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Multielement Determination of Trace Elements in Seawater by Inductively Coupled Plasma Mass Spectrometry after Tandem Preconcentration with Cooperation of Chelating Resin Adsorption and Lanthanum Coprecipitation
36
Citations
19
References
2001
Year
EngineeringChelating ResinMarine ChemistryEnvironmental ChemistryChemical EngineeringEnvironmental Analytical ChemistryMarine PollutionAnalytical ChemistryMultielement DeterminationElemental CharacterizationTrace ElementChemical OceanographyResin AdsorptionWater QualityChelating Resin AdsorptionWater AnalysisEstuarine GeochemistryEnvironmental EngineeringMass SpectrometryEnvironmental RemediationMarine MaterialsEnvironmental ToxicologyCoastal GeochemistryTrace Elements
Abstract A tandem preconcentration method, in which chelating resin adsorption and La coprecipitation were cooperatively employed for preconcentration, was developed as a pretreatment method for simultaneous multielement determination of trace elements in seawater by ICP-MS. First, the seawater sample (250 ml) was treated with a chelating resin for preconcentration of trace elements, and then trace elements with good recoveries were determined by ICP-MS. Trace elements with the chemical properties of oxoanion- and hydride-formation, which were poorly recovered in the chelating resin preconcentration, were further subjected to preconcentration by La coprecipitation. As a result, more than 30 elements could be determined in the concentration range from 9.6 μg L-1 for Mo to 0.00018 μg L-1 for Tm, when the present tandem method was applied to the analysis of open seawater standard reference material (NASS-4). Furthermore, the analytical results for open seawater reference materials were compared with those for coastal seawater reference material as well as for coastal seawater collected in the Ise Bay. It was found that the multielement data for trace elements in these seawater samples clearly showed different elemental distributions, reflecting the different marine environments.
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