBiochemistryAnalytical Chemistrychemistry.chemical_compoundchemistryStability constants of complexesDiethylenetriamineEnvironmental ChemistrySeawaterSpectroscopy
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Speciation of Organic Matter in Natural Waters-interaction of polyacrylates and polymethacrylates with major cation components of seawater

2004

Abstract The speciation of some high molecular weight polycarboxylates was studied in different ionic media. Polyacrylates here investigated ( W =2.0, 5.1 and 20.0 kDa) form weak species with alkali metal cations ( K =10 2 mol l −1 , t =25 °C, I =0 mol l −1 ) and quite stable complexes with alkaline earth metal cations ( K >10 6 mol l −1 , t =25 °C, I =0 mol l −1 ). Results are reported from experiments performed in a multicomponent electrolyte solution simulating the major composition of seawater (artificial seawater). Protonation constants in this medium are expressed as a polynomial function of S 1/2 ( S =salinity) and the sharp lowering with respect to values obtained in non-interacting…

Aqueous solutionChemistryInorganic chemistryIonic bondingArtificial seawaterProtonationGeneral ChemistryElectrolyteOceanographyAlkali metalDissociation (chemistry)Environmental ChemistrySeawaterWater Science and Technology
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Protonation of Carbonate in Aqueous Tetraalkylammonium Salts at 25°C.

2006

Protonation constants of carbonate were determined in tetramethylammonium chloride (Me4NClaq 0.1≤I/mol kg−1 ≤4) and tetraethylammonium iodide (Et4NIaq 0.1≤I/mol kg−1 ≤1) by potentiometric ([H+]-glass electrode) measurements. Dependence of protonation constants on ionic strength was taken into account by modified specific ion interaction theory (SIT) and by Pitzer models. Literature data on the protonation of carbonate in NaClaq (0.1≤I/mol kg−1 ≤6) were also critically analysed. Both protonation constants of carbonate follow the trend Et4NI>Me4NCl > NaCl. An ion pair formation model designed to take into account the different protonation behaviours of carbonate in different supporting electr…

Aqueous solutionProtonation of carbonateSpecific ion interaction theory (SIT)Ion pair formation modelChemistryInorganic chemistryTetraalkylammonium saltProtonationDependence on ionic strengthElectrolyteIon pairsAnalytical Chemistrychemistry.chemical_compoundIonic strengthTetramethylammonium chlorideAqueous solutionPitzer equationsCarbonateSettore CHIM/01 - Chimica AnaliticaProtonation of carbonate; Dependence on ionic strength; Aqueous solution; Tetraalkylammonium salts; Ion pair formation model; Specific ion interaction theory (SIT); Pitzer equationPitzer equation
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The interaction of amino acids with the major constituents of natural waters at different ionic strengths

2000

Abstract The interaction of amino acids with the major constituents of natural waters has been studied potentiometrically by determining protonation constants at different ionic strengths (e.g., I ≤5.6 mol (kg H 2 O) −1 (NaCl)) and in artificial seawater (containing Na + , K + , Ca 2+ , Mg 2+ , Cl − and SO 4 2− ) at different salinities. For glycine determinations in mixed NaCl–MgCl 2 , electrolyte solutions were also performed. The data included in this work, together with some already published, make it possible to calculate parameters for dependence on ionic strength using different models, i.e. an extended Debye–Huckel type equation and Pitzer equations. The results can be interpreted b…

Aqueous solutionChemistryInorganic chemistryIonic bondingArtificial seawaterProtonationGeneral ChemistryOceanographyIonic strengthStability constants of complexesEnvironmental ChemistryPitzer equationsSeawaterWater Science and Technology
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Composition, distribution, and sources of polycyclic aromatic hydrocarbons in sediments of the gulf of Milazzo (Mediterranean Sea, Italy)

2014

This article describes the characterization of Polycyclic Aromatic Hydrocarbons (PAHs) in sediments of Milazzo Gulf (Italy) located in front of an oil refinery and a power plant. The investigated area is characterized by urban and industrial activities. The sixteen PAHs identified by the USEPA, as requiring priority monitoring, and other non USEPA listed PAHs, namely perylene and some methyl derivatives, were investigated The total PAHs concentrations, expressed as ∑ 19 PAH ranges from 5.6–7402 μg/Kg d.w., with a mean value of 492 μg/Kg d.w. The concentrations of PAHs found in 64 out of 67 samples were lower than the effect range low (ERL = 2460 μg/Kg) concentration, while the remaining sam…

