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重新审视垃圾渗滤液中的微塑料:被忽视的微小微塑料及其在处理厂中的命运。

Revisiting Microplastics in Landfill Leachate: Unnoticed Tiny Microplastics and Their Fate in Treatment Works.

机构信息

State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, P.R. China; Shanghai Institute of Pollution Control and Ecological Security, Shanghai 200092, P.R. China.

State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, P.R. China.

出版信息

Water Res. 2021 Feb 15;190:116784. doi: 10.1016/j.watres.2020.116784. Epub 2020 Dec 24.

Abstract

Due to the environmental risks caused by microplastics, understanding the sources and characteristics of microplastics and cutting off their routes into the environment are crucial. However, so far, studies on microplastics in the landfill leachate system (a major pathway of microplastics into the environment) are still limited, especially for tiny particles <50 µm that might have higher risks to the environment. This study investigated the microplastics in landfill leachate and in leachate treatment works, with a size detection limit down to 10 µm. The results showed that the microplastics particle and mass concentrations in the untreated leachate were 235.4 ± 17.1 item/L and 11.4 ± 0.8 µg/L, respectively, with tiny particles (<50 µm) accounting for over 50%. Overall, 27 polymeric materials were detected in leachate samples, with polyethylene and polypropylene being the most abundant in the untreated leachate. The neutral buoyancy of microplastics (average density: 0.94 g/cm), together with irregular shapes, suggested they may be difficult to be removed by sedimentation. Further exploring the fate of microplastics in leachate treatment works showed that the membrane treatment effectively reduced microplastics loading to 0.14% for particle and 0.01% for mass, but the average particle density rose. The differences in polymeric materials distribution at different sampling locations and the presence of membrane-related polymer in membrane treatment effluent suggested tiny microplastics could be generated and released from membrane systems. Moreover, this study discovered that the sludge dewatering liquor could contain a high amount of microplastics, and the estimated particle loading was about 3.6 times higher than that in dewatered sludge. This suggested a new approach to microplastics mitigation through separating microplastics from the sludge dewatering liquor before its recirculation.

摘要

由于微塑料带来的环境风险,了解微塑料的来源和特性并切断其进入环境的途径至关重要。然而,迄今为止,对垃圾填埋场渗滤液系统(微塑料进入环境的主要途径之一)中的微塑料的研究仍然有限,特别是对于可能对环境风险更高的<50μm的微小颗粒。本研究调查了垃圾填埋场渗滤液和渗滤液处理厂中的微塑料,其尺寸检测下限可达 10μm。结果表明,未经处理的渗滤液中的微塑料颗粒和质量浓度分别为 235.4±17.1 项/L 和 11.4±0.8μg/L,其中<50μm 的微小颗粒占比超过 50%。总体而言,在渗滤液样品中检测到 27 种聚合物材料,其中未经处理的渗滤液中聚乙烯和聚丙烯最为丰富。微塑料的中性浮力(平均密度:0.94g/cm)和不规则形状表明,它们可能难以通过沉降去除。进一步探索微塑料在渗滤液处理厂中的命运表明,膜处理可有效将微塑料的负载量降低至颗粒为 0.14%,质量为 0.01%,但平均颗粒密度上升。不同采样位置的聚合物材料分布差异以及膜处理出水存在与膜相关的聚合物表明,微小的微塑料可能会从膜系统中产生并释放出来。此外,本研究发现,污泥脱水液中可能含有大量的微塑料,估计的颗粒负载量比脱水污泥高约 3.6 倍。这表明通过在污泥脱水液再循环之前将微塑料从其中分离出来,可以采取一种新的微塑料缓解方法。

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