987 resultados para CR(III)


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Cellulose phosphate (CELLPHOS) was studied as a collector for analytical preconcentration of traces of Cd(II), Cr(III), Cu(II) and Ni(II) from aqueous sample solution. It has been proved that using chromatographic columns packed with CELLPHOS for preconcentration and 1.0 mol 1 -1 HCl for elution the adsorbed analytes are quantitatively enriched. An enrichment factor of 20 (100 ml sample, 5 ml concentrate) was achieved by this separation procedure, which was applied to a series of water analyses (river, sea, bog water).

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During the last years, the emission of heavy metals to the environment has increased, causing a severe negative impact to the ecosystems and seriously compromising human health due to their mutagenic potential. Tri- (III) and hexavalent (VI) chromium (Cr) constitute the oxidative states of the metal chromium that are active in living organisms. These two oxidation states of the chromium differ with regards to their cellular effects, mainly due to the different abilities they possess in relation to easy of transport through biological membranes. Cr VI is transported into the cell through transference channels of endogenous anions that are isostructural and isoelectronical to Cr VI, such as SO 4 -2 and HPO 4 -2. On the other hand, Cr III is unable to diffuse through the cell membrane. Its existence inside the cells is generally due to the reduction of Cr VI, the endocytosis, or the absortion by the cells via phagocytosis. Cr III acts directly on the DNA molecule, while Cr VI reacts little with this molecule. In the ecosystem, however, Cr VI is more dangerous since this is the form that presents greater reactivity with biological membranes, crossing them and being easily incorporated into the cell. In the cell it is biotransformed to Cr III, a potentially mutagenic molecule. In vivo and in vitro studies have shown that organisms exposed to Cr VI present greater induction to a variety of damages to the DNA molecule. Among the damages induced by Cr, changes in the structure of the DNA molecule have been reported, with breaks of the major chain and base oxidation. In the organisms, these alterations generate chromosomal aberrations, micronucleus formation, sister chromatid exchanges, and errors in DNA synthesis.

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In this work, a silica surface chemically modified with [3-(2,2′-dipyridylamine)propyl] groups, named [3-(2,2′- dipyridylamine)propyl]silica (Si-Pr-DPA) was prepared, characterized, and evaluated for its heavy metal adsorption characteristics from aqueous solution. To our knowledge, we are the first authors who have reported the present modification. The material was characterized using infrared spectroscopy, SEM, and NMR 29Si and 13C solid state. Batch and column experiments were conducted to investigate for heavy metal removal from dilute aqueous solution by sorption onto Si-Pr-DPA. From a number of studies the affinity of various metal ions for the Si-Pr-DPA sorbent was determined to follow the order Fe(III) > Cr(III) >> Cu(II) > Cd(II) > Pb(II) > Ni(II). Two standard reference materials were used for checking the accuracy and precision of the method. The proposed method was successfully applied to the analysis of environmental samples. This ligand material has great advantage for adsorption of transition-metal ions from aqueous medium due to its high degree of organofunctionalization associated with the large adsorption capacity, reutilization possibility, and rapidity in reaching the equilibrium. © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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A silica surface chemically modified with [3-(2,2'-dipyridylamine) propyl] groups was prepared, characterized, and evaluated for its metal ion preconcentration in fuel ethanol. To our knowledge, we are the first authors who have reported the present modification on silica gel surface. The material was characterized using infrared spectra, scanning electronic microscopy, and 13C and 29Si solid-state NMR spectra. Batch and column experiments were conducted to investigate for metal ion removal from fuel ethanol. The results showed that the Langmuir model describes the sorption equilibrium data of the metal ions in a satisfactory way. From the Langmuir isotherms, the following maximum adsorption capacities (in mmolg -1) were determined: 1.81 for Fe(III), 1.75 for Cr(III), 1.30 for Cu(II), 1.25 for Co(II), 1.15 for Pb(II), 0.95 for Ni(II), and 0.87 for Zn(II). Thermodynamic functions, the change of free energy (ΔG), enthalpy (ΔH), and entropy (ΔS) showed that the adsorption of metal ions onto Si-Pr-DPA was feasible, spontaneous, and endothermic. The sorption-desorption of the metal ions made possible the development of a preconcentration and quantification method of metal ions in fuel ethanol. © 2012 Elsevier Inc.