Polymers and PlasticsChemistryRange (biology)power plantOrganic ChemistryMean valuerefinerySedimentMilazzo; PAHs; power plant; refinery; sedimentMilazzoMilazzo PAHs power plant refinery sedimentSettore CHIM/12 - Chimica Dell'Ambiente E Dei Beni CulturaliPAHsMediterranean seasedimentEnvironmental chemistryMaterials ChemistrySettore CHIM/01 - Chimica AnaliticaComposition (visual arts)
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Weak alkali and alkaline earth metal complexes of low molecular weight ligands in aqueous solution

2008

This work is aimed at reviewing the chemical literature dealing with thermodynamic aspects of the weak complex formation (species with log K values less than about 3) between alkali and alkaline earth metal ions with low molecular weight inorganic and organic ligands in aqueous solution. The following ligands (up to hexavalent anions) were examined in detail: (i) hydroxide, chloride, sulfate, carbonate and phosphate as inorganic, and (ii) carboxylates, amines, amino acids, complexones and nucleotides as organic ligands. The paper also identifies the main reasons responsible for the dispersion of the stability data on ion pairs in the literature. When possible, the trend of stability for the…

Ion pairsSupporting electrolyteMetal ions in aqueous solutionInorganic chemistryAlkali metal complexeWeak complexesChlorideAlkali metal complexes; Alkaline earth metal complexes; Weak complexes; Formation and stability in aqueous solution; Ion pairs.Inorganic Chemistrychemistry.chemical_compoundAlkali metal complexesAlkaline earth metal complexesMaterials ChemistrymedicineFormation and stability in aqueous solutionSettore CHIM/01 - Chimica AnaliticaPhysical and Theoretical ChemistryWeak complexeAlkaline earth metalAqueous solutionChemistryLigandAlkali metalAlkaline earth metal complexeHydroxidemedicine.drugCoordination Chemistry Reviews
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Interaction of the Dioxouranium(VI) Ion with Aspartate and Glutamate in NaCl(aq) at Different Ionic Strengths

2005

The formation of complexes species of the dioxouranium(VI) ion with aspartic and glutamic acids was studied in the pH range of 3 to 6 at 25 °C by potentiometric measurements (H+−glass electrode). R...

StereochemistryGeneral Chemical EngineeringSodiummedia_common.quotation_subjectPotentiometric titrationInorganic chemistrychemistry.chemical_elementIonic bondingGeneral ChemistryIonSpeciationchemistryStability constants of complexesIonic strengthElectrodemedia_commonJournal of Chemical &amp; Engineering Data
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Thermodynamic Parameters for the Protonation of Poly(allylamine) in concentrated LiCl(aq) and NaCl(aq)

2004

The acid-base properties of poly(allylamine) (MW ) 15 kDa) were determined by potentiometry and calorimetry in aqueous solutions at t ) 25 °C. Potentiometric measurements were carried out in a wide range of ionic strengths (0.1 e I/molâL-1 e 5.0) in NaCl(aq) and LiCl(aq), while enthalpy changes for the protonation of poly(allylamine) were determined by calorimetry in the same ionic strength range but only in NaCl(aq). Analysis of the experimental data was carried out using two different models: the first based on a modified Henderson-Hasselbalch two parameter equation and the second on the three parameter equation proposed by Ho¨gfeldt. Protonation constants are given for both models and io…

General Chemical EngineeringEnthalpyPotentiometric titrationInorganic chemistryIonic bondingProtonationGeneral ChemistryCalorimetryProtonationPoly(allylamine)Allylaminechemistry.chemical_compoundchemistrySpecific ion interaction theoryspeciationIonic strengthPhysical chemistrySettore CHIM/01 - Chimica Analitica
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Chemical speciation of organic matter in natural waters. Interaction of nucleotide 5′ mono-, di- and triphosphates with major components of seawater

2004

AbstractThe interactions of nucleotide 5’ mono-, di- and triphosphates in a multicomponent ionic medium simulating the macro-composition of seawater (Na+, K+, Ca2+, Mg2+, Cl-, SO42-, Synthetic Sea Water, SSW) have been investigated at different ionic strengths and at T= 25°C. A chemical speciation model, according to which all the internal interactions between the components of the ionic medium are taken into account, was applied to determine the effective formation constants of species in the nucleotide-seawater system. The results were compared to protonation parameters calculated from single electrolyte systems. A simpler model (SSW considered as a single salt BA, with Bz+ and Az-), repr…

chemistry.chemical_classificationChemical Health and SafetyHealth Toxicology and MutagenesisInorganic chemistrySalt (chemistry)Ionic bondingProtonationElectrolytenucleotideToxicologyorganic natural matterIonspeciationchemistryStability constants of complexesspeciation; nucleotide; seawater; organic natural matterQualitative inorganic analysisSeawaterChemical speciation of organic matter. Complex formation. Natural waters. Nucleotidesseawater
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Solubility of some calcium-carboxylic ligand complexes in aqueous solution

