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Analysis of organic pollutants in water at trace levels using fully automated solid-phase extraction coupled to high-performance liquid chromatography
Authors:T. Renner  D. Baumgarten  K. K. Unger
Affiliation:1. Hessische Landesanstalt für Umwelt, Dez. III/2, P.O. Box 3209, 65022, Wiesbaden, Germany
2. Institut für Anorganische Chemie und Analytische Chemie, Johannes-Gutenberg Universit?t, 55099, Mainz, Germany
Abstract:Summary A method has been developed for the determination of trace levels of 32 pesticides, 19 explosives and 16 polycyclic aromatic hydrocarbons (PAH) in water in three individual steps. Solid-phase enrichment (SPE) is coupled to high-performance liquid chromatography (HPLC) with a fully automated system. The organic pollutants are enriched on reusable cartridges packed with adsorbent materials: pesticides and explosives on a mixed bed of divinylbenzene-ethylvinylbenzene copolymers (LiChrolut EN?) and perfluorinated polyethylene (PolyF?), and polycyclic aromatic hydrocarbons on C18-modified silica (Zorbax? ODS1). Thermally assisted desorption (TAD) has been shown to increase the recovery of analytes significantly. As all enriched analytes are transferred to the detector, only fifty millilitres of sample is needed for each single on-line analysis, compared with at least a litre for conventional methods. The separation of the enriched organic analytes is performed on specialized HPLC columns based on reversed-phase materials. The limits of detection of the system employed were found to be below 100 ng L−1. Use of fluorescence detection for the polycyclic aromatic hydrocarbons resulted in limits of detection in the upper pg L−1 range. Thek values, number of theoretical plates, the recovery rates and the limits of detection of this method for fast screening of organic pollutants from three fifty-millilitre aqueous samples are described. Presented at the 21st ISC held in Stuttgart, Germany, 15th–20th September, 1996
Keywords:Column liquid chromatography  Environmental trace analysis  Solid-phase extraction  Pesticides  Explosives  Polycyclic aromatic hydrocarbons  Thermally assisted desorption
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