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微塑料相关添加剂在水生环境中的浸出:批判性回顾。

Leaching of microplastic-associated additives in aquatic environments: A critical review.

机构信息

Division of Environmental Science and Ecological Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul, 02841, Republic of Korea.

Division of Environmental Science and Ecological Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul, 02841, Republic of Korea.

出版信息

Environ Pollut. 2022 Jul 15;305:119258. doi: 10.1016/j.envpol.2022.119258. Epub 2022 Apr 7.

Abstract

Microplastic pollution has attracted significant attention as an emerging global environmental problem. One of the most important issues with microplastics is the leaching of harmful additives. This review summarizes the recent advances in the understanding of the leaching phenomena in the context of the phase equilibrium between microplastics and water, and the release kinetics. Organic additives, which are widely used in plastic products, have been introduced because they have diverse physicochemical properties and mass fractions in plastics. Many theoretical and empirical models have been utilized in laboratory and field studies. However, the partition or distribution constant between microplastics and water (K) and the diffusivity of an additive in microplastics (D) are the two key properties explaining the leaching equilibrium and kinetics of hydrophobic organic additives. Because microplastics in aquatic environments undergo dynamic weathering, leaching of organic additives with high K and/or low D cannot be described by a leaching model that only considers microplastic and water phases with a fixed boundary. Surface modifications of microplastics as well as biofilms colonizing microplastic surfaces can alter the leaching equilibrium and kinetics and transform additives. Further studies on the release of hydrophobic organic additives and their transformation products under various conditions are required to extend our understanding of the environmental fate and transport of these additives in aquatic environments.

摘要

微塑料污染作为一种新兴的全球性环境问题引起了广泛关注。微塑料的一个重要问题是有害添加剂的浸出。本综述总结了近年来在理解微塑料与水之间的相平衡和释放动力学方面浸出现象的最新进展。由于有机添加剂在塑料中的物理化学性质和质量分数多种多样,因此被广泛应用于塑料制品中。在实验室和野外研究中,已经利用了许多理论和经验模型。然而,解释疏水性有机添加剂浸出平衡和动力学的两个关键性质是微塑料与水之间的分配或分布常数(K)和添加剂在微塑料中的扩散系数(D)。由于水环境污染中的微塑料会经历动态风化,因此仅考虑具有固定边界的微塑料和水相的浸出模型无法描述具有高 K 和/或低 D 的有机添加剂的浸出。微塑料表面的改性以及在微塑料表面定殖的生物膜可以改变浸出平衡和动力学并转化添加剂。需要进一步研究在各种条件下疏水性有机添加剂及其转化产物的释放情况,以扩展我们对这些添加剂在水环境污染中环境归宿和迁移的理解。

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