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污水处理厂中的微塑料:来源、特性、去除效率、去除机制以及与污染物的相互作用。

Microplastics in wastewater treatment plants: Sources, properties, removal efficiency, removal mechanisms, and interactions with pollutants.

机构信息

Environmental Engineering Department, Faculty of Engineering, Istanbul University-Cerrahpasa, Avcilar, 34320 Istanbul, Turkey E-mail:

出版信息

Water Sci Technol. 2023 Feb;87(3):685-710. doi: 10.2166/wst.2023.022.

Abstract

Since wastewater treatment plants (WWTPs) cannot completely remove microplastics (MPs) from wastewater, WWTPs are responsible for the release of millions of MPs into the environment even in 1 day. Therefore, knowing the sources, properties, removal efficiencies and removal mechanisms of MPs in WWTPs is of great importance for the management of MPs. In this paper, firstly the sources of MPs in WWTPs and the quantities and properties (polymer type, shape, size, and color) of MPs in influents, effluents, and sludges of WWTPs are presented. Following this, the MP removal efficiency of different treatment units (primary settling, flotation, biological treatment, secondary settling, filtration-based treatment technologies, and coagulation) in WWTPs is discussed. In the next section, details about MP removal mechanisms in critical treatment units (settling and flotation tanks, bioreactors, sand filters, membrane filters, and coagulation units) in WWTPs are given. In the last section, the mechanisms and factors that are effective in adsorbing organic-inorganic pollutants in wastewater to MPs are presented. Finally, the current situation and research gap in these areas are identified and suggestions are provided for topics that need further research in the future.

摘要

由于污水处理厂 (WWTP) 无法将微塑料 (MPs) 从废水中完全去除,因此即使在一天内,WWTP 也会将数百万个 MPs 释放到环境中。因此,了解 WWTP 中 MPs 的来源、特性、去除效率和去除机制对于 MPs 的管理非常重要。本文首先介绍了 WWTP 中 MPs 的来源以及 WWTP 进水、出水和污泥中 MPs 的数量和特性(聚合物类型、形状、尺寸和颜色)。接下来,讨论了 WWTP 中不同处理单元(初次沉淀、浮选、生物处理、二次沉淀、基于过滤的处理技术和混凝)的 MP 去除效率。在下一节中,详细介绍了 WWTP 中关键处理单元(沉淀池和浮选池、生物反应器、砂滤器、膜滤器和混凝单元)中 MPs 去除机制。最后,提出了废水中有机-无机污染物吸附到 MPs 上的机制和影响因素。最后,确定了这些领域的现状和研究差距,并为未来需要进一步研究的课题提供了建议。

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