1994

Insoluble species were identified in the systems Ca(2+)-hemimellitate, Ca(2+)-1,2,3,4-butanetetracarboxylate and Ca(2+)-citrate, and their solubilities were determined in aqueous solution at T = 25 degrees C. Values of pK(s0) were obtained for the species CaLH (L = benzene-1,2,3-tricarboxylate or hemimellitate), Ca(2)L (L = 1,2,3,4-butanetetracarboxylate), CaLH and Ca(3)L(2) (L = citrate), together with their dependence on ionic strength. Solid compounds were also characterized by thermogravimetry. The complex formation in solution for the system Na(+) - and Ca(2+)-hemimellitate was studied too.

Thermogravimetrychemistry.chemical_compoundAqueous solutionLigandIonic strengthChemistryInorganic chemistryProtonationQualitative inorganic analysisCarboxylateSolubilityAnalytical ChemistryNuclear chemistryTalanta
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8-Hydroxyquinoline-2-Carboxylic Acid as Possible Molybdophore: A Multi-Technique Approach to Define Its Chemical Speciation, Coordination and Sequest…

2020

8-hydroxyquinoline-2-carboxylic acid (8-HQA) has been found in high concentrations (0.5&ndash

Carboxylic acidInorganic chemistryPotentiometric titrationlcsh:QR1-502metal complexesMolybdate010402 general chemistry01 natural sciencesBiochemistryFerric Compoundschemical speciation; metal complexes; metallophores; molybdate; natural chelants; sequestration; stability constantslcsh:MicrobiologyArticlemetal complexechemistry.chemical_compoundSettore CHIM/01 - Chimica AnaliticaMolecular BiologyVoltammetryDensity Functional TheorySettore CHIM/02 - Chimica Fisicachemistry.chemical_classificationMolybdenumAqueous solutionmetallophore010405 organic chemistryLigandWatersequestrationchemical speciationhumanities0104 chemical sciencesSolutionsmolybdatestability constantsnatural chelantschemistryHydroxyquinolinesnatural chelantTitrationCyclic voltammetrymetallophoresBiomolecules
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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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A critical approach to the toxic metal ion removal by hazelnut and almond shells

2018

The adsorption capacity of ground hazelnut (HS) and almond (AS) shells towards Pb(II) and Cd(II) has been studied at pH = 5, in NaNO3 and NaCl ionic media, in the ionic strength range 0.05-0.5 mol L-1. Kinetic and equilibrium experiments were carried out by using the Differential Pulse Anodic Stripping Voltammetry technique to check the amount of the metal ion removed by HS and AS materials. Different kinetic and equilibrium equations were used to fit experimental data and a statistical study was done to establish the suitable model for the data fitting. A speciation study of the metal ions in solution was also done in order to evaluate the influence of the ionic medium on the adsorption pr…

Materials scienceHealth Toxicology and MutagenesisMetal ions in aqueous solutionHazelnut shellInorganic chemistryVoltammetry.Ionic bonding02 engineering and technology010501 environmental sciences01 natural sciencesIonMetalCorylusAdsorptionSpectroscopy Fourier Transform InfraredAlmond shellNutsEnvironmental ChemistrySettore CHIM/01 - Chimica AnaliticaLead(II)VoltammetryEnvironmental Restoration and Remediation0105 earth and related environmental sciencesSettore CHIM/02 - Chimica FisicaIonsWaste managementOsmolar ConcentrationGeneral MedicineHydrogen-Ion Concentration021001 nanoscience & nanotechnologyPrunus dulcisPollutionAnodic stripping voltammetryMetalsIonic strengthvisual_artvisual_art.visual_art_mediumVoltammetryAdsorptionCadmium(II)0210 nano-technologyWater Pollutants ChemicalAdsorption; Almond shells; Cadmium(II); Hazelnut shells; Lead(II); Voltammetry; Environmental Chemistry; Pollution; Health Toxicology and MutagenesisCadmium
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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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Speciation of tin(II) in aqueous solution: thermodynamic and spectroscopic study of simple and mixed hydroxocarboxylate complexes

