Search results for "chemical speciation"

showing 10 items of 21 documents

Chemical speciation of Fe, Mn, Pb, Zn, Cd, Cu, Co, Ni and Cr in the suspended particulate matter off the Mejerda River Delta (Gulf of Tunis, Tunisia)

2016

International audience; Fluxes of suspended particulate matter (SPM) and their associated metals were performed off the Mejerda River Delta during both the wet (March) and the dry (July) seasons in 2012, using sediment traps at study stations at depths of 10, 20 and 40 m. Fluxes nearest to the Mejerda outlet were more significant, especially during winter (36 g m−2 day−1), but dissipated further offshore, 24.5–6 g m−2 day−1 at the 20 m and 21.8–4.8 g m−2 day−1 at the 40 m stations. Many variations observed in seasonal and spatial metal fluxes are similar to those of SPM, in particular Pb and Zn, probably because they are associated with the mining activity characteristic of the Mejerda catc…

010504 meteorology & atmospheric scienceschemistry.chemical_elementZinc010501 environmental sciences01 natural sciences[ SDE ] Environmental SciencesWater pollution0105 earth and related environmental sciencesEarth-Surface ProcessesHydrologyCadmiumgeographyRiver deltageography.geographical_feature_categoryToxicitySedimentGeologySuspended particulate matterParticulates6. Clean waterchemistryHeavy metals13. Climate actionEnvironmental chemistry[SDE]Environmental SciencesSediment trapSediment trapChemical speciationWater qualityGeology
researchProduct

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
researchProduct

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
researchProduct

The Effect of Metal Cations on the Aqueous Behavior of Dopamine. Thermodynamic Investigation of the Binary and Ternary Interactions with Cd2+, Cu2+ a…

2021

The interactions of dopamine [2-(3,4-Dihydroxyphenyl)ethylamine, (Dop−)] with cadmium(II), copper(II) and uranyl(VI) were studied in NaCl(aq) at different ionic strengths (0 ≤ I/mol dm−3 ≤ 1.0) and temperatures (288.15 ≤ T/K ≤ 318.15). From the elaboration of the experimental data, it was found that the speciation models are featured by species of different stoichiometry and stability. In particular for cadmium, the formation of only MLH, ML and ML2 (M = Cd2+; L = dopamine) species was obtained. For uranyl(VI) (UO22+), the speciation scheme is influenced by the use of UO2(acetate)2 salt as a chemical; in this case, the formation of ML2, MLOH and the ternary MLAc (Ac = acetate) species in a …

Catechol; Chemical speciation; Metal complexes; Sequestration; Stability constantsMolecular Structurechemical speciation; metal complexes; catechol; sequestration; stability constantsDopaminePharmaceutical ScienceOrganic chemistrysequestrationmetal complexesSodium Chloridecatecholchemical speciationUranium CompoundsAnalytical Chemistrystability constantsQD241-441Chemistry (miscellaneous)CationsDrug DiscoveryMolecular MedicineThermodynamicsSettore CHIM/01 - Chimica AnaliticaPhysical and Theoretical ChemistryCopperCadmiumMolecules
researchProduct

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 & Bioavailability
researchProduct

Special issue “chemical speciation of organic and inorganic components of environmental and biological interest in natural fluids: Behaviour, interac…

2020

Several different definitions were in the past proposed to describe the term chemical speciation, and some of them were accepted from the scientific community [...]

Chemical speciationOrganic ChemistryPharmaceutical Sciencesequestrationnatural fluids.Natural (archaeology)Analytical ChemistryTerm (time)lcsh:QD241-441Editorialn/alcsh:Organic chemistryChemistry (miscellaneous)Drug DiscoveryMolecular MedicineEnvironmental scienceChemical speciationWater PollutantsSettore CHIM/01 - Chimica AnaliticaBiochemical engineeringPhysical and Theoretical ChemistryOrganic ChemicalsEnvironmental Monitoring
researchProduct

2,2′-Oxydiacetato-bridged complexes containing Sm(III) and bivalent cations. Synthesis, structure, magnetic properties and chemical speciation

