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Evaluation of sampling devices for the determination of polycyclic aromatic hydrocarbons in surface microlayer coastal waters

机译:用于测定表层微层沿海水域中多环芳烃的取样装置的评价

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摘要

The sea surface microlayer (SML) may play an important role on the transport and fate of persistent organic pollutants in the marine environment. In order to evaluate the appropriateness of a number of sampling devices for the analysis of 14 parent polycyclic aromatic hydrocarbons (3-5 aromatic rings), marine SML waters were sampled using a glass plate, a rotating drum/roller, a metal screen and a surface slick sampler. The underlying waters were also sampled for the determination of the corresponding enrichment factors (EF = [C]_(microlayer)/[C]_(underlying water)). The EFs were phase dependent, ranging from 1 to 3 for the dissolved phase and between 4 and 7 for the particulate phase. In order to better assess the performance of the different sampling methods, in terms of phase partitioning, the truly dissolved and colloidal phases were also estimated. Generally, no significant differences were found for the enrichment factors provided by the different methods, due to the observed large variability in concentrations that can be attributed to small-scale coastal processes. However, the metal screen is recommended as the most efficient sampling method for the study of PAHs taking into account the amount of water collected versus time.
机译:海面微层(SML)可能对海洋环境中持久性有机污染物的运输和命运起重要作用。为了评估用于分析14种母体多环芳烃(3-5个芳环)的许多采样设备的适用性,使用玻璃板,转鼓/滚筒,金属筛网和表面光滑的采样器。还对下面的水取样以测定相应的富集因子(EF = [C] _(微层)/ [C] _(下层水))。 EF与相位有关,溶解相的范围为1至3,颗粒相的范围为4至7。为了更好地评估不同采样方法的性能,在相分配方面,还估算了真正的溶解相和胶体相。通常,由于观察到的可归因于小型沿海过程的浓度差异较大,因此使用不同方法提供的富集因子没有发现显着差异。但是,考虑到收集的水量与时间的关系,建议使用金属筛网作为研究PAH的最有效的采样方法。

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