| Literature DB >> 18597813 |
Ze-Yu Yang1, Keith A Maruya2, Darrin Greenstein2, David Tsukada2, Eddy Y Zeng3.
Abstract
To verify a theoretical mass balance and multiple compartment partitioning model developed to predict freely dissolved concentrations (FDCs) of hydrophobic organic chemicals (HOCs) using negligible depletion-solid phase microextraction (nd-SPME), a series of sediment slurry experiments were performed using disposable poly(dimethyl)siloxane (PDMS) coated-SPME fibers and (14)C-radiolabeled HOC analogs. First, pre-calibration of disposable PDMS coated fibers for four model compounds (phenanthrene, PCB 52, PCB 153 and p,p'-DDE) with good precision (<or=10%) was achieved. Second, sediment slurries spiked and aged with the radiolabeled analogs were extracted by SPME with manipulation of the sediment slurry mass (m(s)) or the PDMS coating volume (V(f)). The measured extent of depletion by SPME (x(e)) decreased with increasing sediment mass (m(s)); conversely, x(e) increased with increasing V(f), which is consistent with the theoretical prediction from our previous model [Yang, Z.-Y., Zeng, E.Y., Maruya, K.A., Mai, B.-X., Ran, Y., 2007b. Predicting organic contaminant concentrations in sediment porewater using solid-phase microextraction. Chemosphere 66, 1408-1414]. Moreover, the SPME-measured FDCs (C(pw,SPME)) followed the order of phenanthrene>PCB 52>PCB 153, and the measured and predicted C(pw) values were not substantially different from empirically determined values except for p,p'-DDE.Entities:
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Year: 2008 PMID: 18597813 DOI: 10.1016/j.chemosphere.2008.05.028
Source DB: PubMed Journal: Chemosphere ISSN: 0045-6535 Impact factor: 7.086