Simultaneous measurement of free and total concentrations of hydrophobic compounds.

Environ Sci Technol

Department of Environmental Sciences, University of California, Riverside, California 92521, USA.

Published: May 2009

Hydrophobic contaminants partition between water and sorbent phases such as dissolved organic matter (DOM) in environmental matrices. Consideration of bioavailability increasingly requires the measurement of freely dissolved concentration (Cfree) in addition to the total chemical concentration (Ctotal). However, current practices require the use of separate methods and samples to derive Cfee and Ctotal, and no method affords simultaneous measurementof both concentrations. We employed a method by coupling solid-phase microextraction (SPME) with the use of an isotope-labeled internal standard and gas chromatography-mass spectrometer (GC-MS) for detection. The method was demonstrated using 8 pyrethroids as model compounds and 13C-cis-permethrin as the labeled internal standard. Analysis of 4 spiked sediment porewater and 4 field-contaminated samples showed that Ctotal obtained by this method was in close agreementwith the spiked concentrations or the total concentrations measured after whole-sample solvent extraction, while Cfree was only a small fraction of Ctotal, suggesting pronounced association of these compounds with DOM. The method displayed good reproducibility with average relative standard deviation <20%, and high sensitivity with method detection limits in the range of 1-5 ng L(-1). The method uses a small sample volume (<20 mL, as opposed to 1 L for conventional analysis), and is solventless and fast. The concurrent measurements also allow for estimation of K(DOC), a key parameter that is difficult to derive otherwise. The simultaneous determination of Cfree and Ctotal provides information for better relating chemical concentrations with potential ecotoxicological effects.

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http://dx.doi.org/10.1021/es8037033DOI Listing

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