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This work describes the synthesis and characterization of a new octakis[3-(2,2'-dipyridylamine)propyl]octasilsesquioxane (T8-Pr-DPA), and a study of the metal ion preconcentration in fuel ethanol. Batch and column experiments were conducted to investigate for the removal of heavy metal ions from fuel ethanol. The results showed that the Langmuir allowed to describe the sorption equilibrium data of the metal ions on T8-Pr-DPA in a satisfactory way. The following maximum adsorption capacities (in mmolg-1) were determined: 3.62 for Fe (III), 3.32 for Cr (III), 2.15 for Cu (II), 1.80 for Co (II), 1.62 for Pb (II), 1.32 for Ni (II) and 0.88 for Zn (II). The thermodynamic parameters for the adsorption process such as free energy of adsorption (δG), enthalpy of adsorption (δH) and entropy of adsorption (δS) were calculated. Thermodynamic parameters showed that the system has favorable enthalpic, Gibbs free energy, and entropic values. The sorption-desorption of the metal ions has made possible the development of a preconcentration and determination method of metal ions at trace level in fuel ethanol. The method of quantitative analysis for Fe, Cu, Ni and Zn in fuel ethanol by Flame AAS was validated. Several parameters have been taken into account and evaluated for the validation of method, namely: linearity, limit of detection, limit of quantification, and the relative standard deviation and accuracy. The accuracy of the method was assessed by testing analyte recovery in the fuel ethanol samples. © 2013 Elsevier B.V.

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A simple procedure for recovering potassium dichromate (K2Cr2O7 ) from treatment of residual sulphochromic solution was proposed in the present work by means of cooling crystallization. The decrease of temperature favored the crystallization of K2Cr2O7 due to the decrease of solubility. 5.0 L of sulphochromic wastes containing 48.08 g L-1 of Cr(VI) were treated and the process of crystallization was performed in three steps until crystals were not formed anymore. On each step the content of Crtotal was determined by flame atomic absorption spectrometry and Cr(VI) by colorimetric method with 1,5- diphenylcarbazide, resulting in the removal of 91% and 92% of Crtotal and Cr(VI), respectively. After the last step, the remaining Cr(VI) in the solution was reduced to Cr(III) from the addition of NaHSO3 , recovering via precipitation in pH 8 approximately 36.13 g of Cr(OH)3 . The final supernatant was discarded since chromium content was below the maximum limit established by the Brazilian legislation for effluents discharge, which corresponds to 0.10 and 1.0 mg L-1 of Cr(VI) and Cr(III), respectively. 628.4 g of K2Cr2O7 were recovered and the salt was characterized by X-ray diffraction and differential thermal analysis. Its applicability was compared to the standard K2Cr2O7 when determining the soil organic matter, in which there was no significant difference, thus inferring that the recovered compound may be incorporated on routine analyses. This recovering process allowed the reuse of K2Cr2O7 , thus reducing costs with the acquisition of new reagents and environmental impacts caused by the inadequate discard of sulphochromic solutions.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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This study had as main objectiveto evaluate the influence of AHS obtained from an area under sugarcane cultivation on the dynamics of chromium species (Cr(III) and Cr(VI)). Was studied complexing capacity (CC) with the AHS of chromium species and these were characterized using UV/Vis spectrophotometry, molecular fluorescence, elemental analysis and infrared. AHS with and without fractionation showed a greater aromaticity degree and a predominance of humic acids, and the E4/E6 and E2/E4 ratios suggested aromatic rings and a greater contribution from plants, which indicates lignin structures. The highest CCs were observed for the AHS fractionated, being fraction with molecular-size < 10 kDa and 10-30 kDa showed the highest ability to complex Cr(III) and Cr(VI) ions, respectively. These results are corroborating with C/H/N and UV/Vis data, where we can conclude that the AHS without fractionation had the greatest aromaticity and a predominance of humic acids in their structure.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Pós-graduação em Ciência e Tecnologia de Materiais - FC

