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采用性能参考化合物校正的聚乙烯被动采样器和笼养双壳贝类来测量城市沿海海水中的疏水性关注污染物。

Using performance reference compound-corrected polyethylene passive samplers and caged bivalves to measure hydrophobic contaminants of concern in urban coastal seawaters.

机构信息

University of Southern California, Los Angeles, CA, United States.

Loyola Marymount University, Los Angeles, CA, United States.

出版信息

Chemosphere. 2015 May;127:10-7. doi: 10.1016/j.chemosphere.2014.12.067. Epub 2015 Jan 19.

Abstract

Low-density polyethylene (PE) passive samplers containing performance reference compounds (PRCs) were deployed at multiple depths in two urban coastal marine locations to estimate dissolved concentrations of hydrophobic organic contaminants (HOCs), including dichlorodiphenyltrichloroethane (DDT) and its metabolites, polychlorinated biphenyl (PCB) congeners, and polybrominated flame retardants. PE samplers pre-loaded with PRCs were deployed at the surface, mid-column, and near bottom at sites representing the nearshore continental shelf off southern California (Santa Monica Bay, USA) and a mega commercial port (Los Angeles Harbor). After correcting for fractional equilibration using PRCs, concentrations ranged up to 100 pg L(-1) for PCBs and polybrominated diphenyl ethers (PBDEs), 500 pg L(-1) for DDMU and 300 pg L(-1) for DDNU, and to 1000 pg L(-1) for p,p'-DDE. Seawater concentrations of DDTs and PCBs increased with depth, suggesting that bed sediments serve as the source of water column HOCs in Santa Monica Bay. In contrast, no discernable pattern between surface and near-bottom concentrations in Los Angeles Harbor was observed, which were also several-fold lower (DDTs: 45-300 pg L(-1), PCBs: 5-50 pg L(-1)) than those in Santa Monica Bay (DDTs: 2-1100 pg L(-1), PCBs: 2-250 pg L(-1)). Accumulation by mussels co-deployed with the PE samplers at select sites was strongly correlated with PE-estimated seawater concentrations, providing further evidence that these samplers are a viable alternative for monitoring of HOC exposure. Fractional equilibration observed with the PRCs increased with decreasing PRC molar volume indicating the importance of target compound physicochemical properties when estimating water column concentrations using passive samplers in situ.

摘要

低密度聚乙烯 (PE) 被动采样器中含有性能参考化合物 (PRC),被部署在两个城市沿海海域的多个深度,以估计疏水性有机污染物 (HOC) 的溶解浓度,包括滴滴涕 (DDT) 及其代谢物、多氯联苯 (PCB) 同系物和多溴阻燃剂。在代表南加州近岸大陆架 (美国圣莫尼卡湾) 和大型商业港口 (洛杉矶港) 的两个地点,用 PRC 预加载的 PE 采样器在表面、中柱和近底部部署。使用 PRC 对部分平衡进行校正后,浓度范围高达 100 pg/L 用于 PCB 和多溴二苯醚 (PBDE)、500 pg/L 用于 DDMU 和 300 pg/L 用于 DDNU、1000 pg/L 用于 p,p'-DDE。圣莫尼卡湾海水中 DDTs 和 PCBs 的浓度随深度增加而增加,表明底泥是海水中 HOCs 的来源。相比之下,在洛杉矶港没有观察到表面和近底浓度之间的明显模式,其浓度也低几个数量级 (DDTs: 45-300 pg/L、PCBs: 5-50 pg/L),明显低于圣莫尼卡湾 (DDTs: 2-1100 pg/L、PCBs: 2-250 pg/L)。在选定地点与 PE 采样器共同部署的贻贝的积累与 PE 估计的海水浓度强烈相关,进一步证明这些采样器是监测 HOC 暴露的可行替代方法。与 PRC 观察到的部分平衡随 PRC 摩尔体积的减小而增加,这表明在使用原位被动采样器估计水柱浓度时,目标化合物物理化学性质的重要性。

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