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城市污水污泥中新兴微(纳)塑料去除及升级回收技术的当代发展趋势:战略创新与前景

Contemporary Drift in Emerging Micro(nano)plastics Removal and Upcycling Technologies from Municipal Wastewater Sludge: Strategic Innovations and Prospects.

作者信息

Surana Deepti, Ghosh Pooja, Kumar Manish, Varjani Sunita, Kumar Vivek, Mannina Giorgio

机构信息

Environmental Risk Assessment and Management (EnRAM) Lab, Centre for Rural Development and Technology, Indian Institute of Technology, Delhi, New Delhi-110016, India.

Engineering Department, Palermo University, Viale Delle Scienze, Ed.8, Palermo, 90128 Italy.

出版信息

Curr Pollut Rep. 2023;9(2):174-197. doi: 10.1007/s40726-023-00261-y. Epub 2023 May 22.

Abstract

PURPOSE OF REVIEW

Annually, huge amounts of microplastics (MPs) are added to farmlands through sewage sludge (SS)/biosolid applications as a fertilizer. Most research emphasizes the enormity of the problem and demonstrates the fate, impacts, and toxicity of MPs during SS treatment processes and land applications. None has addressed the management strategies. To address the gaps, the current review evaluates the performance analysis of conventional and advanced sludge treatment methods in eliminating MPs from sludge.

RECENT FINDINGS

The review uncovers that the occurrence and characteristics of MPs in SS are highly governed by factors such as population density, speed and level of urbanization, citizens' daily habits, and treatment units in wastewater treatment plants (WWTPs). Furthermore, conventional sludge treatment processes are ineffective in eliminating MPs from SS and are accountable for the increased small-sized MPs or micro(nano)plastics (MNPs) along with altered surface morphology facilitating more co-contaminant adsorption. Simultaneously, MPs can influence the operation of these treatment processes depending on their size, type, shape, and concentration. The review reveals that research to develop advanced technology to remove MPs efficiently from SS is still at a nascent stage.

SUMMARY

This review provides a comprehensive analysis of MPs in the SS, by corroborating state-of-the-knowledge, on different aspects, including the global occurrence of MPs in WWTP sludge, impacts of different conventional sludge treatment processes on MPs and vice versa, and efficiency of advanced sludge treatment and upcycling technologies to eliminate MPs, which will facilitate the development of mitigation measures from the systematic and holistic level.

摘要

综述目的

每年,大量微塑料通过作为肥料的污水污泥/生物固体施用于农田。大多数研究强调了该问题的严重性,并展示了微塑料在污水污泥处理过程和土地施用期间的归宿、影响和毒性。但尚无研究涉及管理策略。为填补这些空白,本综述评估了传统和先进污泥处理方法在去除污泥中微塑料方面的性能分析。

最新发现

该综述发现,污水污泥中微塑料的存在和特征高度受人口密度、城市化速度和水平、市民日常习惯以及污水处理厂处理单元等因素的影响。此外,传统污泥处理工艺在去除污水污泥中的微塑料方面效果不佳,并且导致了小尺寸微塑料或微(纳)塑料数量增加,同时表面形态发生改变,有利于更多共污染物的吸附。与此同时,微塑料可根据其尺寸、类型、形状和浓度影响这些处理工艺的运行。该综述表明,开发从污水污泥中高效去除微塑料的先进技术的研究仍处于起步阶段。

总结

本综述通过证实不同方面的现有知识,对污水污泥中的微塑料进行了全面分析,包括污水处理厂污泥中微塑料的全球存在情况、不同传统污泥处理工艺对微塑料的影响以及反之亦然,以及先进污泥处理和升级回收技术去除微塑料的效率,这将有助于从系统和整体层面制定缓解措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3ac/10201030/9cc2994a68fb/40726_2023_261_Fig1_HTML.jpg

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