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Vertical Flux and Particulate/Water Dynamics of Polychlorinated Biphenyls (PCBs) in the Open Baltic Sea

机译:波罗的海中的多氯联苯(PCB)的垂直通量和颗粒/水动力学

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摘要

Concentrations of PCBs in water (dissolved), suspended particles (SPM), sediment trap material, and sediments in the Baltic Sea are discussed in relation to the dynamics of organic carbon and lipids as the sorbing matrices. Both carbon- and lipid-normalized concentrations of PCBs in SPM increase during the sedimentation giving rise to an increase in observed log Koc with more that one order of magnitude for most of the studied PCBs. It appears that hydrophobic organic compounds (HOCs) are retained within the settling particles while the organic carbon and the lipids are degraded, rather than there being a continuous uptake of PCBs during settling. However, the explanation for the high concentration maintained in the sediments over long time periods, must be an increasing capability of the organic matrix to sorb HOCs during the ageing process. The results are of importance for current models of the fate of HOCs in the environment and imply that the use of a single equation to estimate equilibrium concentrations of HOCs in SPM may significantly under-estimate concentrations in settling particles.
机译:讨论了波罗的海中水(溶解的),悬浮颗粒(SPM),沉积物捕集材料和沉积物中PCBs的浓度与有机碳和脂质作为吸附基质的动力学有关。在沉积过程中,SPM中多氯联苯的碳和脂质归一化浓度均增加,导致观察到的log K oc 的增加,对于大多数研究的多氯联苯而言,其增加量超过一个数量级。似乎疏水有机化合物(HOC)保留在沉降颗粒中,而有机碳和脂质降解,而不是在沉降过程中不断吸收PCB。但是,对于沉积物长时间保持高浓度的解释,必须是在老化过程中有机基质吸收HOC的能力增强。该结果对于环境中HOC的当前模型具有重要意义,并且暗示使用单个方程式估算SPM中HOC的平衡浓度可能会大大低估沉降颗粒中的浓度。

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    《AMBIO: A Journal of the Human Environment》 |2000年第4期|210-216|共7页
  • 作者单位

    Johan Axelman is a research scientist at the Applied Environmental Research, Stockholm University. His main research interest is the environmental fate of organic contaminants. E-mail: johan.axelman@itm.su.se;

    Dag Broman is a professor in Aquatic Ecotoxicology at the Institute of Applied Environmental Research, Stockholm University. His research covers toxicology, bioavailability and fate of organic contaminants. E-mail: dag.broman@itm.su.se;

    Carina N?f is currently an environmental consultant at Jacobson and Widmark Energy and Environment, Sweden. Her research has covered environmental chemistry of organic contaminants. Her address: J&W Energy and Environment, Stj?rnv. 2, SE-181 83 Liding?, Sweden. E-mail: carina.naf@jw.se;

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