Department of Environmental Chemistry, Faculty of Environmental Technology, University of Chemistry and Technology Prague, Prague, Czech Republic.
Department of Environmental Chemistry, Faculty of Environmental Technology, University of Chemistry and Technology Prague, Prague, Czech Republic.
Environ Pollut. 2019 Sep;252(Pt B):1246-1256. doi: 10.1016/j.envpol.2019.06.030. Epub 2019 Jun 11.
There is an increasing awareness of the threats posed by the worldwide presence of microplastics (MPs) in the environment. Due to their high persistence, MPs will accumulate in the environment and their quantities tend to increase with time. MPs end up in environments where often also chemical contaminants are present. Since the early 2000s, the number of studies on the sorption of chemicals to plastic particles has exponentially increased. The objective of this study was to critically review the literature to identify the most important factors affecting the sorption of chemical contaminants to MPs. These factors include the physicochemical properties of both the MPs and the chemical contaminants as well as environmental characteristics. A limited number of studies on soil together with an increased notion of the importance of this compartment as a final sink for MPs was observed. Therefore, we assessed the distribution of model chemicals (two PCBs and phenanthrene) in the soil compartment in the presence of MPs using a mass balance model. The results showed a high variation among chemicals and microplastic types. Overall, a higher partitioning to MPs of chemical contaminants in soil is expected in comparison to aquatic environments. As sorption to a large extent determines bioavailability, the effects of combined exposure to chemicals and MPs on the toxicity and bioaccumulation in biota are discussed. Finally, some considerations regarding sorption and toxicity studies using MPs are given.
人们越来越意识到微塑料(MPs)在全球环境中存在所带来的威胁。由于其高度持久性,MPs 将在环境中积累,并且其数量随着时间的推移而增加。MPs 最终会进入到经常存在化学污染物的环境中。自 21 世纪初以来,关于化学物质在塑料颗粒上吸附的研究数量呈指数级增长。本研究的目的是批判性地回顾文献,以确定影响化学污染物在 MPs 上吸附的最重要因素。这些因素包括 MPs 和化学污染物的物理化学性质以及环境特征。观察到土壤中的研究数量有限,并且越来越认识到土壤作为 MPs 的最终归宿的重要性。因此,我们使用质量平衡模型评估了模型化学物质(两种 PCB 和菲)在存在 MPs 时在土壤部分的分布。结果表明,化学物质和微塑料类型之间存在很大的差异。总体而言,与水生环境相比,预计化学污染物在土壤中的 MPs 分配更高。由于吸附在很大程度上决定了生物利用度,因此讨论了同时接触化学物质和 MPs 对生物毒性和生物累积的影响。最后,对使用 MPs 进行吸附和毒性研究的一些考虑因素进行了讨论。