Lambert Scott, Scherer Christian, Wagner Martin
Department Aquatic Ecotoxicology, Goethe University Frankfurt am Main, Frankfurt, Germany.
Integr Environ Assess Manag. 2017 May;13(3):470-475. doi: 10.1002/ieam.1901.
"Microplastic" is an umbrella term that covers many particle shapes, sizes, and polymer types, and as such the physical and chemical properties of environmental microplastics will differ from the primary microbeads commonly used for ecotoxicity testing. In the present article, we discuss the physical and chemical properties of microplastics that are potentially relevant to their ecotoxicity, including particle size, particle shape, crystallinity, surface chemistry, and polymer and additive composition. Overall, there is a need for a structured approach to the testing of different properties to identify which are the most relevant drivers of microplastic toxicity. In addition, the properties discussed will be influenced by and change depending on environmental conditions and degradation pathways. Future challenges include new technologies that will enter the plastic production cycle and the impact of these changes on the composition of environmental microplastics. Integr Environ Assess Manag 2017;13:470-475. © 2017 SETAC.
“微塑料”是一个涵盖多种颗粒形状、尺寸和聚合物类型的统称,因此环境微塑料的物理和化学性质将不同于常用于生态毒性测试的初级微珠。在本文中,我们讨论了微塑料的物理和化学性质,这些性质可能与其生态毒性相关,包括粒径、颗粒形状、结晶度、表面化学以及聚合物和添加剂组成。总体而言,需要一种结构化方法来测试不同性质,以确定哪些是微塑料毒性的最相关驱动因素。此外,所讨论的性质将受到环境条件和降解途径的影响并随其变化。未来的挑战包括将进入塑料生产周期的新技术以及这些变化对环境微塑料组成的影响。《综合环境评估与管理》2017年;13:470 - 475。© 2017 SETAC。