Instituto Argentino de Oceanografía (IADO), CONICET/UNS, CCT-Bahía Blanca, Camino La Carrindanga, km 7.5, Edificio E1, B8000FWB Bahía Blanca, Buenos Aires, Argentina.
Instituto de Química del Sur (INQUISUR), Av. Alem 1253, B8000CPB Bahía Blanca, Buenos Aires, Argentina.
Mar Pollut Bull. 2022 Jan;174:113276. doi: 10.1016/j.marpolbul.2021.113276. Epub 2022 Jan 7.
A wide range of contaminants of emerging concern such as micro/nanoplastics (MPs/PNPs) and metal-nanoparticles (Me-NPs) from anthropogenic activities have been identified in aquatic environments. The hazardous effects of these micro/nanomaterials as pollutants in organisms and the lack of knowledge about their behavior in aquatic environments have generated growing concern in the scientific community. The nanomaterials have a colloidal-type behavior due to their size range but with differences in their physicochemical properties. This review comprises the behavior of micro/nanomaterials pollutants and the physicochemical interactions between MPs/PNPs and Me-NPs in aquatic environments, and their potential toxicological effects in organisms. Moreover, this article describes the potential use of Me-NPs to remove MPs/PNPs present in the water column due to their photocatalytic and magnetic properties. It also discusses the challenge to determine harmful effects of micro/nanomaterials pollutants in organisms and provides future research directions to improve integrated management strategies to mitigate their environmental impact.
在水生环境中已发现各种人为活动产生的新兴关注污染物,如微/纳米塑料(MPs/PNPs)和金属纳米颗粒(Me-NPs)。这些微/纳米材料作为污染物在生物体内的危害性以及对其在水生环境中的行为缺乏了解,引起了科学界的日益关注。由于其粒径范围,纳米材料具有胶体类型的行为,但在物理化学性质上存在差异。本综述包括微/纳米材料污染物的行为以及 MPs/PNPs 和 Me-NPs 在水生环境中的物理化学相互作用,以及它们在生物体中的潜在毒理学效应。此外,本文还描述了由于 Me-NPs 的光催化和磁性特性,可将其用于去除水柱状的 MPs/PNPs。它还讨论了确定微/纳米材料污染物对生物体的有害影响的挑战,并提供了未来的研究方向,以改善综合管理策略,减轻其对环境的影响。