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Assessment of input of organic micropollutants and microplastics into the Baltic Sea by urban waters

机译:评估城市水域向波罗的海输入的有机微污染物和微塑料

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摘要

We assess how different micropollutants and microplastics, connected to wastewater are introduced into the Baltic Sea. The relevance of untreated wastewater, treated wastewater, treated and untreated rain runoff, as well as combined sewer overflow (CSO), is assessed in respect to mass balance, as well as relative inflows of micropollutants and -plastics into the Baltic Sea. To achieve this, modelling based on data on exemplary sewer systems and measured micropollutant concentrations in the single sources were used. Most compounds reach the receiving Baltic Sea via treated wastewater. A few exceptions are compounds that are removed to a very high extent in wastewater treatment plants. For these compounds, the emissions with stormwater (e.g., terbutryn) or untreated wastewater (e.g., triclosan) are dominating. Additionally, compounds that are discharged with the water that is running off urban surfaces are introduced into marine areas via rain runoff. These data are used to forecast a total mass load and concentrations that can be expected in the Baltic Sea. Massloads are expected to be between 0.1 and 5.9 t/a for triclosan and TCPP (iris (2-chloropropyl) phosphate) and 0.2 t/a for microplastic particles. The expected concentrations in open Baltic Sea waters range from 0.01 to 26 ng/L.
机译:我们评估了如何将与废水有关的不同的微污染物和微塑料引入波罗的海。根据质量平衡以及微量污染物和塑料相对流入波罗的海的情况,评估了未经处理的废水,经过处理的废水,经过处理的和未经处理的雨水径流以及下水道溢流(CSO)的相关性。为了实现这一点,使用了基于示例性下水道系统数据和单一来源中测得的微污染物浓度的模型。大多数化合物通过经过处理的废水到达接收波罗的海。少数例外是在废水处理厂中高度去除的化合物。对于这些化合物,雨水(例如叔丁草)或未经处理的废水(例如三氯生)的排放占主导地位。另外,从城市表面流下的水排放的化合物通过雨水径流引入海洋区域。这些数据用于预测波罗的海的总质量负荷和浓度。三氯生和TCPP(磷酸铱(2-氯丙基))的质量负荷预计为0.1至5.9吨/年,而微塑料颗粒的质量负荷为0.2吨/年。波罗的海海水中的预期浓度范围为0.01至26 ng / L。

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