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雨水径流中锌对水生态系统的生态风险评价

Ecological risk assessment of zinc from stormwater runoff to an aquatic ecosystem.

机构信息

EcoTox, Key Biscayne, Florida 33149, USA.

出版信息

Sci Total Environ. 2010 Mar 15;408(8):1824-32. doi: 10.1016/j.scitotenv.2009.12.004. Epub 2009 Dec 24.

DOI:10.1016/j.scitotenv.2009.12.004
PMID:20035970
Abstract

Zinc (Zn) risks from stormwater runoff to an aquatic ecosystem were studied. Monitoring data on waterborne, porewater, and sediment Zn concentrations collected at 20 stations throughout a stormwater collection/detention facility consisting of forested wetlands, a retention pond and first order stream were used to conduct the assessment. Bioavailability in the water column was estimated using biotic ligand models for invertebrates and fish while bioavailability in the sediment was assessed using acid volatile sulfide-simultaneously extracted metal (AVS-SEM). The screening level assessment indicated no significant risks were posed to benthic organisms from Zn concentrations in sediments and pore water. As would be expected for stormwater, Zn concentrations were temporally quite variable within a storm event, varying by factors of 2 to 4. Overall, probabilistic assessment indicated low (5-10% of species affected) to negligible risks in the system, especially at the discharge to the first order stream. Moderate to high risks (10-50% of species affected) were identified at sampling locations most upgradient in the collection system. The largest uncertainty with the assessment is associated with how best to estimate chronic exposure/risks from time-varying exposure concentrations. Further research on pulse exposure metal toxicity is clearly needed to assess stormwater impacts on the environment.

摘要

研究了雨水径流对水生生态系统的锌(Zn)风险。利用在一个由森林湿地、滞留池和一级溪流组成的雨水收集/滞留设施的 20 个站点收集的水中、底泥和孔隙水中 Zn 浓度的监测数据进行了评估。使用生物配体模型评估水生物种和鱼类的生物可利用性,同时使用酸可挥发性硫-同时提取金属(AVS-SEM)评估底泥中的生物可利用性。筛选水平评估表明,底泥和孔隙水中的 Zn 浓度对底栖生物没有造成显著风险。正如对雨水的预期,Zn 浓度在一个风暴事件内随时间变化非常大,变化幅度为 2 到 4 倍。总体而言,概率评估表明该系统中的风险较低(受影响物种的 5-10%)或可忽略不计,尤其是在排入一级溪流的位置。在收集系统中最上游的采样点识别出中等到高风险(受影响物种的 10-50%)。评估中最大的不确定性与如何最好地估计时变暴露浓度下的慢性暴露/风险有关。显然需要进一步研究脉冲暴露金属毒性,以评估雨水对环境的影响。

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