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Potential for Plastics to Transport Hydrophobic Contaminants

机译:塑料运输疏水污染物的潜力

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Plastic debris litters marine and terrestrial habitats worldwide. It is ingested by numerous species of animals, causing deleterious physical effects. High concentrations of hydrophobic organic contaminants have also been measured on plastic debris collected from the environment, but the fate of these contaminants is poorly understood. Here, we examine the uptake and subsequent release of phenanthrene by three plastics. Equilibrium distribution coefficients for sorption of phenanthrene from seawater onto the plastics varied by more than an order of magnitude (polyethylene polypropylene > polyvinyl chloride (PVC)). In all cases, sorption to plastics greatly exceeded sorption to two natural sediments. Desorption rates of phenanthrene from the plastics or sediments back into solution spanned several orders of magnitude. As expected, desorption occurred more rapidly from the sediments than from the plastics. Using the equilibrium partitioning method, the effects of adding very small quantities of plastic with sorbed phenanthrene to sediment inhabited by the lugworm (Arenicola marina) were evaluated. We estimate that the addition of as little as 1 μ g of contaminated polyethylene to a gram of sediment would give a significant increase in phenanthrene accumulation by A. marina. Thus, plastics may be important agents in the transport of hydrophobic contaminants to sediment-dwelling organisms.
机译:塑料碎片在全世界的海洋和陆地栖息地中乱扔垃圾。它被多种动物所摄入,造成有害的物理影响。在从环境中收集的塑料碎片上也测得了高浓度的疏水性有机污染物,但对这些污染物的命运知之甚少。在这里,我们检查了三种塑料对菲的吸收和释放。菲从海水中吸附到塑料上的平衡分配系数变化幅度超过一个数量级(聚乙烯聚丙烯>聚氯乙烯(PVC))。在所有情况下,对塑料的吸附都大大超过了对两种天然沉积物的吸附。菲从塑料或沉淀物中解吸回溶液的速度跨越了几个数量级。不出所料,与塑料相比,沉积物中的脱附发生得更快。使用平衡分配方法,评估了在lu虫(Arenicola marina)居住的沉积物中添加少量塑料和吸附菲的效果。我们估计,每克沉积物中仅添加1μg受污染的聚乙烯,就会大大增加滨海假单胞菌的菲积累量。因此,塑料可能是将疏水性污染物输送到居住在沉积物中的生物的重要物质。

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