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Zusammenfassung Es wurden im Rahmen dieser Arbeit elementspezifische Wechselwirkungen von Humin-stoffen (HS) untersucht. Grundlage war hierbei die Kopplung eines ICP-MS mit einer HPLC unter Verwendung der Size Exclusion Chromatography (SEC). Durch die Kopplung des empfindlichen und elementspezifischen Massenspektrometers als Detektor mit einer HPLC als chromatographisches Trennverfahren von HS-Spezies konnten Gehalte im natürlichen Konzentrationsbereich und Wechselwirkungen einzelner HS-Fraktionen be-stimmt werden.Zur Gehaltsbestimmung in Echtzeit wurde die online MSIVA (massenspektrometrische Isotopenverdünnungsanalyse) für C angewendet und für die simultane Bestimmung von S und Hg modifiziert. Hierzu wurde ein auf 34S bzw. 201Hg angereicherter Spike verwendet. Mit Hilfe der entwickelten online MSIVA für die simultane Detektion von C, S und Hg konnten Gehalte in chromatographischen Fraktionen mit einer Nachweisgrenze von 3 ng C/s, 0.1 ng S/s und 2 pg Hg/s bestimmt werden.Um die Nachweisstärke und Richtigkeit der Methode zu überprüfen, wurden die C- und S-Gesamtgehalte von HS-Proben bestimmt und mit den elementar-analytischen Daten anderer Arbeitgruppen verglichen. Weiterhin wurde an einer internationalen Laborstudie (IMEP-9) als zertifizierendes Labor teilgenommen. Die in dieser Arbeit erhaltenen Werte für Cr, Pb und U wurden zur Ermittlung der zertifizierten Werte herangezogen und zeigten eine große Übereinstimmung mit den Werten anderer Arbeitgruppen.Nach der Analyse von Gesamtgehalten wurden auch die C- und S-Gehalte in einzelnen Fraktionen von HS nach SEC ermittelt. Hierdurch konnte im Vergleich zur bisher ange-wendeten Elementaranalyse der Gesamtprobe eine Verbesserung bei der Bestimmung des S-Anteils in HS erreicht werden. So ergeben sich Fehler bei der Bestimmung des C/S-Verhältnisses durch anorganisches Sulfat (S-Überbestimmung) sowie durch nieder-molekulare Anteile, die nicht zu den HS gerechnet werden (C-Überbestimmung).Durch die simultane Detektion von Hg konnten die Wechselwirkungen mit HS aufgezeigt werden. Als Bindungsstellen wurden in erster Linie schwefelhaltige Fraktionen identifiziert, wobei S in reduzierter Form (-2) eine weitaus höhere Affinität zu Hg hat. Jedoch konnte auch die Bindung an schwefelfreie Fraktionen nachgewiesen werden. Dies ist für die Untersuchung der Mobilität und Bioverfügbarkeit von Hg in der Umwelt eine wichtige Erkenntnis.Die entwickelte online MSIVA für Schwefel wurde in Zusammenarbeit mit A. Prange und D. Schaumlöffel auf die CE/ICP-MS-Kopplung übertragen. Hierbei musste ein neues Konzept für die Zuführung des isotopenangereicherten Spikes und der Kalibration des Systems entwickelt werden. Mit Hilfe der online MSIVA konnten erstmalig mit CE fraktionierte Metallothioneine aus Leber-Cytosol quantifiziert werden, indem über den S-Gehalt und den Cysteinanteil der Proteingehalt ermittelt wurde.Weiterhin wurde durch Isotopenaustauschversuche erstmalig die kinetische Stabilität von Cr(III)- und Co(III)-Komplexen in mit SEC getrennten Fraktionen nachgewiesen. Analoge Cu(II)- und Co(II)-Komplexe sind hingegen kinetisch labil. Dies ist mit Hilfe der Ligandenfeldstabilisierungsenergie des Übergangszustandes zu er-klären. Bei d3- und d6-Spinsystemen, wie den Cr(III)- und Co(III)-Komplexen, liegt diese Energie deutlich höher als die der d7- und d9-Spinsysteme, wie Cu(II)- und Co(II)-Komplexe. Die höhere Energie-barriere des Übergangzustandes verlangsamt daher die Austausch-geschwin-digkeit, wodurch kinetisch stabile Komplexe entstehen.