2006

Abstract Heterometallic compounds containing Sm(III), bivalent cations M (M = Cu, Ni, Co, Mn, Ca, Mg), and 2′,2′-oxydiacetate (oda) as connecting ligand have been prepared and characterized. The complexes can be formulated as [Sm 2 M 3 (oda) 6 ] · xH 2 O. The structure of [Sm 2 Cu 3 (oda) 6 (H 2 O) 6 ] shows the presence of the Sm(III) coordinated by six carboxy and three ether oxygen atoms, and the Cu(II) cation bonded to four carboxy oxygens and two molecules of water. An open 3D framework is observed, containing large hexagonal channels. At room temperature, the polynuclear complexes behave as built by magnetically isolated paramagnetic ions, but at low temperatures, very weak antiferrom…

LanthanideChemistryEther oxygenChemical speciationOrganic ChemistryInorganic chemistryBivalent (genetics)Analytical ChemistryIonInorganic ChemistryParamagnetismCrystallographyAntiferromagnetismMoleculeSpectroscopyJournal of Molecular Structure
researchProduct

Distribution of Lanthanides in Mediterranean Coastal waters

2007

Distribution and behaviour of the whole lanthanide series and yttrium in both seawater column and suspended particulate matter were investigated in coastal water located in the Central Mediterranean Sea. An area characterized by high anthropic pressure, atmospheric fallout and river input due to drainage of little local watersheds was selected. Water masses were discriminated with respect to both surrounding and depth and in relation to the processes occurring at the solid-liquid interface. We found that yttrium and Rare Earth Elements in the labile fraction of the suspended particulates result from the mixing between lithogenic material from the Sicilian basin and detrital material of Saha…

Metals Chemical speciation and complexation GeochemistrySettore GEO/08 - Geochimica E Vulcanologia
researchProduct

The solution behavior of dopamine in the presence of mono and divalent cations: A thermodynamic investigation in different experimental conditions

2021

The interactions of dopamine [2-(3,4-Dihydroxyphenyl)ethylamine, (Dop-)] with methylmercury(II) (CH3Hg+), magnesium(II), calcium(II), and tin(II) were studied in NaCl(aq) at different ionic strengths and temperatures. Different speciation models were obtained, mainly characterized by mononuclear species. Only for Sn2+ we observed the formation of binuclear complexes (M2L2 and M2LOH (charge omitted for simplicity)

Models MolecularCations DivalentDopaminePotentiometric titrationEnthalpyIonic bondingBiochemistryMicrobiologyArticleDivalentchemistry.chemical_compoundMetal complexesTheoryofComputation_ANALYSISOFALGORITHMSANDPROBLEMCOMPLEXITYSettore CHIM/01 - Chimica AnaliticaStability constantsMolecular Biologychemistry.chemical_classificationCatechol; Chemical speciation; Metal complexes; Sequestration; Stability constantsLigandHydrolysisOsmolar ConcentrationTemperatureSequestrationHydrogen-Ion ConcentrationQR1-502SolutionsKineticschemistrySpecific ion interaction theoryIonic strengthThermogravimetryCatecholPhysical chemistryThermodynamicsChemical speciationEthylamine
researchProduct

Bioavailability and assessment of heavy metal pollution in sediment cores off the Mejerda River Delta (Gulf of Tunis): How useful is a multiproxy app…

2016

International audience; Three core samples were taken from zones offshore from the Mejerda River Delta (Tunisia) and analyzed formajor and trace elements to assess their relationships with organic matter, monosulfides and carbonates, aswell as for pollution and bioavailability. Chemical speciation,ΣSEM/AVS, the enrichment factor (EF) and thegeo-accumulation index (I-geo) were used. Iron, cadmium, lead and zinc – the most frequently mined metalsin the Mejerda catchment – were found as contaminants in the offshore areas. Estimations of trace elementaccumulation using the EF and the I-geo index show that lead, and to a lesser extent zinc, are the most pollutingmetals off the Mejerda outlet. Ac…

PollutionDeltaGeologic SedimentsTunisia010504 meteorology & atmospheric sciencesmedia_common.quotation_subjectCarbonateschemistry.chemical_elementEnvironmental pollution010501 environmental sciencesAquatic ScienceOceanographyCoastal areas01 natural sciencesMining[ SDE ] Environmental SciencesRiversMetals Heavy0105 earth and related environmental sciencesmedia_commongeographyCadmiumRiver deltageography.geographical_feature_categoryToxicityTrace elementSedimentGeo-accumulation indexPollutionEnrichment factor6. Clean waterTrace ElementsZincchemistry13. Climate actionEnvironmental chemistry[SDE]Environmental SciencesEnvironmental scienceChemical speciationEnvironmental PollutionEnrichment factorWater Pollutants ChemicalCadmiumEnvironmental Monitoring
researchProduct