2013

This contribution reports the results of potentiometric and Mossbauer investigations on the formation, stability, and structure of binary and ternary mono- and binuclear complexes of Sn2+ with three hydroxocarboxylic ligands (namely L = tartrate, malate, and citrate) and chloride at T = 298.15 K in different ionic media and ionic strengths (0.15 and 1.00 mol dm−3 in NaCl(aq) and 1.00 mol dm−3 in NaNO3(aq)). The stability constants of various simple Sn i H j L (2+−) and mixed Sn i H j L k Cl (2+−−) species obtained in the different experimental conditions are reported, and various speciation diagrams of the simple and mixed systems are shown in different conditions. The sequestering ability …

chemistry.chemical_classificationAqueous solutionMössbauer spectroscopyPotentiometric titrationEnthalpyInorganic chemistrySequestrationIonic bondingComputer programGeneral ChemistryChlorideCoordination chemistryCoordination complexTrigonal bipyramidal molecular geometrychemistrySettore CHIM/03 - Chimica Generale E InorganicamedicineMetal complexeSettore CHIM/01 - Chimica AnaliticaStability constantsTernary operationmedicine.drugMonatshefte für Chemie - Chemical Monthly
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Enhancement of Hydrolysis through the Formation of Mixed Heterometal Species: Al3+/CH3Sn3+ Mixtures

2013

ABSTRACT: The hydrolysis of mixed-metal cations (Al3+/CH3Sn3+) was studied in aqueous solutions of NaNO3, at I = 1.00 ± 0.05 mol·dm−3 and T = 298.15 K, by potentiometric technique. Several hydrolytic mixed species are formed in this mixed system, namely, Alp(CH3Sn)q(OH)r with (p, q, r) = (1, 1, 4), (1, 1, 5), (1, 1, 6), (2, 1, 4), (1, 2, 5), (1, 4, 11), (1, 3, 8), and (7, 6, 32). The stability of these species, expressed by the equilibrium: pAl3+ + qCH3Sn3+ + rOH− = Alp(CH3Sn)q(OH)r 3(p+q)−r, βpqr OH, can be modeled by the empirical relationship: log βpqr OH = −3.34 + 2.67p + 9.23(q + r). By using the equilibrium constant Xpqr relative to the formation reaction: pAl(p+q)(OH)r + q(CH3Sn)(p+q…

equilibrium analysiequilibrium analysis; mixed hydrolysis of metal ions; aluminium(III); monomethyltin(IV)monomethyltin(IV)Aqueous solutionChemistryStereochemistryGeneral Chemical EngineeringPotentiometric titrationEmpirical relationships Formation reaction Mixed species Mixed systems Potentiometric techniqueGeneral ChemistryPotentiometric techniqueMedicinal chemistryTurn (biochemistry)HydrolysisMixed systemsMixed speciesMixed systemsMixed speciesEmpirical relationshipsSettore CHIM/01 - Chimica AnaliticaSolubilityaluminium(III)mixed hydrolysis of metal ionFormation reactionEquilibrium constantJournal of Chemical &amp; Engineering Data
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Protonation thermodynamics of 2,2'-bipyridyl in aqueous solution. Salt effects and weak complex formation

1993

Abstract Protonation constants of 2,2'-bipyridyl (bipy) have been determined potentiometrically, using (H + )-glass electrode, in different aqueous media (alkali and alkaline earth chlorides, tetramethylammonium chloride and tetramethylammonium iodide) at different temperatures and ionic strengths. The differences in log K H values are explained using a complex formation model. Formation thermodynamic parameters are given.

Aqueous solutionEnthalpyInorganic chemistryIonic bondingProtonationCondensed Matter PhysicsAlkali metalStandard enthalpy of formationchemistry.chemical_compoundchemistryIonic strengthTetramethylammonium chloridePhysical and Theoretical ChemistryInstrumentationThermochimica Acta
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Advances in the investigation of dioxouranium(VI) complexes of interest for natural fluids

2012

Abstract The interactions of dioxouranium(VI) cation with different organic and inorganic ligands of environmental and biological interest were carefully examined with the aim to draw a chemical speciation picture of this ion in natural aquatic ecosystems and in biological fluids. Since UO22+ ion shows a significant tendency to hydrolyze, particular attention was paid in considering the hydrolysis species formation both in the presence and in absence of ligands. The results reported in the literature show that formation of the hydrolytic species assumes a great importance in the complexation models for all the UO22+-ligand systems considered. In particular, the following ligands have been t…

