Department of Civil, Environmental and Mechanical Engineering (DICAM), University of Trento, Via Mesiano, 77 - 38123, Trento (TN), Italy.
Faculty of Biological and Environmental Sciences, Ecosystems and Environment Research Programme, University of Helsinki, Niemenkatu, 73 - 15140, Lahti, Finland.
Environ Monit Assess. 2023 Nov 16;195(12):1483. doi: 10.1007/s10661-023-12030-x.
The analysis of micro- and nanoplastics (MNPs) in the environment is a critical objective due to their ubiquitous presence in natural habitats, as well as their occurrence in various food, beverage, and organism matrices. MNPs pose significant concerns due to their direct toxicological effects and their potential to serve as carriers for hazardous organic/inorganic contaminants and pathogens, thereby posing risks to both human health and ecosystem integrity. Understanding the fate of MNPs within wastewater treatment plants (WWTPs) holds paramount importance, as these facilities can be significant sources of MNP emissions. Additionally, during wastewater purification processes, MNPs can accumulate contaminants and pathogens, potentially transferring them into receiving water bodies. Hence, establishing a robust analytical framework encompassing sampling, extraction, and instrumental analysis is indispensable for monitoring MNP pollution and assessing associated risks. This comprehensive review critically evaluates the strengths and limitations of commonly employed methods for studying MNPs in wastewater, sludge, and analogous environmental samples. Furthermore, this paper proposes potential solutions to address identified methodological shortcomings. Lastly, a dedicated section investigates the association of plastic particles with chemicals and pathogens, alongside the analytical techniques employed to study such interactions. The insights generated from this work can be valuable reference material for both the scientific research community and environmental monitoring and management authorities.
分析环境中的微塑料和纳米塑料(MNPs)是一个至关重要的目标,因为它们普遍存在于自然栖息地中,并且存在于各种食品、饮料和生物体基质中。MNPs 引起了人们的极大关注,因为它们具有直接的毒理学效应,并且可能作为危险的有机/无机污染物和病原体的载体,从而对人类健康和生态系统完整性构成威胁。了解 MNPs 在废水处理厂(WWTPs)中的命运至关重要,因为这些设施可能是 MNP 排放的重要来源。此外,在废水净化过程中,MNPs 可以积累污染物和病原体,有可能将它们转移到受纳水体中。因此,建立一个包括采样、提取和仪器分析在内的强大分析框架对于监测 MNP 污染和评估相关风险是必不可少的。本综述批判性地评估了常用于研究废水中、污泥中和类似环境样品中 MNPs 的方法的优缺点。此外,本文还提出了一些潜在的解决方案来解决已确定的方法学缺陷。最后,专门探讨了塑料颗粒与化学品和病原体的关联,以及用于研究这些相互作用的分析技术。这项工作产生的见解可以为科学界以及环境监测和管理机构提供有价值的参考资料。