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Accumulation of polycyclic aromatic hydrocarbons by Neocalanus copepods in Port Valdez, Alaska

机译:Neocalanus copepods在阿拉斯加的瓦尔迪兹港积累多环芳烃

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Sampling zooplankton is a useful strategy for observing trace hydrocarbon concentrations in water because samples represent an integrated average over a considerable effective sampling volume and are more representative of the sampled environment than discretely collected water samples. We demonstrate this method in Port Valdez, Alaska, an approximately 100 km~2 basin that receives about 0.5-2.4 kg of polynuclear aromatic hydrocarbons (PAH) per day. Total PAH (TPAH) concentrations (0.61-1.31 μg/g dry weight), composition, and spatial distributions in a lipid-rich copepod, Neocalanus were consistent with the discharge as the source of contamination. Although Neocalanus acquire PAH from water or suspended particulate matter, total PAH concentrations in these compartments were at or below method detection limits, demonstrating plankton can amplify trace concentrations to detectable levels useful for study.
机译:浮游动物采样是观察水中痕量碳氢化合物浓度的有用策略,因为样品代表了相当大有效采样量的积分平均值,并且比离散采集的水样更能代表采样环境。我们在阿拉斯加的瓦尔迪兹港(Port Valdez)演示了这种方法,该盆地约100 km〜2盆地,每天接收约0.5-2.4 kg多核芳香烃(PAH)。富含脂质的co足类新足藻的总PAH(TPAH)浓度(0.61-1.31μg/ g干重),组成和空间分布与排放物为污染源一致。尽管Neocalanus从水中或悬浮的颗粒物中获取PAH,但这些隔室中的PAH总浓度等于或低于方法检测极限,这表明浮游生物可以将痕量浓度放大到可检测的水平,对研究有用。

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