Dissolved Organic Matter Enhances Transport of PAHs to Aquatic Organisms
Thomas L. ter Laak, Martin A. ter Bekke, Joop L. M. Hermens
Abstract
Thomas L. ter Laak, Martin A. ter Bekke, Joop L. M. Hermens
Abstract
In this study, the uptake of pyrene and benzo[b]fluoranthene by an aquatic worm ( Lumbriculus variegatus ) and a poly(dimethylsiloxane) coated glass fiber was studied at different humic acid concentrations. The accumulation of pyrene was not affected by the presence of the humic matrix. However, the accumulation rate of benzo[b]fluoranthene increased a factor of 3 for the fiber and a factor of 4 when 55 mg L −1 dissolved organic carbon was added in the form of humic acid. The difference between the two chemicals can be explained by the higher affinity of benzo[b]fluoranthene for the dissolved humic material. A comparison of modeled transport enhancement of benzo[b]fluoranthene by humic acid and the experimental results suggested that the benzo[b]fluoranthene complexed with the humic phase was not completely labile.
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In this study, the uptake of pyrene and benzo[b]fluoranthene by an aquatic worm ( Lumbriculus variegatus ) and a poly(dimethylsiloxane) coated glass fiber was studied at different humic acid concentrations. The accumulation of pyrene was not affected by the presence of the humic matrix. However, the accumulation rate of benzo[b]fluoranthene increased a factor of 3 for the fiber and a factor of 4 when 55 mg L −1 dissolved organic carbon was added in the form of humic acid. The difference between the two chemicals can be explained by the higher affinity of benzo[b]fluoranthene for the dissolved humic material. A comparison of modeled transport enhancement of benzo[b]fluoranthene by humic acid and the experimental results suggested that the benzo[b]fluoranthene complexed with the humic phase was not completely labile.
Key concepts: Fluoranthene, Pyrene, Humic acid, Chemistry, Dissolved organic carbon, Environmental chemistry, Organic matter, Organic chemistry