Title of article :
Trace metals analysis in estuarine and seawater by ICP-MS using on line preconcentration and matrix elimination with chelating resin
Author/Authors :
Nicola??، نويسنده , , M. and Rosin، نويسنده , , C. and Tousset، نويسنده , , N. and Nicolai، نويسنده , , Y.، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 1999
Pages :
12
From page :
433
To page :
444
Abstract :
The main difficulties of trace metals analysis in estuarine and seawater stem from their very low concentration (μg/l to sub-μg/l), and, by contrast, the high salt content (up to 38 g/l in the Mediterranean Sea). ICP-MS allows multi-elemental analysis and offers great sensitivity, but may be strongly affected by matrix effects induced by high salt contents (> 1 g/l). To perform trace metals analysis both in riverine, estuarine and seawater, we have developed a hyphenated method: ion chelation chromatography coupled on-line with ICP-MS. Iminodiacetate resin, Metpac CC-1 (Dionex), was used to concentrate most of the trace metals, and to separate them from alkaline and alkaline-earth metals. Behaviour of 17 elements (Pb, Cu, Cd, Ni, U, Cr, Mn, Al, Co, Ga, In, Zn, V, Tl, Bi, Ag and Sn) towards the resin was qualitatively investigated. A method validation, partly derived from AFNOR standard XPT 90-210, was carried out on 12 elements (Pb, Cu, Cd, Ni, U, Cr, Mn, Al, Co, Ga, Bi and In). Replicate measurements of multi-elemental standard solutions were used to check linearity, and to determine repeatability and detection limits. Method accuracy was then assessed by analysing two certified materials: a synthetic freshwater (SRM 1643d), and a natural filtered coastal seawater (NRCC CASS-3). An application assay of natural samples from the Rhône river (France) was eventually carried out, and the analytical results were found to be consistent with previous works.
Keywords :
Seawater , Chelating resin , Metals , ICP-MS
Journal title :
Talanta
Serial Year :
1999
Journal title :
Talanta
Record number :
1639426
Link To Document :
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