The role of atomic fluorescence spectrometry in the automatic environmental monitoring of trace element analysis

Considerable attention has been drawn to the environmental levels of mercury, arsenic, selenium and antimony in the last decade. Legislative and environmental pressure has forced levels to be lowered and this has created an additional burden for analytical chemists. Not only does an analysis have to...

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Veröffentlicht in:Journal of analytical methods in chemistry 1993, Vol.15 (3), p.79-84
Hauptverfasser: STOCKWELL, P. B, CORNS, W. T
Format: Artikel
Sprache:eng
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Zusammenfassung:Considerable attention has been drawn to the environmental levels of mercury, arsenic, selenium and antimony in the last decade. Legislative and environmental pressure has forced levels to be lowered and this has created an additional burden for analytical chemists. Not only does an analysis have to reach lower detection levels, but it also has to be seen to be correct. Atomic fluorescence detection, especially when coupled to vapour generation techniques, offers both sensitivity and specificity.Developments in the design of specified atomic fluorescence detectors for mercury, for the hydride-forming elements and also for cadmium, are described in this paper. Each of these systems is capable of analysing samples in the part per trillion (ppt) range reliably and economically. Several analytical applications are described.
ISSN:0142-0453
2090-8865
2090-8873
DOI:10.1155/S1463924693000136