School of Engineering, RMIT University, Melbourne, Victoria 3001, Australia.
South East Water Corporation, Frankston, Victoria 3199, Australia.
J Hazard Mater. 2023 Mar 15;446:130694. doi: 10.1016/j.jhazmat.2022.130694. Epub 2023 Jan 2.
Effluents of municipal wastewater treatment plants (WWTPs) are a major source of microplastics (MP) in the terrestrial and aquatic environment; there is growing concern over the environmental and health impacts of MP pollution. In this study, the MP removal (MP cut-off size= 25 µm) in a lagoon-based wastewater treatment system was predicted by developing a model based on the multimedia modelling approach and utilising MP-specific properties for improving the understanding of the fate and transport of MP in such treatment processes. The high MP removal efficiency of the lagoon treatment system as predicted by the model (99.3%) and determined with the site wastewater samples (97%) could be attributed to its high HRT (>200 days, including that for the storage lagoons) that would allow effective MP removal with the system. Evaluation of the model predictions of MP concentration demonstrated reasonable alignment with measured concentrations in the facultative, maturation and winter storage lagoons of the system. Further evaluation of model predictions for various MP size classes (25-100, 100-200, 200-500 and >500 µm) obtained reasonable predictions for MP within the size range of 25-500 µm, indicating that the model is better used for predicting MP within that size range. The sensitivity analysis revealed the model predictions to be sensitive towards the operating/water quality parameters in the order of influent wastewater flowrate, MP concentration in influent wastewater, and MP settling rate in the water column of the lagoon. The study showed the potential of the developed model as a quantitative assessment tool for better management of MP in lagoon-based WWTPs.
污水处理厂(WWTP)的废水是陆地和水生环境中微塑料(MP)的主要来源;人们越来越关注 MP 污染对环境和健康的影响。在这项研究中,通过基于多介质建模方法的模型开发和利用 MP 特性来提高对 MP 在这种处理过程中的归宿和传输的理解,预测了基于塘系统的废水处理系统中的 MP 去除(MP 截断尺寸=25µm)。模型预测的塘处理系统的高 MP 去除效率(99.3%)和现场废水样品的测定(97%)可归因于其高 HRT(>200 天,包括存储塘的时间),这使得系统能够有效地去除 MP。对模型预测的 MP 浓度的评估表明,与系统中兼性、成熟和冬季储存塘中的实测浓度具有合理的一致性。对模型预测的各种 MP 粒径(25-100、100-200、200-500 和>500µm)的进一步评估表明,对 25-500µm 范围内的 MP 获得了合理的预测,这表明该模型更适合用于预测该尺寸范围内的 MP。敏感性分析表明,模型预测对操作/水质参数的敏感性按以下顺序排列:进水流量、进水废水中的 MP 浓度以及塘中水柱中的 MP 沉降率。该研究表明,所开发的模型具有作为定量评估工具的潜力,可用于更好地管理塘式 WWTP 中的 MP。