Great Lakes Institute for Environmental Research, University of Windsor, Windsor, ON, Canada N9B 3P4.
Chemosphere. 2013 Jan;90(1):95-102. doi: 10.1016/j.chemosphere.2012.08.007. Epub 2012 Sep 5.
An assessment of polychlorinated biphenyls (PCBs) in water of the Detroit River, North America, was performed using mussel biomonitoring data generated between 1996 and 2010. The study included a temporal monitoring program at six locations and an enhanced spatial survey performed during 2002. Mussels were transplanted at biomonitoring stations and collected after 21-226 d. A toxicokinetic model was used to perform steady state and control corrections followed by an equilibrium partitioning model to estimate bioavailable water concentrations of PCBs. Bioavailable water concentrations of PCBs were similar in magnitude and trends to dissolved water concentrations reported in previous studies using direct sampling approaches. PCB concentrations exhibited complex temporal patterns at the six biomonitoring stations with multi-year declines in PCB trajectories between 1996 and 2002 and less consistent trends occurring across stations in later years. Spatial patterns of PCBs during 2002 revealed significantly higher water contamination on the US side of the river (seasonal average mean ± standard error (SE) sum PCB concentration of 0.63 ± 0.11 ng L(-1)) compared to the Canadian side (mean ± SE sum PCB concentration of 0.09 ± 0.01 ng L(-1)). Spatial/temporal variability of bioavailable PCB concentrations was greatest between countries, followed by moderate variation across years and by river reach (upstream, midstream and downstream sections within a country) and lowest when comparing intra-seasonal variation.
采用贻贝生物监测数据对北美底特律河水中的多氯联苯(PCBs)进行了评估,这些数据是在 1996 年至 2010 年期间生成的。该研究包括在六个地点进行的时间监测计划和在 2002 年进行的增强空间调查。贻贝在生物监测站中进行移植,并在 21-226 天后收集。使用毒代动力学模型进行稳态和对照校正,然后使用平衡分配模型来估算 PCBs 的生物有效水浓度。PCBs 的生物有效水浓度在数量级和趋势上与先前使用直接采样方法的研究中报告的溶解水浓度相似。在六个生物监测站,PCBs 浓度表现出复杂的时间模式,1996 年至 2002 年间 PCB 轨迹呈多年下降趋势,而在随后的几年中,各站的趋势不一致。2002 年期间 PCBs 的空间模式显示,河的美加两岸的水污染程度存在显著差异(美国一侧的季节性平均浓度为 0.63 ± 0.11ng/L,平均值 ± 标准误差),而加拿大一侧为 0.09 ± 0.01ng/L)。生物有效 PCB 浓度的空间/时间变异性在国家之间最大,其次是多年间的中度变化,然后是河流流域(一个国家内的上游、中游和下游部分),而在季节内变化时最低。