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Das Ziel der vorliegenden Arbeit waren die Synthese und Untersuchung von Modellverbindungen zur Sauerstoffaktivierung auf der Basis neuer Ligandensysteme des 1,3,4-Thiadiazols unter Ausarbeitung einer Synthesestrategie zur Derivatisierung der heteroaromatischen 1,3,4-Thiadiazol-Liganden, deren Koordinationsverhalten in Abhängigkeit ihres 2,5-Substitutionsmusters untersucht wurde, sowie die fortführende Bearbeitung bereits bekannter Ligandensysteme zur Erzeugung von homo- und heterovalenten Übergangsmetallkomplexverbindungen.rnDie unter der Verwendung der modifizierten Liganden TPDE, H1TPDP und H1BPMP resultierenden dinuklearen Komplexverbindungen zeigen unterschiedlich starke antiferromagnetische Wechselwirkungen in Abhängigkeit der vorhandenen Brückenliganden. In der Verbindung [Fe6O2(OH)(L´)2(OOCMe3)9(OEt)2] trat eine Fragmentierung des Liganden H1TPDP auf. Das cisoide Ligandensubstitutionsmuster der entstandenen sechskernigen Verbindung ist verantwortlich für die interessanten magnetischen Eigenschaften des Komplexes. rnNeue Perspektiven zur Erzeugung von Modellverbindungen zur Sauerstoffaktivierung wurden mit dem Mono-Chelatliganden H1ETHP und den Bis-Chelatliganden HL2H, H2L2H und H2BATP aufgezeigt. Die Umsetzung von H1ETHP mit verschiedenen Übergangsmetallsalzen resultierte für die Metalle Cr(III), Fe(III), Co(III) und Ni(II) in mononuklearen Verbindungen des Typs [M(ETHP)2]X (X = ClO4, FeCl4, OMe, Cl, Br) sowie in zwei tetranuklearen Verbindungen mit Mn(II) und Cu(II). [Mn4(ETHP)6] besitzt ein propellerförmiges, planares [Mn4O6]2+-System mit einen Spingrundzustand von S = 5. In allen Verbindungen von H1ETHP konnte eine mono-κN-Koordination des 1,3,4-Thiadiazol-Rückgrates über eines seiner beiden endozyklischen Stickstoffdonoratome beobachtet werden. rnAus Umsetzungen der Bis-Chelatliganden wurden fast ausschließlich polynukleare Übergangsmetallkomplexe erhalten. Insbesondere der Ligand H2L2H zeigt eine ausgeprägte Tendenz zur Ausbildung trinuklearer, linearer Komplexe, welche auf Grund ihrer ungeraden Anzahl von Übergangsmetallionen einen Spingrundzustand S ≠ 0 aufweisen.rn Die mit dem Liganden HL2H erhaltenen Verbindungen unterstreichen die hohe Flexibilität dieser Systeme hinsichtlich der Erzeugung polynuklearer und heterovalenter Komplexverbindungen. So konnten in Abhängigkeit vom verwendeten Übergangsmetallsalz trinukleare, pentanukleare, aber auch hepta- und oktanukleare Verbindungen synthetisiert werden. Insbesondere die Komplexe des Mangans und des Cobalts zeigen ein heterovalentes [MnIIMnIII4]- bzw. [CoII2CoIII3]-Motiv, was sich in Spingrundzuständen von S ≠ 0 äußert. Der diamagnetische, achtkernige Fe8-Cluster besitzt eine pseudo C3-symmetrische Anordnung der Metall-Zentren, während für die heptanukleare Cu7-Kette durch ihre stark unterschiedlichen Kupfer-Koordinationsgeometrien interessante magnetische Austauschwechselwirkungen beobachtet werden konnten. Der dreikernige µ3-oxo-verbrückte Komplex des Liganden H2BATP zeigt als interessante strukturelle Eigenschaft ein ein µ3-Verbrückungsmuster des eingesetzten Sulfat-Anions. rnIn allen Komplexen der Bis-Chelatliganden HL2H, H2L2H und H2BATP konnte ein µ2-κN,κN-Koordiantionsmodus des 1,3,4-Thiadiazols und somit eine Abhängigkeit der Verbrückung vom Ligandensubstitutionsmuster beobachtet werden.rn

