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雨水排放的污染水平及其造成的环境影响。

Pollution levels of stormwater discharges and resulting environmental impacts.

机构信息

Urban Water Systems, Department of Environmental Engineering, Technical University of Denmark, Denmark; VCS Denmark, Denmark.

Urban Water Systems, Department of Environmental Engineering, Technical University of Denmark, Denmark.

出版信息

Sci Total Environ. 2019 May 1;663:754-763. doi: 10.1016/j.scitotenv.2019.01.388. Epub 2019 Jan 30.

Abstract

Stormwater carries pollutants that potentially cause negative environmental impacts to receiving water bodies, which can be quantified using life cycle impact assessment (LCIA). We compiled a list of 20 metals, almost 300 organic compounds, and nutrients potentially present in stormwater, and measured concentrations reported in literature. We calculated mean pollutant concentrations, which we then translated to generic impacts per litre of stormwater discharged, using existing LCIA characterisation factors. Freshwater and marine ecotoxicity impacts were found to be within the same order of magnitude (0.72, and 0.82 CTUe/l respectively), while eutrophication impacts were 3.2E-07 kgP-eq/l for freshwater and 2.0E-06 kgN-eq/l for marine waters. Stormwater discharges potentially have a strong contribution to ecotoxicity impacts compared to other human activities, such as human water consumption and agriculture. Conversely, contribution to aquatic eutrophication impacts was modest. Metals were identified as the main contributor to ecotoxicity impacts, causing >97% of the total impacts. This is in line with conclusions from a legal screening, where metals showed to be problematic when comparing measured concentrations against existing environmental quality standards.

摘要

雨水携带的污染物可能对受纳水体造成负面的环境影响,这些影响可以通过生命周期影响评估(LCIA)进行量化。我们编制了一份可能存在于雨水中的 20 种金属、近 300 种有机化合物和营养物质的清单,并测量了文献中报告的浓度。我们计算了平均污染物浓度,然后使用现有的 LCIA 特征化因子将其转化为每升排放雨水的通用影响。淡水和海洋生态毒性影响处于同一数量级(分别为 0.72 和 0.82 CTUe/l),而富营养化影响分别为 0.0000032kgP-eq/l(淡水)和 0.000002kgN-eq/l(海洋)。与人类的其他活动相比,如人类用水和农业,雨水排放可能对生态毒性影响有较大的贡献。相反,对水生富营养化的影响贡献较小。金属被确定为生态毒性影响的主要贡献者,造成了超过 97%的总影响。这与法律筛选的结论一致,在该筛选中,将测量浓度与现有环境质量标准进行比较时,金属被认为是有问题的。

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