INTERACTION BETWEEN ZINC AND FRESHWATER AND MARINE DIATOM SPECIES: SURFACE COMPLEXATION AND ZN ISOTOPE FRACTIONATION

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dc.contributor.author Gelabert A.
dc.contributor.author Pokrovsky O.S.
dc.contributor.author Viers J.
dc.contributor.author Schott J.
dc.contributor.author Boudou A.
dc.contributor.author Feurtet-Mazel A.
dc.date.accessioned 2024-05-11T04:45:10Z
dc.date.available 2024-05-11T04:45:10Z
dc.date.issued 2006
dc.identifier https://elibrary.ru/item.asp?id=12091925
dc.identifier.citation Geochimica et Cosmochimica Acta, 2006, 70, 4, 839-857
dc.identifier.issn 0016-7037
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/43923
dc.description.abstract This work is devoted to characterization of zinc interaction in aqueous solution with two marine planktonic (Thalassiosira weissflogii = TW, Skeletonema costatum = SC) and two freshwater periphytic species (Achnanthidium minutissimum = AMIN, Navicula minima = NMIN) by combining adsorption and electrophoretic measurements with surface complexation modeling and by assessing Zn isotopes fractionation during both long term uptake and short term adsorption on diatom cells and their frustules. Reversible adsorption experiments were performed at 25 and 5 °C as a function of exposure time (5 min to 140 h), pH (2 to 10), zinc concentration in solution (10 nM to 1 mM), ionic strength (I = 0.001 to 1.0 M) and the presence of light. While the shape of pH-dependent adsorption edge is almost the same for all four species, the constant-pH adsorption isotherm and maximal Zn binding capacities differ by an order of magnitude. The extent of adsorption increases with temperature from 5 to 25 °C and does not depend on light intensity. Zinc adsorption decreases with increase of ionic strength suggesting competition with sodium for surface sites. Cell number-normalized concentrations of sorbed zinc on whole cells and their silica frustules demonstrated only weak contribution of the latter (10-20%) to overall zinc binding by diatom cell wall. Measurements of electrophoretic mobilities (?) revealed negative diatoms surface potential in the full range of zinc concentrations investigated (0.15-760 ?mol/L), however, the absolute value of ? decreases at [Zn] > 15 ?mol/L suggesting a change in surface speciation. These observations allowed us to construct a surface complexation model for Zn binding by diatom surfaces that postulates the constant capacitance of the electric double layer and considers Zn complexation with carboxylate and silanol groups. Thermodynamic and structural parameters of this model are based on previous acid-base titration and spectroscopic results and allow quantitative reproduction of all adsorption experiments. Although Zn adsorption constants on carboxylate groups are almost the same, Zn surface adsorption capacities are very different among diatom species which is related to the systematic differences in their cell wall composition and thickness. Measurements of Zn isotopic composition (66Zn/(64Zn)) performed using a multicollector ICP MS demonstrated that irreversible incorporation of Zn in cultured diatom cells produces enrichment in heavy isotope compared to growth media (?66Zn(solid-solution) = 0.27 ? 0.05, 0.08 ? 0.05, 0.21 ? 0.05, and 0.19 ? 0.05? for TW, SC, NMIN, and AMIN species, respectively). Accordingly, an enrichment of cells in heavy isotopes (?66 Zn(solid-solution) = 0.43 ? 0.1 and 0.27 ? 0.1? for NMIN and AMIN, respectively) is observed following short-term Zn sorption on freshwater cells in nutrient media at pH ? 7.8. Finally, diatoms frustules are enriched in heavy isotopes compared to solution during Zn adsorption on silica shells at pH ? 5.5 (?66Zn(solid-solution) = 0.35 ? 0.10?). Measured isotopes fractionation can be related to the structure and stability of Zn complexes formed and they provide a firm basis for using Zn isotopes for biogeochemical tracing. ? 2005 Elsevier Inc. All rights reserved.
dc.subject DIATOM
dc.subject ISOTOPIC FRACTIONATION
dc.subject ZINC
dc.subject ACHNANTHIDIUM MINUTISSIMUM
dc.subject BACILLARIOPHYTA
dc.subject NAVICULA MINIMA
dc.subject NITZSCHIA ALBA
dc.subject SKELETONEMA COSTATUM
dc.subject THALASSIOSIRA WEISSFLOGII
dc.title INTERACTION BETWEEN ZINC AND FRESHWATER AND MARINE DIATOM SPECIES: SURFACE COMPLEXATION AND ZN ISOTOPE FRACTIONATION
dc.type Статья
dc.identifier.doi 10.1016/j.gca.2005.10.026


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