SpeciationDioxouranium(VI) complexes; Aqueous solutions; Inorganic ligands; Organic ligands; Speciation; SequestrationOrganic ligandsInorganic Chemistrychemistry.chemical_compoundComputational chemistryMaterials ChemistryAqueous solutionDioxouranium(VI) complexesOrganic chemistryMoleculeSettore CHIM/01 - Chimica AnaliticaCarboxylatePhysical and Theoretical ChemistryBinding siteAqueous solutionsDioxouranium(VI) complexechemistry.chemical_classificationInorganic ligandsAqueous solutionLigandSequestrationInorganic ligandUranylAmino acidchemistryOrganic ligandChemical stabilityCoordination Chemistry Reviews
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Palladium(II) sequestration by natural and synthetic chelating agents

2010

Palladium belongs to the so called “Platinum group elements” (PGE), and it is normally present at very low concentration in the environment. In the last twenty years, there has been an increasing PGE demand in different fields such as medicine, electronics, jewellery and car industry. Moreover, palladium (and other PGE) is broadly used as catalyst in a wide number of reactions. The high catalytic properties of PGE favoured their use in the production of catalytic converters. Unfortunately, this caused a noticeable increasing of PGE concentration in the environment, mainly constituted by platinum, with a particular accumulation in urban areas. However, since 1993 platinum has been increasing…

phytatePalladium(II)Settore CHIM/01 - Chimica Analitica
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Sequestration of Dioxouranium(VI) ion by fulvate and polyacrylate

2005

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Speciation of organotin compounds in NaCl aqueous solution. Interaction of mono-, di- and triorganotin(IV) cations with nucleotides 5’ monophosphates

2004

Formation constants for complex species of mono-, di- and tri-alkyltin(IV) cations with somenucleotide 5-monophosphates (AMP, UMP, IMP and GMP) are reported, atT=25◦CandatI=0.16 mol l−1(NaCl). The investigation was performed in the light of speciation of organometalliccompounds in natural fluids in the presence of nucleotides whose biological importance is wellrecognized. The simple and mixed hydrolytic complex species formed in all the systems investigatedin the pH range 3–9 are (L=nucleotide; M=organotin cation RxSn(4−x)+, withx=1to3):ML+,ML(OH)0and ML(OH)2−for the system CH3Sn3+–L (L=AMP, IMP, UMP); ML0and ML(OH)−for the system (C2H5)2Sn2+–L (L=AMP, IMP, UMP); ML−, ML(OH)2−,MLH0and M2L(O…

nucleotides; organotin(IV) compounds; complex formation constants; chemical speciationorganotin(IV) compoundscomplex formation constantsorganotin(IV) compoundcomplex formation constantnucleotidechemical speciationnucleotides
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Thermodynamic and spectroscopic study on the binding of dimethyltin(IV) by citrate at 25°C

2005

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Hydrolysis of organotin compounds at high concentration

2008

OrganotinhydrolysisSettore CHIM/01 - Chimica Analitica
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Speciazione di Sn(II) in presenza di leganti O-donatori di interesse biologico

2010

Lo stagno è il ventiquattresimo elemento più abbondante nella crosta terrestre ed ha il più elevato numero di isotopi stabili (dieci). Generalmente questo elemento non viene annoverato tra gli inquinanti più importanti, in quanto lo stagno inorganico non risulta particolarmente tossico. Tuttavia, molti dei suoi sali lo sono. Infatti, la corrosione di contenitori in stagno da parte di cibi e bevande acide ha causato in passato numerosi intossicazioni ad opera di composti solubili di questo metallo. Inoltre, la bioalchilazione dello stagno inorganico porta alla formazione di composti ancor più nocivi per l’ambiente. Per tali ragioni, per esempio, la Food Standards Agency del Regno Unito ha im…

Sn(II) speciazione leganti O-donatoriSettore CHIM/01 - Chimica Analitica
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Modelling the dependence on medium and ionic strength of molybdate acidbase properties, and its interactions with phytate

2016

The importance of molybdenum from a biological, environmental and technological point of view is very well known since many decades [15]. In particular, it is mainly present in aqueous solutions as molybdate (MoO42), which is the biologically active form, entering in the cells by active transport systems. Though molybdate is the major species in neutral to basic pH conditions, at lower pH it undergoes protonation and, chiefly, polymerization, even at millimolar concentration levels [2]. Consequently, the modelling of its speciation and acidbase properties is not very simple, as demonstrated by the nonhomogeneity of available literature data. In this light, our group has started a systematic…

molybdatephytateSettore CHIM/01 - Chimica Analiticaacid-base propertieionic strengthionic medium
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