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Modelling the fate of micropollutants in integrated urban wastewater systems: Extending the applicability to Pharmaceuticals

机译:在综合城市污水系统中建模微露剂的命运:将适用性扩展到制药

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摘要

Pharmaceutical active compounds (PhACs) are a category of micropollutants frequently detected across integrated urban wastewater systems. Existing modelling tools supporting the evaluation of micropollutant fate in such complex systems, such as the IUWS_MP model library (which acronym IUWS stands for Integrated Urban Wastewater System), do not consider fate processes and fractions that are typical for PhACs. This limitation was overcome by extending the existing IUWS_MP model library with new fractions (conjugated metabolites, sequestrated fraction) and processes (consumption-excretion, deconjugation). The performance of the extended library was evaluated for five PhACs (carbamazepine, ibuprofen, diclofenac, paracetamol, furosemide) in two different integrated urban wastewater systems where measurements were available. Despite data uncertainty and the simplicity of the modelling approach, chosen to minimize data requirements, model prediction uncertainty overlapped with the measurements ranges across both systems, stressing the robustness of the proposed modelling approach. Possible applications of the extended IUWS_MP model library are presented, illustrating how this tool can support urban water managers in reducing environmental impacts from PhACs discharges. (c) 2020 Elsevier Ltd. All rights reserved.
机译:药物活性化合物(PHACs)是跨越城市废水系统经常检测到的一类微型潜水剂。现有的建模工具,支持在这种复杂系统中进行微润帘命运的评估,例如IUWS_MP模型库(哪种缩写IUWS代表综合城市污水系统),请勿考虑典型的PHAC的命运过程和分数。通过将现有的IUWS_MP模型库扩展具有新的级分(共轭代谢物,螯合分数)和方法(消耗 - 排泄,欺诈)来克服这种限制。在两种不同的综合城市废水系统中评估了扩展文库的性能,在两种不同的综合城市废水系统中评价了五种PHAC(Carbamazepine,布洛芬,双戊酰胺,呋塞米)。尽管数据不确定性和建模方法的简单性,但选择最小化数据要求,模型预测不确定性与两个系统的测量范围重叠,强调了所提出的建模方法的稳健性。提出了扩展IUWS_MP模型库的可能应用,说明了该工具如何支持城市水管理人员在降低PHACS排放的环境影响方面。 (c)2020 elestvier有限公司保留所有权利。

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