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加拿大基蒂马特港表层海洋沉积物中多环芳烃污染物的组成与分布。

Composition and distribution of polycyclic aromatic hydrocarbon contamination in surficial marine sediments from Kitimat Harbor, Canada.

作者信息

Simpson C D, Mosi A A, Cullen W R, Reimer K J

机构信息

Chemistry Department, University of British Columbia, Vancouver, BC, Canada.

出版信息

Sci Total Environ. 1996 Mar 29;181(3):265-78. doi: 10.1016/0048-9697(95)05026-4.

Abstract

Surficial marine sediments from 20 sites within the Kitimat fjord system were analyzed for polycylic aromatic hydrocarbons (PAHs). Levels of the sum of the 16 USEPA priority pollutant PAHs varied from below detection limits (ca. 1 microg x g-1) to over 10 000 microg x g-1. Sediment PAH levels were highest in the immediate vicinity of a large aluminum smelter at the head of Kitimat Arm, and declined rapidly with increasing distance from the smelter. However, even at some of the more distant sites which are geographically isolated from the smelter PAH levels were elevated. The PAH distribution in the fjord system is consistent with a combination of aeolian and fluvial transport of PAHs emitted by the aluminum smelter at the head of Kitimat Arm. The mixture of PAHs present was qualitatively similar in all samples analyzed, including those from the distant sites. All aspects of the PAH composition are consistent with combustion generated PAHs. A correlation between PAH levels and sediment organic carbon was observed; however, this was only significant for highly contaminated sites in the harbor. This probably reflects the high organic content of particulate emissions from the smelter, rather than equilibrium partitioning of PAHs to sediment organic carbon within the harbor itself.

摘要

对基蒂马特峡湾系统内20个地点的表层海洋沉积物进行了多环芳烃(PAHs)分析。16种美国环境保护局优先污染物多环芳烃的总量水平从低于检测限(约1微克×克⁻¹)到超过10000微克×克⁻¹不等。沉积物中的多环芳烃水平在基蒂马特湾顶端的一家大型铝冶炼厂附近最高,并随着与冶炼厂距离的增加而迅速下降。然而,即使在一些与冶炼厂地理隔离的较远地点,多环芳烃水平也有所升高。峡湾系统中的多环芳烃分布与基蒂马特湾顶端铝冶炼厂排放的多环芳烃通过风力和河流输送的情况相符。在所有分析的样本中,包括来自远处地点的样本,多环芳烃的混合在质量上是相似的。多环芳烃组成的各个方面都与燃烧产生的多环芳烃一致。观察到多环芳烃水平与沉积物有机碳之间存在相关性;然而,这仅在港口高度污染的地点显著。这可能反映了冶炼厂颗粒物排放的高有机含量,而不是港口内多环芳烃与沉积物有机碳的平衡分配。

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