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污水污泥作为环境中微塑料的来源:污泥处理过程中微塑料的赋存与归趋研究综述。

Sewage sludge as a source of microplastics in the environment: A review of occurrence and fate during sludge treatment.

机构信息

Department of Environmental Engineering, Middle East Technical University, 06800, Ankara, Turkey.

Department of Environmental Engineering, Middle East Technical University, 06800, Ankara, Turkey.

出版信息

J Environ Manage. 2021 Oct 1;295:113028. doi: 10.1016/j.jenvman.2021.113028. Epub 2021 Jun 18.

Abstract

Modern wastewater treatment plants (WWTPs) effectively remove microplastics (MPs) from wastewater and unsurprisingly concentrate them in sludge. Hence through its beneficial use and disposal, sludge causes secondary release pathways of an estimated average amount of 10 to 10 wastewater-based MPs to various environmental compartments yearly. Despite these numbers, studies investigating sludge are scarce. Currently, majority of the studies in the field focus on identifying the magnitude of the problem, whereas research investigating the fate and effects of MPs during sludge treatment are very rare. This review aims to bring together and critically evaluate the limited studies conducted about MPs in the sludge treatment line and bring out the key gaps and research needs in the area. Studies conducted so far indicate that depending on the type, size, and amount of MPs, their effects during anaerobic digestion differ, with some studies demonstrating serious negative impact on biogas production. Possible effect mechanisms are also suggested such as formation of reactive oxygen species (ROS) and leaching of toxic chemicals. Moreover, a potential for sludge treatment processes (thickening, dewatering, drying, stabilization, etc.) to change the characteristics and the number of MPs, which may increase surface area available for adsorption and desorption of pollutants, was observed. Review uncovers that, in the broad universe of MPs, some highly abundant ones in sludge such as polypropylene, polyurethane, polycarbonate, and acrylic are not yet investigated in sludge treatment. Future research should focus not only to investigate the fate/effects but to fully understand the mechanisms behind these, which is missing in many studies reviewed. Besides, new studies show that effect of MPs start from the floc formation stage during biological treatment, which in fact determine the final sludge behavior in thickening and dewatering. Therefore, holistic approaches starting from wastewater till sludge exits WWTP seem necessary. Substantiating from polymer chemistry and response of plastics to stress conditions, review suggests possibilities of deterioration during sludge treatment processes. It becomes evident that some totally uninvestigated aspects such as disintegration conducted before stabilization, can change the fate of MPs during sludge treatment and may bring new perspectives to the solution of the problem.

摘要

现代污水处理厂 (WWTP) 可以有效地从废水中去除微塑料 (MPs),并将其浓缩在污泥中。因此,通过有益的利用和处置,污泥每年都会通过二次释放途径将估计平均数量为 10 到 10 的废水基 MPs 释放到各种环境介质中。尽管有这些数字,但对污泥的研究仍然很少。目前,该领域的大多数研究都集中在确定问题的严重程度上,而研究 MPs 在污泥处理过程中的命运和影响的研究非常罕见。本综述旨在汇集和批判性地评估关于污泥处理线中 MPs 的有限研究,并提出该领域的关键差距和研究需求。迄今为止进行的研究表明,取决于 MPs 的类型、大小和数量,它们在厌氧消化过程中的影响也不同,一些研究表明对沼气生产有严重的负面影响。还提出了一些可能的影响机制,例如活性氧 (ROS) 的形成和有毒化学物质的浸出。此外,观察到污泥处理过程(浓缩、脱水、干燥、稳定化等)可能会改变 MPs 的特性和数量,这可能会增加污染物的吸附和解吸表面积。综述揭示了,在 MPs 的广泛宇宙中,一些在污泥中高度丰富的 MPs,如聚丙烯、聚氨酯、聚碳酸酯和丙烯酸,尚未在污泥处理中进行研究。未来的研究不仅应集中于研究 MPs 的命运/影响,而且应充分了解许多研究中缺失的这些影响背后的机制。此外,新的研究表明,MPs 的影响始于生物处理过程中的絮体形成阶段,这实际上决定了浓缩和脱水过程中最终污泥的行为。因此,从废水到 WWTP 出口的整体方法似乎是必要的。从聚合物化学和塑料对压力条件的响应来看,综述提出了在污泥处理过程中可能会发生恶化的可能性。显然,一些完全未被研究的方面,如在稳定化之前进行的解体,可以改变 MPs 在污泥处理过程中的命运,并为解决该问题带来新的视角。

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