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Using the radioisotope 51Cr, we investigated the controls of cellular Cr accumulation in an array of marine phytoplankton grown in environmentally relevant Cr concentrations (1–10 nM). Given the affinity of Cr(III) for amorphous Fe-hydroxide mineral surfaces, and the formation of these mineral phases on the outside of phytoplankton cells, extracellular Cr was monitored in a model diatom species (Thalassiosira weissflogii) as extracellular Fe concentrations varied. Extracellular Cr in T. weissflogii increased with increasing extracellular Fe, demonstrating that Cr may be removed from seawater via extracellular adsorption to phytoplankton. Short-term Cr(VI) and Cr(III) uptake experiments performed with T. weissflogii demonstrated that Cr(III) was the primary oxidation state adsorbing to cells and being internalized by them. Cellular Cr:C ratios (<0.5 μmol Cr mol C−1) of the eight phytoplankton species surveyed were significantly lower than previously reported Cr:C ratios in marine particles with a high biogenic component (10–300 μmol Cr mol C−1). This indicates that Cr(III) likely accumulates in marine particles due to uptake and/or adsorption. Mass balance calculations demonstrate that surface water Cr deficits can be explained via loss of Cr(III) to exported particles, thereby providing a mechanism to account for the nutrient depth profile for Cr in modern seawater. Given the large fractionation of stable Cr isotopes during Cr(VI) reduction, Cr(III) associated with exported organic carbon is likely enriched in lighter isotopes. Most sedimentary Cr isotope studies have thus far neglected internal fractionating processes in the marine Cr cycle, but our data indicate that loss of Cr to exported particles may be traced in the sedimentary d53Cr record.

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A novel and environment friendly analytical method is reported for total chromium determination and chromium speciation in water samples, whereby tungsten coil atomic emission spectrometry (WCAES) is combined with in situ ionic liquid formation dispersive liquid–liquid microextraction (in situ IL-DLLME). A two stage multivariate optimization approach has been developed employing a Plackett–Burman design for screening and selection of the significant factor involved in the in situ IL-DLLME procedure, which was later optimized by means of a circumscribed central composite design. The optimum conditions were complexant concentration: 0.5% (or 0.1%); complexant type: DDTC; IL anion: View the MathML sourcePF6−; [Hmim][Cl] IL amount: 60 mg; ionic strength: 0% NaCl; pH: 5 (or 2); centrifugation time: 10 min; and centrifugation speed: 1000 rpm. Under the optimized experimental conditions the method was evaluated and proper linearity was obtained with a correlation coefficient of 0.991 (5 calibration standards). Limits of detection and quantification for both chromium species were 3 and 10 µg L−1, respectively. This is a 233-fold improvement when compared with chromium determination by WCAES without using preconcentration. The repeatability of the proposed method was evaluated at two different spiking levels (10 and 50 µg L−1) obtaining coefficients of variation of 11.4% and 3.6% (n=3), respectively. A certified reference material (SRM-1643e NIST) was analyzed in order to determine the accuracy of the method for total chromium determination and 112.3% and 2.5 µg L−1 were the recovery (trueness) and standard deviation values, respectively. Tap, bottled mineral and natural mineral water samples were analyzed at 60 µg L−1 spiking level of total Cr content at two Cr(VI)/Cr(III) ratios, and relative recovery values ranged between 88% and 112% showing that the matrix has a negligible effect. To our knowledge, this is the first time that combines in situ IL-DLLME and WCAES.