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Photodegradation of emerging contaminants in a sunlit wastewater lagoon, seasonal measurements, environmental impacts and modelling

机译:阳光污水泻湖,季节性测量,环境影响和建模中的新兴污染物的光降解

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The seasonal sunlight-induced photodegradation of seven emerging contaminants (ECs) in a municipal wastewater treatment lagoon was examined in a lab-scale study over a year. There were obvious seasonal trends for the degradation rates of all the ECs in both ultrapure water and lagoon wastewater matrices with strong correlations (R-2 = 0.65-0.90) between sunlight irradiance and their degradation rates in pure water, indicating the dominant influence of natural sunlight intensity. This suggests the importance of recording light source conditions for the purposes of data interpretation and modelling of sunlight-induced photolysis. It was demonstrated that photolysis of these ECs was likely to occur only within the first 10 cm of the lagoon surface. Strongly temperature dependent photodegradation was observed for the five ECs which primarily underwent indirect photolysis in the lagoon wastewater, and activation energy values (which could be used for simulation of the photodegradation process) were obtained for these compounds. The quantum yields of the ECs were determined under wastewater-relevant pH conditions. The APEX environmental model was adjusted to simulate the photodegradation of these ECs in the lagoon wastewater. The predicted results were largely in agreement with the seasonal measurements, with some overestimated photodegradation rates obtained for winter, suggesting that temperature should be included as a factor for modelling the photolysis of ECs. These results indicate that there is potential to establish a model to predict the photodegradation of a wide range of ECs in wastewater treatment lagoons to facilitate risk assessment of the treated wastewater.
机译:在一年内的实验室规模研究中检查了一座市政废水处理泻湖的季节阳光诱导的七种新兴污染物(ECS)的光降解。超阳光辐照度与纯水中的阳光辐照度和其降解率之间的相关性(R-2 = 0.65-0.90)的纯水和泻湖废水基质中所有ECS的降解率存在明显的季节性趋势。表明自然的显性影响阳光强度。这表明为阳光诱导的光解的数据解释和建模的目的表示记录光源条件的重要性。结果证明,这些EC的光解仅在泻湖表面的前10厘米内发生。对于这些化合物,可以观察到主要在泻湖废水中接受间接光解的五个EC的温度依赖性光降解,并为这些化合物获得活化能量值(可用于光降解过程的模拟)。在废水相关的pH条件下测定EC的量子产率。调整了APEX环境模型以模拟泻湖废水中这些EC的光降解。预测结果主要与季节性测量相一致,冬季获得了一些过高的光降解率,表明温度应作为模拟ECS光解的因素。这些结果表明,有可能建立一种模型,以预测废水处理泻龙中各种EC的光降解,以促进经处理的废水的风险评估。

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